WO2007068598A2 - Wrapping tape made from tpu film - Google Patents
Wrapping tape made from tpu film Download PDFInfo
- Publication number
- WO2007068598A2 WO2007068598A2 PCT/EP2006/069114 EP2006069114W WO2007068598A2 WO 2007068598 A2 WO2007068598 A2 WO 2007068598A2 EP 2006069114 W EP2006069114 W EP 2006069114W WO 2007068598 A2 WO2007068598 A2 WO 2007068598A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- winding tape
- tape according
- film
- winding
- adhesive
- Prior art date
Links
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- -1 aromatic carbodiimide Chemical class 0.000 claims description 47
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- 150000003007 phosphonic acid derivatives Chemical class 0.000 description 1
- 150000003013 phosphoric acid derivatives Chemical class 0.000 description 1
- 150000003014 phosphoric acid esters Chemical class 0.000 description 1
- XFZRQAZGUOTJCS-UHFFFAOYSA-N phosphoric acid;1,3,5-triazine-2,4,6-triamine Chemical compound OP(O)(O)=O.NC1=NC(N)=NC(N)=N1 XFZRQAZGUOTJCS-UHFFFAOYSA-N 0.000 description 1
- OJMIONKXNSYLSR-UHFFFAOYSA-N phosphorous acid Chemical class OP(O)O OJMIONKXNSYLSR-UHFFFAOYSA-N 0.000 description 1
- 150000003018 phosphorus compounds Chemical class 0.000 description 1
- 229910000073 phosphorus hydride Inorganic materials 0.000 description 1
- XHXFXVLFKHQFAL-UHFFFAOYSA-N phosphoryl trichloride Chemical compound ClP(Cl)(Cl)=O XHXFXVLFKHQFAL-UHFFFAOYSA-N 0.000 description 1
- XNGIFLGASWRNHJ-UHFFFAOYSA-L phthalate(2-) Chemical compound [O-]C(=O)C1=CC=CC=C1C([O-])=O XNGIFLGASWRNHJ-UHFFFAOYSA-L 0.000 description 1
- 239000004597 plastic additive Substances 0.000 description 1
- 239000013502 plastic waste Substances 0.000 description 1
- 229920003229 poly(methyl methacrylate) Polymers 0.000 description 1
- 229920001610 polycaprolactone Polymers 0.000 description 1
- 229920000647 polyepoxide Polymers 0.000 description 1
- 229920006267 polyester film Polymers 0.000 description 1
- 229920005906 polyester polyol Polymers 0.000 description 1
- 229920006149 polyester-amide block copolymer Polymers 0.000 description 1
- 229920000573 polyethylene Polymers 0.000 description 1
- 229920001195 polyisoprene Polymers 0.000 description 1
- 239000004926 polymethyl methacrylate Substances 0.000 description 1
- 229920006389 polyphenyl polymer Polymers 0.000 description 1
- 229920005606 polypropylene copolymer Polymers 0.000 description 1
- 229920005629 polypropylene homopolymer Polymers 0.000 description 1
- 150000003097 polyterpenes Chemical class 0.000 description 1
- 229920001289 polyvinyl ether Polymers 0.000 description 1
- 230000008092 positive effect Effects 0.000 description 1
- 239000000843 powder Substances 0.000 description 1
- 230000036316 preload Effects 0.000 description 1
- 239000001294 propane Substances 0.000 description 1
- 125000001501 propionyl group Chemical group O=C([*])C([H])([H])C([H])([H])[H] 0.000 description 1
- 229960004063 propylene glycol Drugs 0.000 description 1
- 235000013772 propylene glycol Nutrition 0.000 description 1
- AOHJOMMDDJHIJH-UHFFFAOYSA-N propylenediamine Chemical compound CC(N)CN AOHJOMMDDJHIJH-UHFFFAOYSA-N 0.000 description 1
- 238000004080 punching Methods 0.000 description 1
- GRWFGVWFFZKLTI-UHFFFAOYSA-N rac-alpha-Pinene Natural products CC1=CCC2C(C)(C)C1C2 GRWFGVWFFZKLTI-UHFFFAOYSA-N 0.000 description 1
- 239000002516 radical scavenger Substances 0.000 description 1
- 239000000941 radioactive substance Substances 0.000 description 1
- 238000011084 recovery Methods 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 239000012744 reinforcing agent Substances 0.000 description 1
- 238000012552 review Methods 0.000 description 1
- SCPYDCQAZCOKTP-UHFFFAOYSA-N silanol Chemical compound [SiH3]O SCPYDCQAZCOKTP-UHFFFAOYSA-N 0.000 description 1
- 150000004760 silicates Chemical class 0.000 description 1
- RMAQACBXLXPBSY-UHFFFAOYSA-N silicic acid Chemical compound O[Si](O)(O)O RMAQACBXLXPBSY-UHFFFAOYSA-N 0.000 description 1
- 235000012239 silicon dioxide Nutrition 0.000 description 1
- 230000035943 smell Effects 0.000 description 1
- 239000000779 smoke Substances 0.000 description 1
- 239000000344 soap Substances 0.000 description 1
- 239000011734 sodium Substances 0.000 description 1
- 229910052708 sodium Inorganic materials 0.000 description 1
- 239000008117 stearic acid Substances 0.000 description 1
- 239000000758 substrate Substances 0.000 description 1
- 238000004381 surface treatment Methods 0.000 description 1
- 239000000725 suspension Substances 0.000 description 1
- 230000002195 synergetic effect Effects 0.000 description 1
- 239000005061 synthetic rubber Substances 0.000 description 1
- 238000009864 tensile test Methods 0.000 description 1
- 150000003512 tertiary amines Chemical class 0.000 description 1
- 238000010998 test method Methods 0.000 description 1
- LVEOKSIILWWVEO-UHFFFAOYSA-N tetradecyl 3-(3-oxo-3-tetradecoxypropyl)sulfanylpropanoate Chemical compound CCCCCCCCCCCCCCOC(=O)CCSCCC(=O)OCCCCCCCCCCCCCC LVEOKSIILWWVEO-UHFFFAOYSA-N 0.000 description 1
- 239000010409 thin film Substances 0.000 description 1
- KSBAEPSJVUENNK-UHFFFAOYSA-L tin(ii) 2-ethylhexanoate Chemical compound [Sn+2].CCCCC(CC)C([O-])=O.CCCCC(CC)C([O-])=O KSBAEPSJVUENNK-UHFFFAOYSA-L 0.000 description 1
- 239000004408 titanium dioxide Substances 0.000 description 1
- 235000010215 titanium dioxide Nutrition 0.000 description 1
- RUELTTOHQODFPA-UHFFFAOYSA-N toluene 2,6-diisocyanate Chemical compound CC1=C(N=C=O)C=CC=C1N=C=O RUELTTOHQODFPA-UHFFFAOYSA-N 0.000 description 1
- 231100000167 toxic agent Toxicity 0.000 description 1
- 239000003440 toxic substance Substances 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
- 229910052723 transition metal Inorganic materials 0.000 description 1
- 150000003624 transition metals Chemical class 0.000 description 1
- 150000004072 triols Chemical class 0.000 description 1
- XZZNDPSIHUTMOC-UHFFFAOYSA-N triphenyl phosphate Chemical compound C=1C=CC=CC=1OP(OC=1C=CC=CC=1)(=O)OC1=CC=CC=C1 XZZNDPSIHUTMOC-UHFFFAOYSA-N 0.000 description 1
- LENZDBCJOHFCAS-UHFFFAOYSA-N tris Chemical compound OCC(N)(CO)CO LENZDBCJOHFCAS-UHFFFAOYSA-N 0.000 description 1
- WNVQBUHCOYRLPA-UHFFFAOYSA-N triuret Chemical compound NC(=O)NC(=O)NC(N)=O WNVQBUHCOYRLPA-UHFFFAOYSA-N 0.000 description 1
- 150000003672 ureas Chemical class 0.000 description 1
- 229920002554 vinyl polymer Polymers 0.000 description 1
- 238000004056 waste incineration Methods 0.000 description 1
- 239000001993 wax Substances 0.000 description 1
- 239000002759 woven fabric Substances 0.000 description 1
- 229910052725 zinc Inorganic materials 0.000 description 1
- 239000011701 zinc Substances 0.000 description 1
- 239000011667 zinc carbonate Substances 0.000 description 1
- 229910000010 zinc carbonate Inorganic materials 0.000 description 1
- 235000004416 zinc carbonate Nutrition 0.000 description 1
- 235000014692 zinc oxide Nutrition 0.000 description 1
- 235000019352 zinc silicate Nutrition 0.000 description 1
- 229910052726 zirconium Inorganic materials 0.000 description 1
Classifications
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08K—Use of inorganic or non-macromolecular organic substances as compounding ingredients
- C08K5/00—Use of organic ingredients
- C08K5/49—Phosphorus-containing compounds
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08K—Use of inorganic or non-macromolecular organic substances as compounding ingredients
- C08K5/00—Use of organic ingredients
- C08K5/0008—Organic ingredients according to more than one of the "one dot" groups of C08K5/01 - C08K5/59
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J7/00—Adhesives in the form of films or foils
- C09J7/20—Adhesives in the form of films or foils characterised by their carriers
- C09J7/22—Plastics; Metallised plastics
- C09J7/25—Plastics; Metallised plastics based on macromolecular compounds obtained otherwise than by reactions involving only carbon-to-carbon unsaturated bonds
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08K—Use of inorganic or non-macromolecular organic substances as compounding ingredients
- C08K5/00—Use of organic ingredients
- C08K5/0008—Organic ingredients according to more than one of the "one dot" groups of C08K5/01 - C08K5/59
- C08K5/0066—Flame-proofing or flame-retarding additives
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J2203/00—Applications of adhesives in processes or use of adhesives in the form of films or foils
- C09J2203/302—Applications of adhesives in processes or use of adhesives in the form of films or foils for bundling cables
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J2301/00—Additional features of adhesives in the form of films or foils
- C09J2301/30—Additional features of adhesives in the form of films or foils characterized by the chemical, physicochemical or physical properties of the adhesive or the carrier
- C09J2301/312—Additional features of adhesives in the form of films or foils characterized by the chemical, physicochemical or physical properties of the adhesive or the carrier parameters being the characterizing feature
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J2301/00—Additional features of adhesives in the form of films or foils
- C09J2301/40—Additional features of adhesives in the form of films or foils characterized by the presence of essential components
- C09J2301/41—Additional features of adhesives in the form of films or foils characterized by the presence of essential components additives as essential feature of the carrier layer
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J2433/00—Presence of (meth)acrylic polymer
-
- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J2475/00—Presence of polyurethane
- C09J2475/006—Presence of polyurethane in the substrate
Definitions
- the present invention relates to a halogen-free flame-retardant preferably colored winding tape, which further preferably has a pressure-sensitive adhesive coating and the Beispie! is used for wrapping ventilation ducts in air conditioners, wires or cables and is particularly suitable for wiring harnesses in vehicles or picture tubes for picture tubes.
- the wrapping tape serves for bundling, isolating, marking or protecting.
- Cable wrapping tapes and insulating tapes are usually made of plasticized PVC film with a one-sided pressure-sensitive adhesive coating.
- plasticized PVC film with a one-sided pressure-sensitive adhesive coating.
- the wall thicknesses of the cable insulation and the thicknesses of the tapes of the PVC film used for wrapping are reduced.
- the usual thickness of the PVC films for winding tapes is 85 to 150 microns. Below 85 ⁇ m, considerable problems occur in the calendering process, so that such products with reduced PVC content are scarcely available.
- wrap bands contain stabilizers based on toxic heavy metals such as lead, cadmium or barium.
- textile adhesive tapes Another disadvantage of textile adhesive tapes is the low breakdown voltage of about 1 kV, because only the adhesive layer isolated. On the other hand, foil tapes are over 5 kV, they are good voltage resistant. Textile wrapping tapes are either not flameproof or contain halogen compounds (usually bromine compounds) as flame retardants. Examples can be taken from DE 200 22 272 U1, EP 1 123 958 A1, WO 99/61541 A1 and US Pat. No. 4,992,331 A1.
- polyester wrap tapes and cable insulation are being used tentatively to make wiring harnesses. These have significant deficiencies in terms of their flame resistance, flexibility, processability, aging resistance or compatibility with the cable materials.
- the most serious disadvantage of polyester is the considerable sensitivity to hydrolysis, so that use for safety reasons in automobiles is no longer an option.
- Polyester-based wrapping tapes are either non-flame resistant or contain halogen compounds as flame retardants. Examples can be found in DE 100 02 180 A1, JP 10 149 725 A1, JP 09 208 906 A1, JP 05 017 727 A1 and JP 07 150 126 A1.
- WO 00/71634 A1 describes a wound adhesive tape whose film consists of an ethylene copolymer as the base material.
- the carrier film contains the halogen-containing flame retardant decabromodiphenyl oxide. The film softens below a temperature of 95 0 C, but the normal use temperature is often above 100 0 C or even briefly above 130 0 C, which is integral with the use in the engine compartment not uncommon.
- WO 97/05206 A1 describes a halogen-free wound adhesive tape whose carrier film consists of a polymer blend of low-density polyethylene and an ethylene / vinyl acetate or ethylene / acrylate copolymer.
- the carrier film material described is a blend of EPDM and EVA in combination with ethylenediamine phosphate as flame retardant. This has a high sensitivity to hydrolysis, as does ammonium polyphosphate. In combination with EVA embrittlement on aging also occurs.
- the application on conventional cables made of polyolefin and aluminum or magnesium hydroxide leads to poor compatibility.
- the fire behavior of such wiring harnesses is poor because these metal hydroxides are antagonistic with phosphorus compounds as set forth below.
- the insulating tapes described are too thick and too stiff for wiring harnesses.
- EP 0 953 599 A1 claims a polymer blend of LLDPE and EVA for cable insulation applications and as a sheet material.
- a flame retardant a combination of magnesium hydroxide with a special surface and red phosphorus described, the softening at a relatively low temperature is, however, accepted.
- the amount of magnesium hydroxide is 63 phr. Because of the despite high filler content unsatisfactory fire properties red phosphorus is used.
- EP 1 097 976 A1 A very similar combination is described in EP 1 097 976 A1.
- a PP polymer is used instead of the LLDPE. used, which has a higher softening temperature.
- the disadvantage is the resulting low flexibility.
- EVA or EEA it is said that the film has sufficient flexibility.
- these polymers are blended with polypropylene to improve flame retardancy.
- the products described have a film thickness of 0.2 mm, but this thickness excludes flexibility in filled polyolefin since it depends on the 3rd power of the thickness.
- the method of extrusion described is hardly feasible on a production line at the extremely low melt indices of the poly olefins used, as known to the person skilled in the art, and certainly not for a practical thin film.
- the extremely low melt index limits the use to 50 to 100 phr of magnesium hydroxide.
- JP 2001 049 208 A1 describes an oil and heat-resistant film for an adhesive tape, in which both layers comprise a mixture of EVA or EEA, peroxide crosslinker, silane crosslinker, silanol condensation catalyst and flameproofing agent (100 phr of magnesium hydroxide).
- This film solves neither the problem of poor flexibility of a filled polypropylene film, nor the high demands on the aging resistance.
- WO 03/070848 A1 describes a film of reactive polypropylene and 40 phr of magnesium hydroxide. This additional amount is not sufficient for a significant improvement of the fire behavior.
- Adhesive tapes made of polyurethane (PU) are known, some with flame retardant equipment. These are mostly tack-sensitively treated PU foams and also foil-based adhesive tapes explained below.
- JP 2001 020 178 A1 describes a double-sided adhesive tape for electromagnetic shielding made of a polyester fabric and a halogen-containing PU layer.
- JP 2001 288 430 A1 describes a flame-retardant adhesive tape whose support has been produced from a polyurethane resin solution and dicyandiamide.
- the use of a solution cast film is not only expensive, but also does not meet the ecological goals of the tape of the invention from a film which is to be prepared solvent-free by thermoplastic processing.
- Attempts to incorporate dicyandiamide in thermoplastic polyurethane (TPU) have failed due to decomposition of the TPU during compounding.
- JP 2003 013 026 A1 and JP 2004 1 15 608 A1 describe (cover) adhesive tapes for handling radioactive substances, the carrier of which is likewise produced from solution. It consists of a polyurethane resin solution and hydrazodicarbonamide. Hydrazodicarbonamide acts as a foaming agent upon thermoplastic processing by decomposition and would be unsuitable for high melting point hard block TPU (ie, high processing temperature).
- JP 62 069 640 A1 describes a transparent adhesive tape for the production of wafer chips.
- the PU carrier which may optionally contain a flame retardant such as 4,4'-dichlorohexylmethane diisocyanate, is prepared from solution.
- APP as a strong ionic salt, also causes poor electrical properties, as is known from use in other materials, for example wire insulation compounds.
- the winding tape according to the invention should also have good insulating properties.
- antimony trioxide only works in combination with halogens and therefore makes no sense in TPU alone.
- ATH is suitable as flame retardant only for PE and EVA, since it has a low decomposition temperature, but not for polypropylene and therefore certainly not for TPU with even higher processing temperature.
- EP 1 108 768 A1 describes an exclusively colorless adhesive tape with TPU carrier for the gluing of joints in aircraft.
- the adhesive tape according to the invention is suitable for winding applications, in particular wire bundles in vehicles, certainly. In practice, such winding tapes are black, colored less often and virtually never colorless.
- the adhesive tape claimed in the specification is additionally limited to a transparent polyurethane pressure-sensitive adhesive, but the winding tape according to the invention must have a penetrating unwinding force or adhesive force on the back in order to be applied in a slightly stretched state to the object to be wrapped. For this purpose, however, essentially adhesives of polyacrylate, natural or synthetic rubber are suitable.
- the claimed tape must have a thickness of at least 9 mils, that is, the film has a minimum thickness of 8 mils (0.2 mm) to meet the Boeing BSS 7230 F2 standard.
- the claimed in the publication adhesive tape also contains brominated flame retardants.
- the application described requires no particular thermal resistance, and the document also gives no indication of such a requirement.
- no special composition is performed for the polyurethane film.
- JP 2005 264 112 A describes an adhesive tape with a carrier consisting of copolyamide as main component and secondary components.
- the latter are polyurethane and nitrogen compounds.
- the document teaches that the addition of polyurethane improves the flexibility of a pure polyamide film, but greatly reduces the scratch resistance in larger quantities, therefore, the proportion of polyamide should be 40 to 90 parts.
- flame retardants hydrazodicarbonamide, mono-, di-, tricyanoethyl cyanurate, melamine cyanurate and dicyandiamide are mentioned. Preference is given to a combination of hydrazodicarbonamide and melamine cyanurate.
- the film for the winding tape according to the invention should have the highest possible temperature resistance, that is, a short-term heat resistance at 170 0 C and a Heat resistance at 140 0 C, therefore, a TPU is required with significantly higher softening point, as mentioned in the document TPUs for modifying the polyamide film. Also due to the desired strength and Moduli TPU raw materials should be used with a relatively high melting Hartblockanteil for the winding tape according to the invention, resulting in processing temperatures of 200 0 C and more result.
- the polyamide film mentioned in the document mentions that it can no longer be processed from 180 ° C.
- the film has a thickness of 0.2 mm.
- For the polyurethane film no special composition is performed.
- the film for the winding tape according to the invention would not be produced with the mentioned in the text preferred combination of hydrazodicarbonamide and melamine cyanurate because of the decomposition at high temperatures, which is required for the processing of TPU with high-melting hard blocks or high Shore hardness.
- EP 1 101 807 A1 mentions a mask adhesive tape with a composite carrier of crosslinked polyurethane and polyester.
- the PU layer may be modified with fillers, flame retardants are not mentioned.
- the adhesive tape carriers mentioned are produced by in-line metering and mixing of polyol, isocyanate and catalyst on an auxiliary carrier.
- the advantage lies in low raw material costs compared to TPU, however the process is very difficult to realize in practice. Since the carriers are networked, a thermoplastic recycling is not possible.
- the main disadvantage of the subject matter mentioned in the publications, however, is the lack of suitability for wrapping tapes, since they have neither flame resistance nor a sufficient tensile strength, which results from TPU physical crosslinking on the hard blocks.
- EP 1 469 052 A1 and EP 1 469 024 A1 describe adhesive tapes with crosslinked polyurethanes as pressure-sensitive adhesives on any carriers, but not TPU films.
- US Pat. No. 5,858,495 A1 describes a very thick luminescent adhesive tape whose support is produced by polymerization of a mixture of a polyester or polyurethane acrylate and a luminescent pigment. This material is not a TPU from the chemical structure, but a very hard urethan phenomenonhaitiges hard polymer.
- the object of the invention is to find a solution for a winding tape which combines the advantages of halogen freedom, flame resistance, heat resistance, abrasion resistance, and the mechanical properties such as tensile strength and flexibility of PVC Wickelbändem with the halogen freedom of textile non-flame-resistant winding tapes and beyond a superior Heat aging resistance, wherein a large-scale producibility of the film should be ensured and a high breakdown voltage strength is necessary in some applications. Due to the absence of heavy metal stabilizers and phthalate plasticizers, the wrapping tapes should be hygienic and ecologically beneficial.
- the complete or substantial abandonment of plasticizers, in particular DOP, is desirable in order to achieve high fogging values and to avoid the consequences of plasticizer migration in the adhesive, such as telescoping or edge tackiness.
- the object of the invention is also to provide such winding tapes are available, which allow a particularly safe and fast wrapping, especially of wires and cables for marking, protecting, insulating, sealing or bundling, the disadvantages of the prior art, or not at least occur in the previous extent.
- thermoplastically produced films with additive combinations which not only reach, but even exceed the heat resistance of PVC.
- the invention relates to a thermally highly resistant flame-retardant halogen-free winding tape with a film of thermoplastic polyurethane with at least one flame retardant containing at least one antioxidant and / or hydrolysis stabilizer.
- an adhesive in particular a pressure-sensitive adhesive, is applied at least on one side of the carrier film.
- a carrier made of thermoplastic polyurethane, at least one halogen-free flame retardant and at least one stabilizer suitable for the winding band can be produced as follows.
- the polyurethane is out
- the index (formed from the multiplied by 100 quotient of the equivalence ratios of the isocyanate groups from (A) and the sum of the Zerewitinoff-active hydrogen atoms of the compounds (B) and (C)) is 85 to 120, preferably 95 to 110. In the case of incorporation of phosphorus-containing Flammtikstoffn the index is calculated from the multiplied by 100 quotient of the equivalence ratios of the isocyanate groups (A) and the sum of the Zerewitinoff-active hydrogen atoms of the compounds (B), (C) and (E).
- the components (B) and (C) are different.
- organic diisocyanates (A) it is possible to use aliphatic, cycloaliphatic, araliphatic, aromatic and heterocyclic diisocyanates or any desired mixtures of these diisocyanates (cf. HOUBEN-WEYL "Methods of Organic Chemistry", Volume E 20 "Macromolecular Materials”, Georg Thieme Verlag, Stuttgart, New York 1987, pages 1587 to 1593 or Justus Liebigs Annalen der Chemie, 562, pages 75 to 136).
- aliphatic diisocyanates such as ethylene diisocyanate, 1,4-tetramethylene diisocyanate, 1,6-hexamethylene diisocyanate, 1,12-dodecane diisocyanate; Cycloaliphatic diisocyanates such as isophorone diisocyanate, 1, 4-cyclohexane diisocyanate, 1-methyl-2,4-cyclohexane diisocyanate and 1-methyl-2,6-cyclohexane diisocyanate and the corresponding isomer mixtures, 4,4'-dicyclohexylmethane diisocyanate, 2,4'-dicyclohexylmethane diisocyanate and 2 , 2'-dicyclohexylmethane diisocyanate and the corresponding isomer mixtures; also aromatic diisocyanates such as tolylene 2,4-diisocyanate, mixtures of 2,4-tolylene diisocyanate and 2,6
- 1,6-hexamethylene diisocyanate 1,4-cyclohexane diisocyanate, isophorone diisocyanate, dicyclohexylmethane diisocyanate, diphenylmethane diisocyanate isomer mixtures having a 4,4'-diphenylmethane diisocyanate content of more than 96% by weight and in particular 4,4'-diphenylmethane diisocyanate and 1,5 - Naphthylene diisocyanate.
- the diisocyanates mentioned can be used individually or in the form of mixtures with one another. They may also be used together with up to 15 mol% (calculated on total diisocyanate) of a polyisocyanate. However, it may be added at most as much polyisocyanate that a still thermoplastically processable product is formed.
- polyisocyanates examples include triphenylmethane-4,4 ', 4 "-triisocyanate and polyphenyl polymethylene polyisocyanates.
- the most preferred isocyanate is 4,4'-diphenylmethane diisocyanate.
- Zerewitinoff-active polyols (B) 1 used in the products of the invention are those having on average at least 1, 8 to at most 3.0 Zerewitinoffamide
- Hydrogen atoms and a number average molecular weight M n of 450 to 10,000 daltons Due to production, these often contain small amounts of nonlinear Links. Therefore, one often speaks of "substantially linear polyols.” Preference is given to polyester, polyether, polycarbonate diols or mixtures of these.
- amino groups include amino groups, thiol groups or carboxyl-containing compounds in particular two to three, preferably two hydroxyl-containing compounds, especially those with number average molecular weights M n from 450 to 6000 daltons, particularly preferably those having a number average molecular weight M n of 600 to 4500 daltons, for example Hydroxyl-containing polyesters, polyethers, polycarbonates and polyesteramides.
- Suitable polyether diols can be prepared by reacting one or more alkylene oxides having 2 to 4 carbon atoms in the alkylene radical with a starter molecule containing two active hydrogen atoms bonded.
- alkylene oxides which may be mentioned are: ethylene oxide, 1,2-propylene oxide, epichlorohydrin and 1,2-butylene oxide and 2,3-butylene oxide.
- Preferably used are ethylene oxide, propylene oxide and mixtures of 1, 2-propylene oxide and ethylene oxide.
- the alkylene oxides can be used individually, alternately in succession or as mixtures.
- starter molecules are: water, amino alcohols, such as N-alkyldiethanolamines, for example N-methyldiethanolamine and diols, such as ethylene glycol, 1,3-propyleneglycol, 1,4-butanediol and 1,6-hexanediol.
- Suitable polyetherols are also the hydroxyl-containing polymerization of tetrahydrofuran. It is also possible to use trifunctional polyethers in proportions of from 0 to 30% by weight, based on the bifunctional polyethers, but at most in such an amount that a still thermoplastically processable product is formed.
- the substantially linear polyether diols preferably have number average molecular weights M n of 450 to 6000 daltons. They can be used both individually and in the form of mixtures with one another.
- Suitable polyester diols may be, for example, from dicarboxylic acids having 2 to 12
- Carbon atoms preferably 4 to 6 carbon atoms, and polyvalent ones
- Suitable dicarboxylic acids are, for example, aliphatic dicarboxylic acids such as succinic acid, glutaric acid, adipic acid, suberic acid, Azelaic acid and sebacic acid or aromatic dicarboxylic acids such as phthalic acid, isophthalic acid and terephthalic acid.
- the dicarboxylic acids can be used singly or as mixtures, for example in the form of an amber, glutaric and adipic acid mixture.
- the corresponding dicarboxylic acid derivatives such as carbonic acid diesters having 1 to 4 carbon atoms in the alcohol radical, carboxylic anhydrides or carboxylic acid chlorides.
- polyhydric alcohols are glycols having 2 to 10, preferably 2 to 6 carbon atoms, for example ethylene glycol, diethylene glycol, 1, 4-butanediol, 1, 5-pentanediol, 1, 6-hexanediol, 1, 10-decanediol, 2,2 Dimethyl 1,3-propanediol, 1,3-propanediol or dipropylene glycol.
- the polyhydric alcohols may be used alone or mixed with each other.
- esters of carbonic acid with the diols mentioned in particular those having 4 to 6 carbon atoms, such as 1,4-butanediol or 1,6-hexanediol, condensation products of omega-hydroxycarboxylic acids, such as omega-hydroxycaproic acid or polymerization products of lactones, for example optionally substituted omega-hydroxycarboxylic acids. caprolactones.
- polyester diols used are ethanediol polyadipates, 1,4-butanediol polyadipates, ethanediol-1,4-butanediol polyadipates, 1,6-hexanediol neopentyl glycol polyadipates, 1,6-hexanediol-1,4-butanediol polyadipates and polycaprolactones.
- the polyester diols have number average molecular weights M n of 450 to 10,000 daltons and can be used individually or in the form of mixtures with one another.
- the preferred diol is a hydroxylated polymerization product of tetrahydrofuran, as these are relatively stable to hydrolysis, microbial degradation and oxidation.
- the molecular weight M n is in the range of 450 to 10,000 daltons, preferably in the range of 600 to 1500 daltons.
- Zerewitinoff-active polyols are so-called chain extenders and have an average of 1, 8 to 3.0 Zerewitinoff15 hydrogen atoms and have a molecular weight of 60 to 400 daltons. By these is meant, in addition to amino groups, thiol groups or carboxyl-containing compounds, those having two to three, preferably two hydroxyl groups.
- chain extenders are preferably used aliphatic diols having 2 to 14 carbon atoms such as ethanediol, 1, 2-propanediol, 1, 3-propanediol, 1, 4-butanediol, 2,3-butanediol, 1, 5-pentanediol, 1, 6 Hexanediol, diethylene glycol and dipropylene glycol.
- diesters of terephthalic acid with glycols having 2 to 4 carbon atoms for example terephthalic acid-bis-ethylene glycol or terephthalic acid bis-1,4-butanediol, hydroxyalkylene ethers of hydroquinone, for example 1,4-di (beta-hydroxyethyl) hydroquinone ethoxylated bisphenols for example 1,4-di (beta-hydroxyethyl) bisphenol A, (cyclo) aliphatic diamines such as isophoronediamine, ethylenediamine, 1,2-propylenediamine, 1,3-propylenediamine, N-methyl-propylene-1,3 -diamine, N, N'-dimethylethylenediamine and aromatic diamines such as 2,4-toluenediamine, 2,6-toluylenediamine, 3,5-diethyl-2,4-toluenediamine or 3,5-diethyl
- Ethanediol, 1,4-butanediol, 1,6-hexanediol, 1,4-di (beta-hydroxyethyl) hydroquinone or 1,4-di (beta-hydroxyethyl) bisphenol A are particularly preferably used as chain extenders. It is also possible to use mixtures of the abovementioned chain extenders. In addition, smaller amounts of triols can be added.
- the preferred chain extender is 1,4-butanediol.
- Compounds which are monofunctional towards isocyanates can be used in proportions of up to 2% by weight, based on TPU, as so-called chain terminators.
- Suitable are, for example, monoamines such as butyl and dibutylamine, octylamine, stearylamine, N-methylstearylamine, pyrrolidine, piperidine or cyclohexylamine, monoalcohols such as butanol, 2-ethylhexanol, octanol, dodecanol, stearyl alcohol, the various amyl alcohols, cyclohexanol and Ethyienglykolmonomethylether.
- flame retardants for example, inorganic or preferably organic phosphorus-containing compounds are selected.
- examples are Ammonium polyphosphate, ethylenediamine polyphosphate and phosphoric acid and phosphonic acid esters, for example triphenyl phosphate, tricresyl phosphate, alkyphenyl phosphates or diphenyl cresyl phosphate.
- R preferably an aryl group (for example, phenyl, Kresyi),
- A is a linking group such as arylene (for example, phenylene), biaryls (for example, biphenyl), two arylene groups which by another group such as -CH2-, -C (CH3) 2 -, -SO 2 - or - CO- are joined, or alkylene (for example, neopentyl) and n is between 1 and 10.
- arylene for example, phenylene
- biaryls for example, biphenyl
- two arylene groups which by another group such as -CH2-, -C (CH3) 2 -, -SO 2 - or - CO- are joined, or alkylene (for example, neopentyl) and n is between 1 and 10.
- alkylene for example, neopentyl
- Such compounds are industrially prepared from phosphoric acid or phosphorus oxytrichloride and diphenols
- phosphoric acid and phosphonic acid derivatives which on hydrolysis release neither phenol nor cresol, examples of which are trixylyl phosphate, butylated tri phenyl phosphates (for example Fyrquel TM EHC-S), phosphoric acid-1, 3-phenylene tetraxylenyl esters and salts of phosphonic acids such as Sodium, magnesium, zinc or aluminum salts of propane or phenylphosphonic acid (benzenephosphonic acid).
- incorporable phosphorus-containing compounds are phosphonates or phosphine oxides having an average of at least 1, 5 and at most 3.0 Zerewitinoff-active hydrogen atoms and a number average molecular weight M n of 60 to 10,000 daltons have the following structural formula
- R 1 , R 2 branched or unbranched alkylene radicals having 1 to 24 carbon atoms, substituted or unsubstituted arylene radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkylene radicals having 6 to 30 carbon atoms, substituted or unsubstituted Alkarylene radicals having 6 to 30 carbon atoms, where R 1 and R 2 may be identical or different,
- R 3 H branched or unbranched alkyl radicals having 1 to 24 carbon atoms, substituted or unsubstituted aryl radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkyl radicals having 6 to 30 carbon atoms, substituted or unsubstituted alkaryl radicals with 6 to 30 carbon atoms,
- R 1 H branched or unbranched alkyl radicals having 1 to 24 carbon atoms, substituted or unsubstituted aryl radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkyl radicals having 6 to 30 carbon atoms, substituted or unsubstituted alkaryl radicals with 6 to 30 carbon atoms,
- R 2 , R 3 branched or unbranched alkylene radicals having 1 to 24 carbon atoms, substituted or unsubstituted arylene radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkylene radicals having 6 to 30 carbon atoms, substituted or unsubstituted alkarylene radicals having 6 to 30 carbon atoms, wherein R 2 and R 3 may be the same or different
- halogen-free flame retardants include nitrogen-containing compounds such as melamine cyanurate, melamine, biuret, triuret, ammelide, ammeline, cyanuric acid, tris (2-hydroxyethyl) isocyanurate, bis (2-hydroxyethyl) isocyanurate, 2-hydroxyethyl isocyanurate, tris (carbomethyl) isocyanurate , Tris (2-cyanoethyl) isocyanurate, bis (2-cyanoethyl) isocyanurate, 2-cyanoethyl isocyanurate, trimethyl isocyanurate, HA (L) S such as CAS no.
- nitrogen-containing compounds such as melamine cyanurate, melamine, biuret, triuret, ammelide, ammeline, cyanuric acid
- tris (2-hydroxyethyl) isocyanurate bis (2-hydroxyethyl) isocyanurate, 2-hydroxyethyl iso
- Suitable flame retardants (E) are compounds which contain both elements, for example melamine phosphate, melamine polyphosphate, urea phosphate, diethyl N, N-bis (2-hydroxyethyl) aminomethylphosphonate, N, N-bis (2-hydroxyalkyl) -aminomethanephosphonic acid dimethyl ester, Triethanolamine phosphate or phosphorus oxytriamide.
- flame retardant (E) other halogen-free substances are suitable, examples of which are aluminum hydroxide, magnesium hydroxide, expandable or exfoliated graphite.
- Preferred flame retardant (E) is melamine cyanurate.
- thermoplastic polyurethanes used according to the invention may contain, as auxiliary agents and additives (H), which are not flame retardants, up to preferably not more than 20% by weight, based on the total amount of TPU, of the customary auxiliaries and additives.
- H auxiliary agents and additives
- auxiliaries and additives are nucleating agents, lubricants such as fatty acid esters, their metal soaps, fatty acid amides, fatty acid ester amides and silicone compounds, antiblocking agents, inhibitors, light stabilizers, dyes, pigments, inorganic and / or organic fillers, plasticizers such as adipates, sebacates and alkylsulfonic acid esters, fungistatic and bacteriostatic agents Substances and fillers and their mixtures and reinforcing agents such as fibrous materials.
- lubricants such as fatty acid esters, their metal soaps, fatty acid amides, fatty acid ester amides and silicone compounds, antiblocking agents, inhibitors, light stabilizers, dyes, pigments, inorganic and / or organic fillers, plasticizers such as adipates, sebacates and alkylsulfonic acid esters, fungistatic and bacteriostatic agents Substances and fillers and their mixtures and reinforcing agents
- auxiliaries and additives are the specialist literature, for example, the monograph by JH Saunders and KC Fresh "High Polymers", Volume XVI, polyurethanes, part 1 and 2, published by Interscience Publishers 1962 and 1964, the paperback for plastic additives of R, Gumbleter and H. Müller ⁇ Hanser Verlag Kunststoff 1990) or DE 29 01 774 A1.
- the carrier film of the invention is preferably substantially free of volatile plasticizers such as DOP or DINP and therefore has an excellent fire behavior and low emission (plasticizer evaporation, fogging).
- the fogging value is preferably over 90%.
- the film preferably contains up to 5 phr of phosphorus-free plasticizers, in particular no phosphorus-free plasticizers at all.
- phosphoric and phosphonic acid compounds which are incorporated and which are sparse because of their molecular weight of at least 300, preferably at least 400 daltons, that is, phosphate plasticizers having a molecular weight of 300 daltons or less, or preferably 400 daltons or less should be avoided.
- the film used according to the invention contains at least one stabilizer, for example at least one antioxidant (F).
- the amount is preferably at least 1 phr and in particular at least 2 phr (the data in phr mean parts by weight of the relevant component based on 100 parts by weight of all polymer components of
- the wrapping tapes of the invention preferably contain a combination of primary and secondary Antioxidant, wherein the primary and secondary antioxidant function are present in different molecules or may be combined in one molecule.
- the listed quantities do not include optional stabilizers such as metal deactivators or light stabilizers.
- the amount of secondary antioxidant is preferably at least 0.5 phr, more preferably at least 1 phr.
- Stabilizers for PVC products can not be transferred to TPU.
- Secondary antioxidants break down peroxides and are therefore used in diene elastomers as part of anti-aging packages.
- primary antioxidants for example sterically hindered phenols or C radical scavengers such as CAS 181314-48-7
- secondary antioxidants for example sulfur compounds, phosphites or sterically hindered amines
- primary antioxidant preferably sterically hindered phenols having a molecular weight of more than 500 g / mol (preferably> 700 g / mol) with a phosphitic secondary antioxidant (preferably having a molecular weight> 600 g / mol) is preferred.
- a low-volatile primary phenolic antioxidant and a respective secondary antioxidant from the class of sulfur compounds preferably having a molecular weight of more than 400 g / mol, in particular> 500 g / mol
- the class of sulfur compounds preferably having a molecular weight of more than 400 g / mol, in particular> 500 g / mol
- the class of phosphites is suitable the phenolic, sulphurous and phosphitic functions need not be present in three different molecules, but more than one function may be combined in one molecule
- Phenolic and aminic function CAS 991-84-4, 633843-89-0
- CAS 6683-19-8 for example Irganox 1010
- thiopropionic acid ester CAS 693-36-7 Irganox PS 802
- 123-28-4 Irganox PS 800
- CAS 31570-04-4 Irgafos 168
- metal deactivators can be added to complex heavy metal traces which can catalytically accelerate aging.
- Examples are CAS 32687-78-8, 70331-94-1, 6629-10-3, ethylenediaminetetraacetic acid, N, N'-di-salicylidene-1,2-diaminopropane, 3- (N-salicylol) -amino-1, 2,4-triazole (Palmarole ADK STAB CDA-1), N, N'-bis [3- (3 ', 5'-di-tert-butyl-4'-hydroxyphenyl) propionyl] hydrazide (Palmarole MDA.P. 10) or 2,2'-oxamido-bis- [ethyl-3- (tert-butyl-4-hydroxyphenyl) propionate] (Palmarole MDA.P.11.).
- phosphite stabilizers as particularly suitable for a sufficient heat aging stability of the product out. Even in extrusion processing power The addition of phosphites in the Ait fürstechnik the product is still positively noticeable.
- an amount of at least 0.1, preferably at least 0.3, phr is preferred.
- hydrolysis stabilizers For example, monomeric or polymeric carbodiimides, oxazolines or reactive polyureas can be used as hydrolysis stabilizers (G). Preference is given to a polymeric carbodiimide based on aromatic isocyanates. For the preparation and structure of such carbodimides, see US 2,941, 956 A, JP 04 733 279 A, J. Org. Chem., 28, 2069-2075 (1963); Chemical Review, Vol. 81, No. 4, pp. 619 to 621 (1981). The amount is preferably at least 0.5 and in particular at least 2 phr.
- thermoplastics such as polyethylenes, ethylene / vinyl acetate copolymers, polypropylene homopolymers or copolymers.
- synthetic elastomers such as hydrogenated styrene-diene copolymers or non-fusible polymers such as EVA dispersion powder or impact modifier (for example acrylate elastomer particles having a shell of PAN or PMMA) can be used.
- EVA dispersion powder or impact modifier for example acrylate elastomer particles having a shell of PAN or PMMA
- no hydrolysis-sensitive polymeric additives having ester or amide groups in the polymer backbone are used.
- Suitable catalysts (D) are the tertiary amines known and customary in the prior art, for example triethylamine, dimethylcyclohexylamine, N-methylmorpholine, N, N'-dimethylpiperazine, 2- (dimethylaminoethoxy) ethanol, diazabicyclo [2.2 , 2] octane and similar and in particular organic metal compounds such as titanic acid esters, iron compounds or tin compounds such as tin diacetate, tin dioctoate, tin dilaurate or the Zinndialkylsalze aliphatic carboxylic acids such as dibutyltin diacetate or dibutyltin dilaurate or the like.
- Preferred catalysts are organic metal compounds, in particular titanic acid esters, iron and tin compounds.
- the total amount of catalysts in The TPU according to the invention is generally about 0 to 5 wt .-%, preferably 0 to 2 wt .-%, based on the total amount of JPU.
- the TPU related to the invention may be produced continuously or discontinuously.
- the best known production methods are the belt process (GB 1 057 018 A) and the extruder process (DE 19 64 834 A1).
- the structure of the TPU can be carried out either stepwise (prepolymer dosing method, reaction of components (A) and (B) and then with (C) or by the simultaneous reaction of all components (A), (B) and (C) in one step (one- Preferably, the prepolymer method is used.
- the addition of the flame retardant (E), the antioxidants (F), the hydrolysis protection agent (G) and / or the auxiliaries (H) can be carried out before, during or after the polyurethane reaction.
- the object of the present invention is primarily the absence of halogens with high flame retardancy, tear resistance and flexibility. As stated, the thermal requirements of the application increase, so that in addition an increased
- the product according to the invention is halogen-free in the sense that the halogen content of the raw materials is so low that it plays no role in the flame retardance.
- Halogens in trace amounts such as those that could occur as a result of impurities, process additives (fluoroelastomer) or as residues of catalysts, are not taken into consideration.
- inventive winding tape has self-extinguishing properties, with the preferred Embodiments of the winding band in fire tests according to FMVSS 302 (horizontal sample) and / or ASTM D 568 (vertical sample) mentioned test conditions extinguish itself.
- the thickness of the film of the invention is preferably in the range of 30 to 180 .mu.m, preferably 50 to 150 .mu.m, in particular 55 to 100 microns.
- the winding tape according to the invention has a corresponding thickness increased by the thickness of the optional pressure-sensitive adhesive coating.
- the surface can be textured or smooth. Preferably, the surface is slightly dull. This can be achieved by using a filler with a sufficiently high particle size or by a roll (for example embossing roll on the calender or matted chiliroll or embossing roll on extrusion).
- the winding tape used according to the invention is preferably colored (black, white or colored), wherein the carrier film and / or a further layer such as the adhesive are colored.
- the pigments used are preferably free of toxic heavy metals such as lead, cadmium or chromium.
- the winding tape according to the invention has a force at 10% elongation of 2 to 20 N / cm in the longitudinal direction, preferably from 4 to 11 N / cm, and at 50% elongation a force of 3 to 25 N / cm, preferably of 6 up to 17 N / cm.
- the 10% force is a measure of the stiffness of the film
- the 50% force is a measure of the conformability of winding in high deformation by high winding tension.
- the 50% force must not be too low, because otherwise the tear strength is usually too low.
- the tensile strength (breaking strength) of the carrier film is at least 10 N / cm, preferably at least 20 N / cm.
- TPUs can be very tough, measures may be taken to improve their performance
- Hand tearability of the wrapping tape required, such as blending with fillers, incompatible thermoplastic or non-meltable polymers, by rough cut side edges that form microscopic cracks in the film, which then apparently favor a tearing, or by later provided with, for example, by punching notches provided side edges.
- Rough cut edges can be produced, in particular, by using a squeeze cut with dull or jagged rotating knives on bale goods (jumbos, long rolls) or by cutting off with fixed blades or rotating knives of bar stock (rolls of production width and commercial length).
- the elongation at break can be adjusted by a suitable grinding of the blades and blades. Preference is given to the execution of the production of bar stock with cut-away with blunt fixed blades. By strongly cooling the bars before cutting, the cracking during the cutting process can be improved.
- the winding tape according to the invention has a high temperature resistance, in preferred embodiments should have an elongation at break of at least 100% after 312 hours of storage at 140 0 C (heat resistance test) or a short-term heat resistance of 170 0 C (after 30 min no cracks or molten points).
- the film of the winding tape contains a TPU with a sufficiently high proportion of hard blocks, which is why the Shore D hardness of the TPU raw material is preferably at least 35 and more preferably at least 50, which corresponds approximately to Shore A hardnesses of preferably at least 85 or particularly preferably at least 100.
- the flame-resistant adhesive tapes shown in the prior art use significantly softer TPU (Shore A 70 to 80) than the flame-resistant adhesive tapes with built-in flame retardant. If plasticizers or phosphoric acid esters are added to the adhesive tapes of such soft TPU as flame retardants, then these are much more inappropriate than the winding tapes according to the invention.
- the film is produced on a calender or by extrusion such as
- Example stamp kneader or extruder (for example, twin-screw extruder,
- Planetary roller extruder and then converted into a solid form (for example granules), which are then further processed in a film extrusion line or in an extruder, kneader or rolling mill of a calender line.
- the polyurethane film is preferably coated on at least one side with an adhesive.
- the amount of preferably present adhesive layer is 10 to 40 g / m 2 , preferably 18 to 28 g / m 2 (that is the amount after any necessary removal of water or solvent, the numerical values also correspond approximately to the thickness in microns).
- the information given here on the thickness and thickness-dependent mechanical properties relate exclusively to the TPU-containing layer of the winding tape without consideration of adhesive layer or other layers that are advantageous in connection with adhesive layers.
- the coating does not have to be full-surface, but may also be part-surface.
- a wrapping tape, each with a pressure-sensitive adhesive strip on the side edges is called.
- Such rubbers may be, for example, homopolymers or copolymers of isobutylene, of 1-butene, of vinyl acetate, of ethylene, of acrylic esters, of butadiene or of Be Isoprens.
- formulations based on polymers based on acrylic acid esters, vinyl acetate or isoprene are especially suitable.
- the self-adhesive composition used can be mixed with one or more additives, such as tackifiers (resins), plasticizers, fillers, flame retardants, pigments, UV absorbers, light stabilizers, aging inhibitors, photoinitiators, crosslinking agents or crosslinking promoters.
- additives such as tackifiers (resins), plasticizers, fillers, flame retardants, pigments, UV absorbers, light stabilizers, aging inhibitors, photoinitiators, crosslinking agents or crosslinking promoters.
- Tackifiers are, for example, hydrocarbon resins (for example polymers based on unsaturated C 5 or Cg monomers), terpene-phenolic resins, polyterpene resins from raw materials such as ⁇ - or ⁇ -pinene, aromatic resins such as coumarone-indene resins or styrene-based or ⁇ -styrene resins Methyl styrene such as rosin and its derivatives, for example disproportionated, dimerized or esterified resins, for example reaction products with glycol, glycerol or pentaerythritol, to name but a few, and also other resins (such as listed in Ullmanns Enzyklopadie der ischen Chemie, Volume 12) , Pages 525 to 555 (4th edition), Weinheim).
- hydrocarbon resins for example polymers based on unsaturated C 5 or Cg monomers
- terpene-phenolic resins polyterpene resins from raw materials such
- resins without easily oxidizable double bonds such as terpene-phenolic resins, aromatic resins and particularly preferably resins which are prepared by hydrogenation, for example hydrogenated aromatic resins, hydrogenated polycyclopentadiene resins, hydrogenated rosin derivatives or hydrogenated terpene resins.
- Suitable fillers and pigments are, for example, carbon black, titanium dioxide, calcium carbonate, zinc carbonate, zinc oxide, silicates or silicic acid.
- Suitable miscible plasticizers are, for example, aliphatic, cycloaliphatic and aromatic mineral oils, di- or polyesters of phthalic acid, trimellitic acid or adipic acid, liquid rubbers (for example low molecular weight nitrile or polyisoprene rubbers), liquid polymers of butene and / or isobutene, acrylic esters, polyvinyl ethers , Liquid and soft resins based on the raw materials of adhesive resins, wool wax and other waxes or liquid silicones.
- Crosslinking agents are, for example, isocyanates, phenolic resins or halogenated phenolic resins, melamine and formaldehyde resins. Suitable crosslinking promoters are, for example, maleimides, allyl esters, such as triallyl cyanurate, polyfunctional esters of acrylic and methacrylic acid. Anti-aging agents include, for example, hindered phenols, known, for example, under the trade name Irganox TM. Crosslinking is advantageous because the shear strength (for example expressed as holding power) is increased, thereby reducing the propensity to deformation of the rolls during storage (telescoping or formation of voids, also called gaps). The squeezing of the PSA is also reduced. This is expressed in non-adhesive side edges of the rollers and tack-free edges of the winding band guided in a spiral movement around cables or a cable harness.
- the holding power is preferably above 150 min.
- the bond strength to steel should be in the range of 1.5 to 3 N / cm.
- the winding tape according to the invention preferably has an unwinding force of from 1.2 to 6.0 N / cm, very particularly preferably from 1.6 to 4.0 N / cm and in particular from 1.8 to 2.5 N / cm at 300 mm / min Unwinding speed.
- the preferred embodiment has on one side a solvent-free self-adhesive composition which has been produced by coextrusion, melt or dispersion coating.
- a solvent-free self-adhesive composition which has been produced by coextrusion, melt or dispersion coating.
- polyacrylate-based adhesives in the form of dispersions or hotmelts are preferred.
- the use of a primer layer between the carrier film and adhesive is advantageous for improving the adhesion of the adhesive to the film and thus avoiding the transfer of adhesive to the film back during the unwinding of the rolls.
- the known dispersion and solvent systems can be used, for example, based on isoprene- or butadiene-containing rubber and / or cyclo-rubber.
- Isocyanates or epoxy resins as additives improve the adhesion and in part also increase the shear strength of the pressure-sensitive adhesive.
- Physical surface treatments such as flame treatment, corona or plasma or coextrusion layers are also suitable for improving adhesion.
- Particularly preferred is the use of such methods on solvent-free adhesive layers, especially those based on acrylate.
- a coating of the back can be carried out by known release agents (optionally blended with other polymers).
- stearyl compounds for example polyvinyl stearyl carbamate, stearyl compounds of transition metals such as Cr or Zr), ureas of polyethyleneimine and stearyl isocyanate, polysiloxanes (for example as a copolymer with polyurethanes or as a graft copolymer on polyolefin), thermoplastic fluoropolymers.
- stearyl is synonymous with all straight or branched alkyls or alkenyls having a C number of at least 10 such as octadecyl.
- the bar stock can be subjected to a heat storage to increase the unwind force or relaxation of the tensions of the films before cutting.
- the cutting of wrapping tapes with fabric, non-woven and film carriers is carried out by shear cut (between two rotating knives), cut-off cut (fixed or rotating knives are pressed into a rotating bar of the product), blade cut (the web is turned on divided by sharp blades) or crimping (between a rotating knife and a roller).
- the winding tape according to the invention is excellently suitable for wrapping elongate goods such as field coils or cable harnesses in vehicles. Flexibility is of paramount importance because, when applied to wires and cables, it is not just wrapped in a spiraling motion, but at branching points, plugs or cords
- Fixing clips must also be wrinkle-free curve-flexible wound.
- the winding tape elastically contracts the wire harness.
- the wrapping tape according to the invention is also suitable for other applications such as for the sealing of ventilation pipes in climatic degradation, since the high flexibility ensures good conformability to rivets, beads and folds. This mechanical
- the measurements are rel under test conditions of 23 ⁇ 1 0 C and 50 ⁇ 5%. Humidity carried out.
- T cr The crystallite melting point (T cr ) is determined by DSC according to ISO 3146. Since freshly processed TPUs have an extremely wide melting range because they are not already in thermodynamic final stage of crystallization, the samples before determining the crystallite are annealed for 24 hours at 140 0 C.
- the Shore A and Shore D hardness are determined according to ISO 868.
- the hydrolysis resistance is determined by storage of the sample in warm distilled water. After 1000 hours at 80 ° C, the sample is dried for 24 hours at 80 0 C in a vacuum and then determines the decrease in tear strength compared to the fresh state. If the tear strength has decreased less than 50%, is the test passed (P, passed), and if it has decreased by at least 50%, the test is failed (NP, not passed).
- the tensile elongation behavior of the winding band is measured on type 2 test specimens (rectangular 150 mm long and, if possible, 15 mm wide test strips) according to DIN EN ISO 527-
- Tensile elongation behavior is tested in the machine direction (MD, direction of travel) unless otherwise specified.
- the force is expressed in N / stripe width and the elongation at break in%.
- the test results, in particular the elongation at break (elongation at break), must be statistically verified by a sufficient number of measurements.
- Adhesive forces are determined at a deduction angle of 180 ° according to AFERA 4001 on (if possible) 15 mm wide test strips.
- steel plates according to the AFERA standard are used as the test substrate unless another primer is mentioned.
- the thickness of the film is determined according to DIN 53370 (a possible pressure-sensitive adhesive layer is subtracted from the measured total thickness).
- the Holding Power is determined according to PSTC 107 (10/2001), whereby the weight is 20 N and the dimensions of the bonding surface are 20 mm in height and 13 mm in width.
- the unwind force is measured at 300 mm / min according to DIN EN 1944.
- the hand tearability can not be expressed in numbers even though breaking strength, elongation at break, and tensile toughness (all measured longitudinally) are of substantial influence.
- the fire behavior is measured according to FMVSS 302 (horizontal sample) or ASTM D 568 (vertical sample).
- FMVSS 302 the pressure-sensitive adhesive coating is up.
- the temperature resistance is determined by two methods.
- the wrapping tape is first glued to a siliconized polyester film and stored in the heat. After the test time, the sample is cooled for 30 min at 23 0 C.
- the heat resistance test after 312 hours storage at 140 ° C is tested whether the elongation at break is still at least 100%.
- the short-time heat resistance is carried out by 30 minutes the sample was stored at 170 0 C, followed by winding of at least 3 turns at 50% overlap around a mandrel of 10 mm diameter and subsequent judgment of whether the pattern damage (for example cracks, melted spots ) having.
- test specimen described above is cooled for 4 hours to -40 ° C. in accordance with ISO / DIS 6722 and the sample is hand-wound onto a 5 mm diameter mandrel.
- the samples are checked visually for defects (cracks) in the adhesive tape.
- the breakdown voltage is measured according to ASTM D 1000. The number is taken to be the highest value that the sample withstands at this voltage for one minute. This number is converted to a sample thickness of 100 ⁇ m.
- a sample of 200 ⁇ m thickness withstands a maximum voltage of 6 kV after one minute, the calculated breakdown voltage is 3 kV / 100 ⁇ m.
- the fogging value is determined according to DIN 75201 A.
- MDI 4,4'-diphenylmethane diisocyanate
- Exolit TM OP 560 Flame retardant based Diol phosphonate with Zerewitinoff
- NORD-MIN TM MC-25J melamine cyanurate (Nordmann-Rassmann)
- Fyrolflex TM RDP resorcinol phosphate oligomer (Akzonobel) of the formula
- Irganox TM 1010 Tetrakis (methylene (3 J 5-di-tert-butyl-4-hydroxycinnamate)) - methane (Ciba
- Irganox TM PS 800 Dilauryl thiodipropionate (Ciba Specialty Chemicals)
- Elastollan TM Konz 952 Masterbatch Irganox TM 1010 in TPU (Elastogran)
- Licowax TM C release agent (Clariant Würtz GmbH)
- Disflamoll TM DPK flame retardant diphenyl cresyl phosphate (Bayer AG)
- Stabaxol TM KE 9463 Hydrolysis protection based on an aromatic carbodiimide
- the finished TPU was cut, granulated and fed to a compounder in the dry state. This fed the nip of an inverted type calender, the processing temperatures were around 220 0 C. Using the calender rolls, a film with a smooth surface of a thickness of 80 microns was formed.
- the film was stored for one week, leveled on the coater with rolls at 60 ° C. to improve the flatness, and provided with a release layer after corona treatment on one side and on the other with an aqueous acrylate pressure-sensitive adhesive (Primal PS 83 D from Rohm and Haas and addition of 5% Hostasin Black (Clariant color preparation) by means of a doctor blade at a coating weight of 24 g / m 2.
- the finished wrapping tape was wound into bars of 33 m in length on a 1-inch core (25 mm) by cutting off the bars with a fixed blade with a not very acute angle (straight knife) in 29 mm wide rolls.
- a prepolymer was prepared from MDI and Terathane TM 1000 in the molar ratio 2.5: 1 in the presence of Irganox TM 1010, NORD-MIN TM MC-25J and Fyrolflex TM RDP and reacted with 95 mole% of the equivalent amount of BDO.
- the contents of the additives are 0.3 phr Irganox TM 1010 (based on 100 phr TPU polymer), 23 phr NORD-MIN TM MC-25J and 4 phr Fyrolflex TM RDP.
- the finished TPU was cut, granulated and processed with the addition of 5% Masterbatch white and 5% Stabaxol TM KE 9463 at a temperature of 180 to 200 0 C to a 100 micron blown film.
- the carrier film was subjected to a one-sided flame treatment and, after 10 days of storage, coated with Acronal DS 3458 by means of a roll applicator at 50 m / min.
- the temperature load on the carrier was reduced by a cooled counterpressure roller.
- the application was about 35 g / m 2 .
- a suitable cross-linking was achieved in-line before winding by irradiation with a UV system equipped with 6 medium-pressure Hg lamps at 120 W / cm.
- the irradiated web was wound into rods of 33 m run length on 1 1/4 inch core (31 mm). The cutting was done by cutting off the rods by means of a fixed blade (straight knife) in 25 mm wide rolls.
- a prepolymer was prepared from MDI and Terathane TM 650 in a molar ratio of 2.2: 1 in the presence of Irganox TM 1010 and melamine polyphosphate (Dayang Chemicals) and reacted with 95 mol% of the equivalent amount of BDO.
- Irganox TM 1010 and melamine polyphosphate Dayang Chemicals
- BDO the equivalent amount of BDO.
- carbbodilite TM V-04B was added.
- the contents of the additives are 0.3 phr of Irganox TM 1010 (based on 100 phr of TPU polymer), 27 phr of melamine polyphosphate and 1 phr of Carbodilite TM V-04B.
- the adhesive coating was applied directly to the primer layer by means of a comma bar with a coating weight of 18 g / m 2 (based on dry matter).
- the adhesive consisted of a solution of a natural rubber adhesive in n-hexane with a solids content of 30 percent by weight. This consisted of 50 parts Natural rubber, 10 parts zinc oxide, 3 parts rosin resin, 6 parts alkylphenol resin, 17 parts terpene phenolic resin, 12 parts poly- ⁇ -pinene resin, 1 part antioxidant Irganox 1076 and 2 parts mineral oil.
- the drying This subsequent in a drying tunnel at 100 0 C.
- the film was immediately cut in behind a composite cutting machine with a knife bar with sharp blades at 19 mm distance from rolling on Standardkiebebandkemen (3 inches).
- the winding tape was produced analogously to Example 1, but the TPU film consisted of T-8375 (thermoplastic polyester polyurethane with Shore A hardness of 75 from DIC Bayer Polymer). At the same processing temperature, the melt adhered so strongly to the calender rolls that no film could be produced. After lowering the temperature to 160 0 C, a film could be removed.
- T-8375 was chosen because it was used for the examples of JP 2005 264 112 A (copolyamide-modified adhesive tape with TPU and a nitrogen-based compound flame retardant).
- the preparation of the winding tape should be carried out analogously to Comparative Example 1, the TPU film should, however, from 100 phr T-8375 and 10 phr Reofos 65 (isopropylated triaryl phosphate from Great Lakes) as a non-incorporated phosphorus-containing flame retardant. Because of very strong sticking to the calender rolls, however, it was not possible to obtain a film despite varying the processing conditions. The film could not be in the blowing process analogous to Example 2 due to lack of Process melt strength. Only with the casting process analogous to Example 3 was it possible to produce a colorless film 80 ⁇ m thick. These were then coated analogously to Example 1 with pressure-sensitive adhesive.
- Example 2 The production of the winding tape was carried out analogously to Example 1, the TPU film corresponded in its composition but the example 2 of JP 2005 264 112 A: • 40 phr T-8375,
- CM6541X3 copolyamide of ⁇ -aminocaproic acid and ⁇ -aminolauric acid having a crystallite melting point of 133 ° C. from Toray Industries
- Example 1 At a processing temperature similar to Example 1, the melt adhered to the calender rolls. It had bubbles and holes (presumably by decomposition of Hydrazodicarbonamids), after lowering the temperature to 160 to 170 0 C, a film could be produced. However, the thickness was similar to Example 1 80 microns instead of 0.2 mm as in Japanese writing.
- a conventional film for insulating tape of Singapore Plastic Products Pte. used under the name F2104S contained about 100 phr (parts per hundred resin) suspension PVC with a K value of 63 to 65, 43 phr DOP (di-2-ethylhexyl phthalate), 5 phr tribasic lead sulphate (TLB, stabilizer), 25 phr ground chalk (Bukit Batu Murah Malaysia with fatty acid coating), 1 phr of furnace black. and 0.3 phr of stearic acid (lubricant).
- the nominal thickness was 100 ⁇ m and the surface was smooth but dull.
- the primer Y01 was applied by Four Pillars Enterprise / Taiwan (analytically acrylate-modified SBR rubber in toluene) and thereon 23 g / m 2 the adhesive IV9 from Four Pillars Enterprise / Taiwan (analytically detectable major component: SBR and natural rubber, terpene resin and alkylphenol resin in toluene).
- the film was cut into rolls immediately after the dryer with a knife bar with sharp blades at a distance of 25 mm in an automatic machine.
- a TPU polymer, a film and a winding tape were prepared analogously to Example 2, but the additives were changed as follows. Irganox TM 1010 and Fyrolflex TM RDP were omitted and the NORD-MIN TM MC-25J content increased to 27 phr.
- the tear strengths are acceptable in all cases.
- the elongations at break of the comparative examples are relatively high, so that the hand tearability is partly deteriorated.
- Comparative Example 5 was surprising since the sample completely burns off, despite the high content of flame retardant, albeit at a low speed. In Examples 1 to 3, the samples also burned slowly but with burning dripping. Further comparative experiments not shown here show that, in order to fulfill the tests, a phosphorus content is absolutely necessary. As the content of melamine or melamine cyanurate increases, the rate of burning decreases, but at the same time the dripping of the melt decreases, and the burning rate even increases again from about 30 phr until the samples completely burn off at a critical concentration.
- Example 4 shows that like Comparative Example 2 can be well stabilized by adding antioxidant and hydrolysis stabilizer.
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Abstract
Description
Beschreibung description
Wickelband aus einer TPU-FolieWrap tape made of a TPU film
Die vorliegende Erfindung betrifft ein halogenfreies flammwidriges vorzugsweise farbiges Wickelband, das weiter vorzugsweise eine haftklebrige Beschichtung aufweist und das zum Beispie! zum Umwickeln von Lüftungsleitungen in Klimaanlagen, Drähten oder Kabeln eingesetzt wird und das insbesondere für Kabelbäume in Fahrzeugen oder Feldspulen für Bildröhren geeignet ist. Das Wickelband dient dabei zum Bündeln, Isolieren, Markieren oder Schützen.The present invention relates to a halogen-free flame-retardant preferably colored winding tape, which further preferably has a pressure-sensitive adhesive coating and the Beispie! is used for wrapping ventilation ducts in air conditioners, wires or cables and is particularly suitable for wiring harnesses in vehicles or picture tubes for picture tubes. The wrapping tape serves for bundling, isolating, marking or protecting.
Kabelwickelbänder und Isolierbänder bestehen üblicherweise aus weichgemachter PVC- Folie mit einer einseitigen Haftkleberbeschichtung. Es besteht verstärkt der Wunsch, die Nachteile dieser Produkte wie die Ausdampfung von Weichmachern und der hohe Haiogengehalt zu beseitigen.Cable wrapping tapes and insulating tapes are usually made of plasticized PVC film with a one-sided pressure-sensitive adhesive coating. There is an increasing desire to eliminate the disadvantages of these products such as the evaporation of plasticizers and the high Haiogengehalt.
Die Weichmacher konventioneller Isolierbänder und Kabelwickelbänder dampfen allmählich aus, was zu einer Gesundheitsbelastung führt, insbesondere ist das üblicherweise verwendete DOP bedenklich. Weiterhin schlagen sich die Dämpfe in Kraftfahrzeugen an den Scheiben nieder, was die Sicht (und damit erheblich die Fahrsicherheit) verschiech- tert und vom Fachmann als Fogging (DIN 75201 ) bezeichnet wird. Bei noch stärkerer Verdampfung durch höhere Temperaturen, zum Beispiel im Motorinnenraum von Fahrzeugen oder bei Isolierbändern in elektrischen Geräten, versprödet das Wickelband durch den entstehenden Weichmacherverlust und die Zersetzung des PVC-Polymers. Vor dem Hintergrund der Diskussion um Verbrennung von Kunststoffabfällen, zum Beispiel Shredderabfall aus dem Fahrzeugrecycling, besteht der Trend zur Reduktion des Halogengehaltes und damit der Dioxinentstehung. Daher werden die Wandstärken bei den Kabelisolierungen und die Dicken der zum Umwickeln verwendeten Bänder der PVC-Folie reduziert. Die übliche Dicke der PVC-Folien für Wickelbänder beträgt 85 bis 150 μm. Unterhalb von 85 μm treten erhebliche Probleme im Kalanderprozess auf, so dass solche Produkte mit vermindertem PVC-Gehalt kaum verfügbar sind.The plasticizers of conventional insulating tapes and cable wrapping tap gradually, resulting in a health burden, in particular, the commonly used DOP is questionable. Furthermore, the vapors in motor vehicles impact on the windows, which distorts the view (and thus considerably the driving safety) and is referred to by the person skilled in the art as fogging (DIN 75201). With even greater evaporation by higher temperatures, for example in the engine compartment of vehicles or insulating tapes in electrical equipment, the winding band embrittled by the resulting plasticizer loss and the decomposition of the PVC polymer. Against the background of the discussion about the incineration of plastic waste, for example shredder waste from vehicle recycling, there is a trend towards the reduction of the halogen content and thus the dioxin formation. Therefore, the wall thicknesses of the cable insulation and the thicknesses of the tapes of the PVC film used for wrapping are reduced. The usual thickness of the PVC films for winding tapes is 85 to 150 microns. Below 85 μm, considerable problems occur in the calendering process, so that such products with reduced PVC content are scarcely available.
Die üblichen Wickelbänder enthalten Stabilisatoren auf Basis giftiger Schwermetalle wie Blei, Cadmium oder Barium.The usual wrap bands contain stabilizers based on toxic heavy metals such as lead, cadmium or barium.
Stand der Entwicklung zum Bandagieren von Leitungssätzen sind Wickelbänder mit und ohne Klebstoffbeschichtung, die aus einem PVC-Trägermaterial bestehen, das durch Einarbeitung von erheblichen Mengen (30 bis 40 Gew.-%) an Weichmacher flexibel ein- gestellt ist. Das Trägermaterial ist zumeist einseitig mit einer Selbstklebemasse auf Basis von SBR-Kautschuk beschichtet. In JP 10 001 583 A1 , JP 05 250 947 A1 , JP 2000 198 895 A1 und JP 2000 200 515 A1 werden typische Weich-PVC-Klebebänder beschrieben. Um eine höhere Flammfestigkeit der Weich-PVC-Materialien zu erreichen, wird üblicherweise, wie zum Beispiel in JP 10 001 583 A1 beschrieben, die stark toxische Verbindung Antimonoxid verwendet.State of development for taping of cable sets are wrapping tapes with and without adhesive coating, which consist of a PVC carrier material which is flexibly adjusted by incorporation of considerable amounts (30 to 40 wt .-%) of plasticizer. The carrier material is usually coated on one side with a self-adhesive composition based on SBR rubber. JP 10 001 583 A1, JP 05 250 947 A1, JP 2000 198 895 A1 and JP 2000 200 515 A1 describe typical plasticized PVC adhesive tapes. In order to achieve a higher flame resistance of the soft PVC materials, the highly toxic compound antimony oxide is usually used, as described, for example, in JP 10 001 583 A1.
Es gibt Bemühungen, statt Weich-PVC-Folie Gewebe oder Vliese zu verwenden. Die daraus resultierenden Produkte werden aber in der Praxis nur wenig eingesetzt, da sie relativ teuer sind und sich in der Handhabung (zum Beispiel Handeinreißbarkeit, elasti- sches Rückstellvermögen) und unter Nutzungsbedingungen (zum Beispiel Beständigkeit gegen Nässe oder Betriebsflüssigkeiten) stark von den gewohnten Produkten unterscheiden, wobei - wie im Folgenden ausgeführt - der Dicke eine besondere Bedeutung zukommt. Derartig dicke Vliese machen die Kabelbäume noch dicker und unflexibler als klassische PVC-Tapes, auch wenn dies sich positiv auf die Schalldämmung auswirkt, was aber nur in einigen Bereichen von Kabelbäumen von Vorteil ist. Vliese sind aber wenig dehnbar und weisen praktisch kein Rückstellvermögen auf. Dies ist von Bedeutung, da dünne Äste von Kabelbäumen so stramm gewickelt sein müssen, dass sie beim Einbau nicht schlaff herunterhängen und sich leicht vor dem Anclipsen und dem Anbau der Stecker positionieren lassen. Ein weiterer Nachteil von Textilklebebändern ist die geringe Durchschlagspannung von ca. 1 kV, weil nur die Klebstoffschicht isoliert. Folienbänder hingegen liegen bei über 5 kV, sie sind gut spannungsbeständig. Textile Wickelbänder sind entweder nicht flammfest oder enthalten Halogenverbindungen (in der Regel Bromverbindungen) als Flammschutzmittel. Beispiele sind aus der DE 200 22 272 U1 , der EP 1 123 958 A1 , der WO 99/61541 A1 und der US 4,992,331 A1 zu entnehmen.Efforts are being made to use woven or non-woven fabrics instead of soft PVC film. However, the resulting products are rarely used in practice since they are relatively expensive and have a lot to do with handling (eg hand tearability, elastic recovery) and under conditions of use (for example resistance to moisture or operating fluids) distinguish, where - as stated below - the thickness has a special meaning. Such thick nonwovens make the wiring harnesses even thicker and less flexible than traditional PVC tapes, even if this has a positive effect on the sound insulation, but this is only advantageous in some areas of cable harnesses. However, nonwovens are not very stretchy and have virtually no resilience. This is important because thin branches of wiring harnesses must be wrapped so tightly that they do not hang slack down during installation and can be easily positioned before clipping and fitting the connectors. Another disadvantage of textile adhesive tapes is the low breakdown voltage of about 1 kV, because only the adhesive layer isolated. On the other hand, foil tapes are over 5 kV, they are good voltage resistant. Textile wrapping tapes are either not flameproof or contain halogen compounds (usually bromine compounds) as flame retardants. Examples can be taken from DE 200 22 272 U1, EP 1 123 958 A1, WO 99/61541 A1 and US Pat. No. 4,992,331 A1.
Wickelbänder und Kabelisolierungen aus thermoplastischem Polyester werden versuchsweise zur Herstellung von Kabelbäumen verwendet. Diese weisen erhebliche Mängel bezüglich ihrer Flammbeständigkeit, Flexibilität, Verarbeitbarkeit, Alterungsbeständigkeit oder Kompatibilität zu den Kabelmaterialen auf. Der schwerwiegendste Nachteil von Polyester ist jedoch die erhebliche Hydrolyseempfindlichkeit, so dass ein Einsatz aus Sicherheitsgründen in Automobilen nicht mehr in Frage kommt. Wickelbänder auf Polyesterbasis sind entweder nicht flammfest oder enthalten Halogenverbindungen als Flammschutzmittel. Beispiele sind in der DE 100 02 180 A1 , der JP 10 149 725 A1 , der JP 09 208 906 A1 , der JP 05 017 727 A1 und der JP 07 150 126 A1 zu finden.Thermo-polyester wrap tapes and cable insulation are being used tentatively to make wiring harnesses. These have significant deficiencies in terms of their flame resistance, flexibility, processability, aging resistance or compatibility with the cable materials. The most serious disadvantage of polyester, however, is the considerable sensitivity to hydrolysis, so that use for safety reasons in automobiles is no longer an option. Polyester-based wrapping tapes are either non-flame resistant or contain halogen compounds as flame retardants. Examples can be found in DE 100 02 180 A1, JP 10 149 725 A1, JP 09 208 906 A1, JP 05 017 727 A1 and JP 07 150 126 A1.
In der Literatur werden auch Wickelbänder aus Polyolefinen beschrieben. Diese sind jedoch leicht entflammbar oder enthalten halogenhaltige Flammschutzmittel. Darüber hinaus weisen die aus Ethylencopolymeren hergestellten Materialien einen zu geringen Erweichungspunkt auf (sie schmelzen in der Regel schon bei dem Versuch, eine Wärme- alterungsbeständigkeit zu prüfen), und im Fall der Verwendung von üblichen Polypropylenpolymeren ist das Material meistens zu unflexibel. Metallhydroxide werden zum Teil zwar verwendet, die Einsatzmengen von 40 bis 100 phr sind aber für ausreichenden Flammschutz zu gering, das heißt, sie sind nicht nur nicht selbstverlöschend, sondern weisen sogar eine relativ hohe Brandgeschwindigkeit (zum Beispiel über 100 mm/min nach MVSS 302) auf. Folien mit über 100 phr an Flammschutzmittel sind technisch kaum noch herstellbar. Hinzu kommt dass solche Folien ein geringe Reißfestigkeit aufweisen und sehr steif sind, das heißt, die wesentliche Verarbeitungseigenschaften eines typischen PVC-Wickelbandes wird verfehlt.Wrappers made of polyolefins are also described in the literature. However, these are easily flammable or contain halogenated flame retardants. In addition, the materials made from ethylene copolymers have too low a softening point (they usually melt already in an attempt to test heat aging resistance), and in the case of the use of conventional polypropylene polymers, the material is usually too inflexible. Although metal hydroxides are sometimes used, but the amounts of 40 to 100 phr are too low for adequate flame retardancy, that is, they are not only not self-extinguishing, but even have a relatively high rate of fire (for example, over 100 mm / min to MVSS 302 ) on. Films with more than 100 phr of flame retardants are technically difficult to produce. In addition, such films have low tear resistance and are very rigid, that is, the essential processing properties of a typical PVC wrap band is missed.
In der WO 00/71634 A1 wird ein Wickelklebeband beschrieben, dessen Folie aus einem Ethylen-Copolymer als Basismaterial besteht. Die Trägerfolie enthält das halogenhaltige Flammschutzmittel Decabromdiphenyloxid. Die Folie erweicht unterhalb einer Temperatur von 95 0C, die normale Nutzungstemperatur liegt aber oft oberhalb von 100 0C oder kurzzeitig sogar über 130 0C, was bei der Verwendung im Motorinnenraum keine Selten- heit ist. In der WO 97/05206 A1 wird ein halogenfreies Wickelklebeband beschrieben, dessen Trägerfolie aus einem Polymerblend aus Polyethylen niederer Dichte und einem Ethy- len/Vinylacetat- oder Ethylen/Acrylat-Copolymer besteht. Als Flammschutzmittel werden 40 bis 90 phr Aluminiumhydroxid oder Ammoniumpolyphosphat verwendet. Ein erheblicher Nachteil der Trägerfolie ist wiederum die geringe Erweichungstemperatur. Um dem entgegen zu wirken, wird die Verwendung von Silan-Vernetzung beschrieben. Diese Vernetzungsmethode führt aber nur zu sehr ungleichmäßig vernetztem Material, so dass sich in der Praxis kein stabiler Produktionsprozess beziehungsweise gleichmäßige Qua- lität des Produktes realisieren iässt.WO 00/71634 A1 describes a wound adhesive tape whose film consists of an ethylene copolymer as the base material. The carrier film contains the halogen-containing flame retardant decabromodiphenyl oxide. The film softens below a temperature of 95 0 C, but the normal use temperature is often above 100 0 C or even briefly above 130 0 C, which is integral with the use in the engine compartment not uncommon. WO 97/05206 A1 describes a halogen-free wound adhesive tape whose carrier film consists of a polymer blend of low-density polyethylene and an ethylene / vinyl acetate or ethylene / acrylate copolymer. As flame retardants, 40 to 90 phr of aluminum hydroxide or ammonium polyphosphate are used. A significant disadvantage of the carrier film is again the low softening temperature. To counteract this, the use of silane crosslinking is described. However, this crosslinking method only leads to very non-uniformly crosslinked material, so that in practice no stable production process or uniform quality of the product can be realized.
Analoge Probleme der mangelnden Wärmeformbeständigkeit treten bei den in WO 99/35202 A1 und US 5,498,476 A1 beschriebenen Elektroklebebändem auf. Als Träger- foüenmaterial wird ein Blend aus EPDM und EVA in Kombination mit Ethylendiamin- phosphat als Flammschutzmittel beschrieben. Dieses weist wie auch Ammoniumpolyphosphat eine hohe Hydrolyseempfindlichkeit auf. In Kombination mit EVA tritt zudem eine Versprödung bei Alterung auf. Die Anwendung auf üblichen Kabeln aus Polyolefin und Aluminium- oder Magnesiumhydroxid führt zu schlechter Verträglichkeit. Darüber hinaus ist das Brandverhalten solcher Kabelbäume schlecht, da diese Metallhydroxide mit Phosphorverbindungen wie unten ausgeführt antagonistisch wirken. Die beschriebenen Isolierbänder sind für Kabelbaumwickelbänder zu dick und zu steif.Analogous problems of lack of heat resistance occur in the Elektroklebebändem described in WO 99/35202 A1 and US 5,498,476 A1. The carrier film material described is a blend of EPDM and EVA in combination with ethylenediamine phosphate as flame retardant. This has a high sensitivity to hydrolysis, as does ammonium polyphosphate. In combination with EVA embrittlement on aging also occurs. The application on conventional cables made of polyolefin and aluminum or magnesium hydroxide leads to poor compatibility. In addition, the fire behavior of such wiring harnesses is poor because these metal hydroxides are antagonistic with phosphorus compounds as set forth below. The insulating tapes described are too thick and too stiff for wiring harnesses.
Versuche, das Dilemma aus zu niedriger Erweichungstemperatur, Flexibilität, Flammwidrigkeit und Halogenfreiheit zu lösen, beschreiben nachfolgende Schriften.Attempts to solve the dilemma of too low softening temperature, flexibility, flame retardance and freedom from halogens are described below.
Die EP 0 953 599 A1 beansprucht eine Polymermischung aus LLDPE und EVA für Anwendungen als Kabelisolierungen und als Folienmaterial. Als Flammschutzmittel wird eine Kombination aus Magnesiumhydroxid mit spezieller Oberfläche und rotem Phosphor beschrieben, die Erweichung bei relativ niedriger Temperatur wird jedoch in Kauf genommen. Die Menge an Magnesiumhydroxid liegt bei 63 phr. Wegen der trotz hohen Füllstoffgehaltes nicht befriedigenden Brandeigenschaften wird roter Phosphor verwendet.EP 0 953 599 A1 claims a polymer blend of LLDPE and EVA for cable insulation applications and as a sheet material. As a flame retardant, a combination of magnesium hydroxide with a special surface and red phosphorus described, the softening at a relatively low temperature is, however, accepted. The amount of magnesium hydroxide is 63 phr. Because of the despite high filler content unsatisfactory fire properties red phosphorus is used.
Eine sehr ähnliche Kombination wird in EP 1 097 976 A1 beschrieben. Hier wird aller- dings zur Verbesserung der Wärmeformbeständigkeit anstatt des LLDPEs ein PP-PoIy- mer verwendet, welches eine höhere Erweichungstemperatur hat. Nachteil ist jedoch die daraus resultierende geringe Flexibilität. Für die Abmischung mit EVA oder EEA wird behauptet, dass die Folie eine hinreichende Flexibilität aufweist. Dem Fachmann ist jedoch aus der Literatur bekannt, dass diese Polymere zur Verbesserung des Flamm- Schutzes mit Polypropylen abgemischt werden. Die beschriebenen Produkte weisen eine Foliendicke von 0,2 mm auf, allein diese Dicke schließt bei gefüllten Polyolefinfolien eine Flexibilität aus, da diese in der 3. Potenz von der Dicke abhängt. Das beschriebene Verfahren der Extrusion ist bei den extrem niedrigen Schmelzindices der verwendeten PoIy- olefine, wie dem Fachmann bekannt, auf einer Produktionsanlage kaum durchführbar, erst recht nicht für eine praxisgerechte dünne Folie. Der extrem niedrige Schmelzindex begrenzt den Einsatz auf 50 bis 100 phr Magnesiumhydroxid.A very similar combination is described in EP 1 097 976 A1. However, in order to improve heat distortion resistance, a PP polymer is used instead of the LLDPE. used, which has a higher softening temperature. The disadvantage, however, is the resulting low flexibility. For blending with EVA or EEA it is said that the film has sufficient flexibility. However, it is known to the person skilled in the art that these polymers are blended with polypropylene to improve flame retardancy. The products described have a film thickness of 0.2 mm, but this thickness excludes flexibility in filled polyolefin since it depends on the 3rd power of the thickness. The method of extrusion described is hardly feasible on a production line at the extremely low melt indices of the poly olefins used, as known to the person skilled in the art, and certainly not for a practical thin film. The extremely low melt index limits the use to 50 to 100 phr of magnesium hydroxide.
Beide Lösungsansätze bauen auf die bekannte synergistische Flammschutzwirkung des roten Phosphors mit Magnesiumhydroxid. Die Verwendung von elementarem Phosphor birgt jedoch erhebliche Nachteile und Gefahren. Bei der Verarbeitung wird übel riechendes, selbstentzündliches und hochgiftiges Phosphin freigesetzt. Auch das fertige Wickelband riecht in heißer und feuchter Anwendungsumgebung knoblauchartig. Ein weiterer Nachteil ergibt sich aus der Entstehung von sehr dichtem, weißem Rauch im Brandfall. Darüber hinaus sind nur braune bis schwarze Produkte herstellbar, Wickelbänder werden zwecks Farbkennzeichnung jedoch in einem breiten Farbsortiment verwendet.Both approaches are based on the well-known synergistic flame retardancy of red phosphorus with magnesium hydroxide. The use of elemental phosphorus, however, involves considerable disadvantages and dangers. The processing releases foul-smelling, self-igniting and highly toxic phosphine. Even the finished wrapping tape smells like garlic in a hot and humid environment. Another disadvantage arises from the formation of very dense, white smoke in case of fire. In addition, only brown to black products can be produced, but wrapping tapes are used for color coding in a wide range of colors.
Die JP 2001 049 208 A1 beschreibt eine öl- und wärmebeständige Folie für ein Klebeband, bei welcher beide Schichten aus einer Mischung von EVA oder EEA, Peroxidver- netzer, Silanvemetzer, Katalysator für die Silanolkondensation und Flammschutzmittel (100 phr Magnesiumhydroxid). Diese Folie löst weder das Problem der schlechten Flexibilität einer gefüllten Polypropylenfolie, noch das der hohen Anforderungen an die Alterungsbeständigkeit.JP 2001 049 208 A1 describes an oil and heat-resistant film for an adhesive tape, in which both layers comprise a mixture of EVA or EEA, peroxide crosslinker, silane crosslinker, silanol condensation catalyst and flameproofing agent (100 phr of magnesium hydroxide). This film solves neither the problem of poor flexibility of a filled polypropylene film, nor the high demands on the aging resistance.
Die WO 03/070848 A1 beschreibt eine Folie aus reaktiven Polypropylen und 40 phr Magnesiumhydroxid. Diese Zusatzmenge reicht zu einer wesentlichen Verbesserung des Brandverhaltens nicht aus.WO 03/070848 A1 describes a film of reactive polypropylene and 40 phr of magnesium hydroxide. This additional amount is not sufficient for a significant improvement of the fire behavior.
Die genannten Schriften zum Stand der Technik führen wegen der genannten Nachteile, insbesondere mangelnder Flammwidrigkeit, Flexibilität, Reißfestigkeit und/oder Wärmebeständigkeit, keine Folien auf, die auch noch die weiteren Anforderungen wie Handeinreißbarkeit, Kompatibilität mit Polyolefinkabelisolierung oder hinreichender Abrollkraft lösen. Darüber hinaus bleiben die Verarbeitbarkeit in Folienherstellprozessen, hoher Fogging-Wert und die Durchschlagsspannungsfestigkeit fraglich. Das Hauptproblem der bekannt gewordenen Erfindungen auf Basis flammfester Trägerfolien aus Polyolefin und Metallhydroxid ist die Unvereinbarkeit der mechanischen Anforderungen mit denen der Fiammfestigkeit. Mit weniger als 60 Gew.-% Flammschutzmittel (Metallhydroxid und gegebenenfalls weiterer Flammschutzadditive) kann keine Selbstverlöschung erreicht werden und schon ab 40 Gew.-% Flammschutzmittel sind Flexibilität und Reißfestigkeit auf kaum akzeptabel niedrigem Niveau. Die Kombination Polyolefin und Metallhydroxid führt aufgrund des Wirkungsmechanismus (Kühlung durch endotherme Zersetzung des Metallhydroxids und Erzeugung von Wasserdampf) zwar zu einer Verlangsamung des Verbrennungsprozesses aber nicht zu einer Selbstverlöschung. Dieses System weist auch noch den Nachteil auf, dass es bei der Dehnung im Wickelprozess, teilweise auch schon beim Abrollen des Klebebandes, zu Weißbruch kommt. Diese Bänder sind in der Regel schwarz und der fertige Wickel weist dann eine schwarz-grau gescheckte Oberfläche auf. Bei hohem Füllstoffanteil kann die Zugfestigkeit so gering werden, dass das Band bei Abrollen reißt.The cited prior art documents lead because of the disadvantages mentioned, in particular lack of flame retardancy, flexibility, tear resistance and / or Heat resistance, no films, which also solve the other requirements such as hand tearability, compatibility with Polyolefinkabelisolierung or sufficient unwind force. In addition, processability in film forming processes, high fogging value and breakdown voltage strength remain questionable. The main problem of the known inventions based on flame-retardant carrier films of polyolefin and metal hydroxide is the incompatibility of the mechanical requirements with those of the Fiammfestigkeit. With less than 60 wt .-% flame retardant (metal hydroxide and optionally other flame retardants) no self-extinguishing can be achieved and from 40 wt .-% flame retardant flexibility and tear resistance are hardly acceptable low level. The combination of polyolefin and metal hydroxide leads due to the mechanism of action (cooling by endothermic decomposition of the metal hydroxide and production of water vapor), although a slowing of the combustion process but not to a self-extinction. This system also has the disadvantage that during stretching in the winding process, in some cases even when the adhesive tape rolls off, it comes to white fracture. These bands are usually black and the finished roll then has a black-gray peeled surface. At high filler content, the tensile strength can be so low that the tape breaks during unrolling.
Klebebänder aus Polyurethan (PU) sind bekannt, zum Teil auch mit flammwidriger Ausrüstung. Es handelt sich zumeist um haftklebrig ausgerüstete PU-Schäume sowie um nachfolgend erläuterte Klebebänder auf Folienbasis.Adhesive tapes made of polyurethane (PU) are known, some with flame retardant equipment. These are mostly tack-sensitively treated PU foams and also foil-based adhesive tapes explained below.
JP 2001 020 178 A1 beschreibt ein doppelseitiges Klebeband für elektromagnetische Abschirmung aus einem Polyestergewebe und einer halogenhaltigen PU-Schicht.JP 2001 020 178 A1 describes a double-sided adhesive tape for electromagnetic shielding made of a polyester fabric and a halogen-containing PU layer.
Die JP 2001 288 430 A1 beschreibt ein flammwidriges Klebeband, dessen Träger aus einem Polyurethanharzlösung und Dicyandiamid hergestellt wurde. Die Verwendung einer aus Lösung gegossenen Folie ist nicht nur teuer, sondern entspricht auch nicht den ökologischen Zielen des erfindungsgemäßen Bandes aus einer Folie, welche lösungsmittelfrei durch thermoplastische Verarbeitung hergestellt werden soll. Versuche, Dicyandiamid in thermoplastisches Polyurethan (TPU) einzuarbeiten, sind wegen Zersetzung des TPU während der Compoundierung gescheitert. Die JP 2003 013 026 A1 und die JP 2004 1 15 608 A1 beschreiben (Abdeck)klebebänder für den Umgang mit radioaktiven Substanzen, dessen Träger ebenfalls aus Lösung hergestellt wird. Er besteht aus einer Polyurethanharzlösung und Hydrazodicarbonamid. Hydrazodicarbonamid wirkt bei thermoplastischer Verarbeitung durch Zersetzung als Schäumungsmittel und wäre für TPU mit hochschmelzendem Hartblockabteil (das heißt hoher Verarbeitungstemperatur) ungeeignet.JP 2001 288 430 A1 describes a flame-retardant adhesive tape whose support has been produced from a polyurethane resin solution and dicyandiamide. The use of a solution cast film is not only expensive, but also does not meet the ecological goals of the tape of the invention from a film which is to be prepared solvent-free by thermoplastic processing. Attempts to incorporate dicyandiamide in thermoplastic polyurethane (TPU) have failed due to decomposition of the TPU during compounding. JP 2003 013 026 A1 and JP 2004 1 15 608 A1 describe (cover) adhesive tapes for handling radioactive substances, the carrier of which is likewise produced from solution. It consists of a polyurethane resin solution and hydrazodicarbonamide. Hydrazodicarbonamide acts as a foaming agent upon thermoplastic processing by decomposition and would be unsuitable for high melting point hard block TPU (ie, high processing temperature).
Die JP 62 069 640 A1 beschreibt ein transparentes Klebeband zur Herstellung von Wafer Chips. Der PU-Träger, welcher optional ein Flammschutzmittel wie zum Beispiel 4,4'- Dichlorohexylmethandiisocyanat enthalten kann, wird aus Lösung hergestellt.JP 62 069 640 A1 describes a transparent adhesive tape for the production of wafer chips. The PU carrier, which may optionally contain a flame retardant such as 4,4'-dichlorohexylmethane diisocyanate, is prepared from solution.
Die DE 203 06 801 U1 beschreibt ein Klebeband aus einer Polyurethanfolie ohne eine spezielle Zusammensetzung des Polyurethans zu nennen. Polyurethankiebebänder sind allerdings schon seit vielen Jahren aus der Praxis bekannt. Es wird beschrieben, dass die Folie auch Additive enthalten kann, genannt werden UV- und Ozonstabilisatoren, Füllstoffe oder Flammschutzmittel. Antioxidantien oder Hydrolyseschutzmittel werden nicht erwähnt. Als Flammschutzmittel werden Ammoniumpolyphosphat, Antimontrioxid und Aluminiumtrihydrat (ATH) namentlich aufgeführt, aber nicht anhand von Beispielen konkretisiert. Versuche haben ergeben, dass Ammoniumpolyphosphat (APP) Polyurethane bei thermoplastischer Verarbeitung abbaut, was den Fachmann nicht überrascht, da APP hygroskopisch ist und daher einen hydrolytischen Abbau verursachen kann. Darüber hinaus wird aufgrund der Acidität des APPs die Hydrolyse zusätzlich noch katalysiert. APP bewirkt als stark ionogenes Salz auch schlechte elektrische Eigenschaften, wie es von der Verwendung in anderen Materialien zum Beispiel für Drahtisolierungscompounds bekannt ist. Das erfindungsgemäße Wickelband soll jedoch auch gut isolierende Eigenschaften aufweisen. Wie dem Fachmann weiterhin bekannt ist, wirkt Antimontrioxid nur in Kombination mit Halogenen und macht daher in TPU allein keinen Sinn. Dem Fachmann ist auch bekannt, dass ATH als Flammschutzmittel nur für PE und EVA in Frage kommt, da es eine niedrige Zersetzungstemperatur aufweist, aber nicht für Polypropylen und daher erst recht nicht für TPU mit noch höherer Verarbeitungstemperatur.DE 203 06 801 U1 describes an adhesive tape made of a polyurethane film without mentioning a special composition of the polyurethane. However, polyurethane straps have been known in practice for many years. It is described that the film may also contain additives, called UV and ozone stabilizers, fillers or flame retardants. Antioxidants or hydrolysis protectants are not mentioned. As flame retardants ammonium polyphosphate, antimony trioxide and aluminum trihydrate (ATH) are listed by name, but not substantiated by way of examples. Tests have shown that ammonium polyphosphate (APP) breaks down polyurethanes during thermoplastic processing, which is not surprising to the person skilled in the art, since APP is hygroscopic and therefore can cause hydrolytic degradation. In addition, due to the acidity of the APP, the hydrolysis is additionally catalyzed. APP, as a strong ionic salt, also causes poor electrical properties, as is known from use in other materials, for example wire insulation compounds. However, the winding tape according to the invention should also have good insulating properties. As is further known to those skilled in the art, antimony trioxide only works in combination with halogens and therefore makes no sense in TPU alone. It is also known to the person skilled in the art that ATH is suitable as flame retardant only for PE and EVA, since it has a low decomposition temperature, but not for polypropylene and therefore certainly not for TPU with even higher processing temperature.
Die EP 1 108 768 A1 beschreibt ein ausschließlich farbloses Klebeband mit TPU-Träger für die Überklebung von Fugen in Flugzeugen. Das erfindungsgemäße Klebeband ist jedoch für Wickelanwendungen, insbesondere von Drahtbündeln in Fahrzeugen, bestimmt. In der Praxis sind solche Wickelbänder schwarz, seltener farbig eingefärbt und praktisch nie farblos. Das in der Schrift beanspruchte Klebeband ist zusätzlich auf einen transparenten Haftkleber aus Polyurethan beschränkt, das erfindungsgemäße Wickelband muss jedoch eine hineichende Abrollkraft beziehungsweise Klebkraft auf der Rückseite aufweisen, um in leicht gedehntem Zustand auf den zu umwickelnden Gegenstand appliziert zu werden. Für diesen Zweck sind jedoch im Wesentlichen Klebmassen aus Polyacrylat, Natur- oder Synthesekautschuk geeignet. Das beanspruchte Klebeband muss eine Dicke von mindestens 9 mil aufweisen, das heißt die Folie eine Mindestdicke von 8 mil (0,2 mm), um die Boeing-Norm BSS 7230 F2 zu erfüllen. Das in der Schrift beanspruchte Klebeband enthält zudem bromhaltige Flammschutzmittel. Die beschriebene Anwendung bedarf keiner besonderen thermischen Beständigkeit, und die Schrift gibt auch keine Hinweise auf eine solche Anforderung. Die Schrift enthält daher keine Hinweise auf Stabilisatoren wie Antioxidantien oder Hydrolyseschutzmittel, als Additive sind lediglich transluzente Farbstoffe, Antiblockmittel und Gleitmittel (Lubricants) erwähnt. Für die Polyurethanfolie wird keine spezielle Zusammensetzung ausgeführt.EP 1 108 768 A1 describes an exclusively colorless adhesive tape with TPU carrier for the gluing of joints in aircraft. However, the adhesive tape according to the invention is suitable for winding applications, in particular wire bundles in vehicles, certainly. In practice, such winding tapes are black, colored less often and virtually never colorless. The adhesive tape claimed in the specification is additionally limited to a transparent polyurethane pressure-sensitive adhesive, but the winding tape according to the invention must have a penetrating unwinding force or adhesive force on the back in order to be applied in a slightly stretched state to the object to be wrapped. For this purpose, however, essentially adhesives of polyacrylate, natural or synthetic rubber are suitable. The claimed tape must have a thickness of at least 9 mils, that is, the film has a minimum thickness of 8 mils (0.2 mm) to meet the Boeing BSS 7230 F2 standard. The claimed in the publication adhesive tape also contains brominated flame retardants. The application described requires no particular thermal resistance, and the document also gives no indication of such a requirement. The document therefore contains no references to stabilizers such as antioxidants or hydrolysis protection agents, as additives are only translucent dyes, antiblocking agents and lubricants (Lubricants) mentioned. For the polyurethane film, no special composition is performed.
Die JP 2005 264 112 A beschreibt ein Klebeband mit einem Träger bestehend aus Copolyamid ais Hauptkomponente und Nebenkomponenten. Letztere sind Polyurethan und Stickstoffverbindungen. Die Schrift lehrt, dass der Zusatz von Polyurethan die Flexibilität einer reinen Polyamidfolie verbessert, aber in größeren Mengen die Kratzfestigkeit stark herabsetzt, daher soll der Anteil an Polyamid bei 40 bis 90 Teilen liegen. Als Flammschutzmittel werden Hydrazodicarbonamid, Mono-, Di-, Tricyanoethylcyanurat, Melamincyanurat und Dicyandiamid erwähnt. Bevorzugt wird eine Kombination aus Hydrazodicarbonamid und Melamincyanurat. Letzteres hat sich als Flammschutzmittel für Polyamide bewährt (siehe zum Beispiel JP 11 349 809 A1 ), Hydrazodicarbonamid hingegen ist aus oben genannten Gründen für thermoplastische Verarbeitung eigentlich ungeeignet. Die Schrift beschreibt jedoch eine Verarbeitungstemperatur von nur 150 bis 160 0C, so dass eine Verarbeitung bei Compounds mit niedriger Erweichungstemperatur realistisch erscheint. Der Grund hierfür liegt in den niedrigen Schmelztemperaturen der gewählten Rohstoffe, für das Polyurethan werden 60 bis 120 0C und für das Polyamid 100 bis 180 0C erwähnt, in den Beispielen wird ein Polyamid mit 133 0C Erweichungspunkt verwandt. Die Folie für das erfindungsgemäße Wickelband soll jedoch eine möglichst hohe Temperaturbeständigkeit aufweisen, das heißt eine Kurzzeithitzebeständigkeit bei 170 0C und eine Wärmebeständigkeit bei 140 0C, daher wird ein TPU mit deutlich höherem Erweichungspunkt benötigt, als die in der Schrift erwähnten TPUs zur Modifizierung der Polyamidfolie. Auch aufgrund der gewünschten Festigkeit und Moduli sollten für das erfindungsgemäße Wickelband TPU-Rohstoffe mit relativ hochschmelzendem Hartblockanteil eingesetzt werden, woraus Verarbeitungstemperaturen von 200 0C und mehr resultieren. Zu der in der Schrift genannten Polyamidfolie wird erwähnt, dass sie sich schon ab 180 0C nicht mehr verarbeiten lässt. Die Folie weist eine Dicke von 0,2 mm auf. Die Schrift erwähnt weder eine Anforderung an thermische Beständigkeit noch eine Verwendung von Stabilisatoren wie Antioxidantien oder Hydrolyseschutzmittel. Für die Polyurethanfolie wird keine spezielle Zusammensetzung ausgeführt.JP 2005 264 112 A describes an adhesive tape with a carrier consisting of copolyamide as main component and secondary components. The latter are polyurethane and nitrogen compounds. The document teaches that the addition of polyurethane improves the flexibility of a pure polyamide film, but greatly reduces the scratch resistance in larger quantities, therefore, the proportion of polyamide should be 40 to 90 parts. As flame retardants hydrazodicarbonamide, mono-, di-, tricyanoethyl cyanurate, melamine cyanurate and dicyandiamide are mentioned. Preference is given to a combination of hydrazodicarbonamide and melamine cyanurate. The latter has proven itself as a flame retardant for polyamides (see, for example, JP 11 349 809 A1), whereas hydrazodicarbonamide is actually unsuitable for thermoplastic processing for the abovementioned reasons. However, the document describes a processing temperature of only 150 to 160 0 C, so that processing for compounds with low softening temperature appears realistic. The reason for this lies in the low melting temperatures of the selected raw materials, for the polyurethane are 60 to 120 0 C and for the polyamide 100 to 180 0 C mentioned in the examples, a polyamide with 133 0 C softening point is used. However, the film for the winding tape according to the invention should have the highest possible temperature resistance, that is, a short-term heat resistance at 170 0 C and a Heat resistance at 140 0 C, therefore, a TPU is required with significantly higher softening point, as mentioned in the document TPUs for modifying the polyamide film. Also due to the desired strength and Moduli TPU raw materials should be used with a relatively high melting Hartblockanteil for the winding tape according to the invention, resulting in processing temperatures of 200 0 C and more result. The polyamide film mentioned in the document mentions that it can no longer be processed from 180 ° C. The film has a thickness of 0.2 mm. The document mentions neither a requirement for thermal resistance nor a use of stabilizers such as antioxidants or hydrolysis protectants. For the polyurethane film, no special composition is performed.
Die Folie für das erfindungsgemäße Wickelband wäre mit der in der Schrift genannten bevorzugten Kombination aus Hydrazodicarbonamid und Melamincyanurat wegen der Zersetzung bei hohen Temperaturen, die für die Verarbeitung von TPU mit dem hochschmelzenden Hartblöcken beziehungsweise großer Shore-Härte erforderlich ist, nicht herstellbar.The film for the winding tape according to the invention would not be produced with the mentioned in the text preferred combination of hydrazodicarbonamide and melamine cyanurate because of the decomposition at high temperatures, which is required for the processing of TPU with high-melting hard blocks or high Shore hardness.
Weiterhin sind Klebebänder mit Trägern aus vernetztem nicht-thermoplastischem Polyurethan bekannt geworden. Die US 5,807,637 A beschreibt ein Klebeband mit einer Haftklebe- und einer Siegelschicht, die zugrunde liegende Folie enthält als Füllstoff Calciumcarbonat und ist daher nicht flammfest. Die US 6,129,983 A beschreibt ein analoges Produkt jedoch mit zwei haftklebrigen Schichten.Furthermore, adhesive tapes have been known with supports of crosslinked non-thermoplastic polyurethane. No. 5,807,637 A describes an adhesive tape with a pressure-sensitive adhesive and a sealing layer, the underlying film contains calcium carbonate as the filler and is therefore not flameproof. However, US Pat. No. 6,129,983 A describes an analogous product with two pressure-sensitively adhesive layers.
Die EP 1 101 807 A1 erwähnt ein Maskenklebeband mit einem Verbundträger aus vernetztem Polyurethan und Polyester. Die PU-Schicht kann mit Füllstoffen modifiziert sein, Flammschutzmittel sind nicht erwähnt.EP 1 101 807 A1 mentions a mask adhesive tape with a composite carrier of crosslinked polyurethane and polyester. The PU layer may be modified with fillers, flame retardants are not mentioned.
Die genannten Klebebandträger werden durch In-Line-Dosierung und Mischung von Polyol, Isocyanat und Katalysator auf einen Hilfsträger hergestellt. Der Vorteil liegt in geringen Rohstoff kosten im Vergleich zu TPU, jedoch ist das Verfahren sehr schwierig in der Praxis zu realisieren. Da die Träger vernetzt sind, ist auch ein thermoplastisches Recycling nicht möglich. Der wesentliche Nachteil der in den Schriften genannten Erfindungsgegenstände ist jedoch die fehlende Eignung für Wickelbänder, da sie weder Flammfestigkeit noch eine hinreichende Zugfestigkeit, welche sich bei TPU aus der physikalische Vernetzung über die Hartblöcke ergibt, aufweisen. Die EP 1 469 052 A1 und die EP 1 469 024 A1 beschreiben Klebebänder mit vernetzten Polyurethanen als Haftkleber auf beliebigen Trägem, jedoch nicht TPU-Folien.The adhesive tape carriers mentioned are produced by in-line metering and mixing of polyol, isocyanate and catalyst on an auxiliary carrier. The advantage lies in low raw material costs compared to TPU, however the process is very difficult to realize in practice. Since the carriers are networked, a thermoplastic recycling is not possible. The main disadvantage of the subject matter mentioned in the publications, however, is the lack of suitability for wrapping tapes, since they have neither flame resistance nor a sufficient tensile strength, which results from TPU physical crosslinking on the hard blocks. EP 1 469 052 A1 and EP 1 469 024 A1 describe adhesive tapes with crosslinked polyurethanes as pressure-sensitive adhesives on any carriers, but not TPU films.
Die US 5,858,495 A1 beschreibt ein sehr dickes nachleuchtendes Klebeband, dessen Träger durch Polymerisation einer Mischung eines Polyester- oder Polyurethanacrylats und einem nachleuchtenden Pigment hergestellt wird. Dieses Material ist von der chemischen Struktur her kein TPU, sondern ein sehr hartes urethangruppenhaitiges hartes Polymerisat.US Pat. No. 5,858,495 A1 describes a very thick luminescent adhesive tape whose support is produced by polymerization of a mixture of a polyester or polyurethane acrylate and a luminescent pigment. This material is not a TPU from the chemical structure, but a very hard urethangruppenhaitiges hard polymer.
Die Aufgabe der Erfindung ist das Auffinden einer Lösung für ein Wickelband, welches die Vorteile der Halogenfreiheit, Flammwidrigkeit, Wärmebeständigkeit, Abriebfestigkeit, und den mechanischen Eigenschaften wie Zugfestigkeit und Flexibilität von PVC- Wickelbändem mit der Halogenfreiheit von textilen nichtflammfesten Wickelbändern verbindet und darüber hinaus eine überlegene Wärmealterungsbeständigkeit aufweist, wobei eine großtechnische Produzierbarkeit der Folie sichergestellt sein soll und eine hohe Durchschlagsspannungsfestigkeit bei einigen Anwendungen notwendig ist. Durch das Fehlen von Schwermetallstabilisatoren und Phthalatweichmachern sollen die Wickelbänder arbeitshygienisch und ökologisch vorteilhaft sein. Der vollständige oder weitgehende Verzicht auf Weichmacher, insbesondere auf DOP, ist erwünscht, um hohe Fogging-Werte zu erreichen und die Folgen von Weichmacherwanderung in die Klebemasse wie Teleskopieren oder Kantenklebrigkeit zu vermeiden. Aufgabe der Erfindung ist es weiterhin, derartige Wickelbänder zur Verfügung zu stellen, welche ein besonders sicheres und schnelles Umwickeln, insbesondere von Drähten und Kabeln zum Markieren, Schützen, Isolieren, Abdichten oder Bündeln ermöglichen, wobei die Nachteile des Standes der Technik nicht oder zumindest nicht in dem bisherigen Umfang auftreten.The object of the invention is to find a solution for a winding tape which combines the advantages of halogen freedom, flame resistance, heat resistance, abrasion resistance, and the mechanical properties such as tensile strength and flexibility of PVC Wickelbändem with the halogen freedom of textile non-flame-resistant winding tapes and beyond a superior Heat aging resistance, wherein a large-scale producibility of the film should be ensured and a high breakdown voltage strength is necessary in some applications. Due to the absence of heavy metal stabilizers and phthalate plasticizers, the wrapping tapes should be hygienic and ecologically beneficial. The complete or substantial abandonment of plasticizers, in particular DOP, is desirable in order to achieve high fogging values and to avoid the consequences of plasticizer migration in the adhesive, such as telescoping or edge tackiness. The object of the invention is also to provide such winding tapes are available, which allow a particularly safe and fast wrapping, especially of wires and cables for marking, protecting, insulating, sealing or bundling, the disadvantages of the prior art, or not at least occur in the previous extent.
Es besteht sodann die Aufgabe, thermoplastisch hergestellte Folien mit Additivkombinationen zu finden, welche die Wärmebeständigkeit von PVC nicht nur erreichen, sondern sogar übertreffen.It is then the task of finding thermoplastically produced films with additive combinations which not only reach, but even exceed the heat resistance of PVC.
Gelöst wird diese Aufgabe durch ein Wickelband, wie es im Hauptanspruch niedergelegt ist. Gegenstand der Unteransprüche sind vorteilhafte Fortbildungen des Erfindungsgegenstandes sowie Verwendungen des erfindungsgemäßen Wickelbandes. Demgemäß betrifft die Erfindung ein thermisch hochbelastbares flammwidriges halogenfreies Wickelband mit einer Folie aus thermoplastischem Polyurethan mit mindestens einem Flammschutzmittel, die mindestens ein Antioxidant und/oder Hydrolyseschutzmittel als Stabilisator enthält.This object is achieved by a winding tape, as laid down in the main claim. The subject of the dependent claims are advantageous developments of the subject invention and uses of the winding tape according to the invention. Accordingly, the invention relates to a thermally highly resistant flame-retardant halogen-free winding tape with a film of thermoplastic polyurethane with at least one flame retardant containing at least one antioxidant and / or hydrolysis stabilizer.
In einer ersten besonders bevorzugten Ausführungsform ist zumindest auf einer Seite der Trägerfolie eine Klebemasse, insbesondere eine Haftklebemasse aufgebracht.In a first particularly preferred embodiment, an adhesive, in particular a pressure-sensitive adhesive, is applied at least on one side of the carrier film.
Für den Fachmann überraschend und nicht vorhersehbar ist ein für das Wickelband geeigneter Träger aus thermoplastischem Polyurethan, mindestens einem halogenfreien Flammschutzmittel und mindestens einem Stabilisator wie folgt herstellbar.Surprisingly and unpredictably to a person skilled in the art, a carrier made of thermoplastic polyurethane, at least one halogen-free flame retardant and at least one stabilizer suitable for the winding band can be produced as follows.
Das Polyurethan wird ausThe polyurethane is out
(A) wenigstens einem organischen Diisocyanat und(A) at least one organic diisocyanate and
(B) wenigstens einem Polyol mit im Mittel mindestens 1 ,8 und höchstens 3,0 zerewitinoffaktiven Wasserstoffatomen und einem zahlenmittleren(B) at least one polyol having an average of at least 1, 8 and at most 3.0 Zerewitinoff-active hydrogen atoms and a number average
Molekulargewicht Mn von 450 bis 10000 Dalton mitMolecular weight M n of 450 to 10,000 daltons with
(C) wenigstens einem niedermolekularen Polyol oder Polyamin mit im Mittel mindestens 1 ,8 und höchstens 3,0 zerewitinoffaktiven Wasserstoffatomen und einem zahlenmittleren Molekulargewicht Mn von 60 bis 400 Dalton als(C) at least one low molecular weight polyol or polyamine having an average of at least 1, 8 and at most 3.0 Zerewitinoff-active hydrogen atoms and a number average molecular weight M n of 60 to 400 daltons
Kettenverlängerer undChain extender and
(E) mindestens einem halogenfreien nicht reaktiven oder einbaubarem Flammschutzmittel(E) at least one halogen-free non-reactive or incorporable flame retardant
und als Stabilisatorand as a stabilizer
(F) mindestens ein Antioxidant und/oder(F) at least one antioxidant and or
(G) mindestens ein Hydrolyseschutzmittel(G) at least one hydrolysis protection agent
gegebenenfalls unter Verwendung vonoptionally using
(D) eines Katalysators(D) a catalyst
und/oderand or
(H) weiteren Hilfs- und Zusatzstoffen(H) other auxiliaries and additives
hergestellt.produced.
Die Kennzahl (gebildet aus dem mit 100 multiplizierten Quotienten der Äquivalenzverhältnisse der Isocyanatgruppen aus (A) und der Summe der zerewitinoffaktiven Wasserstoffatome der Verbindungen (B) und (C)) beträgt 85 bis 120 vorzugsweise 95 bis 110. Im Fall der Verwendung von einbaubaren phosphorhaltigen Flammschutzmitteln wird die Kennzahl aus dem mit 100 multiplizierten Quotienten der Äquivalenzverhältnisse der Isocyanatgruppen aus (A) und der Summe der zerewitinoffaktiven Wasserstoffatome der Verbindungen (B), (C) und (E) berechnet.The index (formed from the multiplied by 100 quotient of the equivalence ratios of the isocyanate groups from (A) and the sum of the Zerewitinoff-active hydrogen atoms of the compounds (B) and (C)) is 85 to 120, preferably 95 to 110. In the case of incorporation of phosphorus-containing Flammschutzmitteln the index is calculated from the multiplied by 100 quotient of the equivalence ratios of the isocyanate groups (A) and the sum of the Zerewitinoff-active hydrogen atoms of the compounds (B), (C) and (E).
In einer bevorzugen Ausführungsform der Erfindung sind die Komponenten (B) und (C) verschieden.In a preferred embodiment of the invention, the components (B) and (C) are different.
Als organische Diisocyanate (A) können aliphatische, cycloaliphatische, araliphatische, aromatische und heterocyclische Diisocyanate oder beliebige Gemische dieser Diisocyanate verwendet werden (vergleiche HOUBEN-WEYL "Methoden der organischen Chemie", Band E 20 "Makromolekulare Stoffe", Georg Thieme Verlag, Stuttgart, New York 1987, Seiten 1587 bis 1593 oder Justus Liebigs Annalen der Chemie, 562, Seiten 75 bis 136). Im Einzelnen seien beispielhaft genannt: aliphatische Diisocyanate wie Ethylendiisocyanat, 1 ,4-Tetramethylendiisocyant, 1 ,6- Hexamethylendiisocyanat, 1 ,12-Dodecandiisocyanat; cycloaliphatische Diisocyanate wie Isophorondiisocyanat, 1 ,4-Cyclohexandiisocyanat, 1-Methyl-2,4-cyclohexandiisocyanat und 1-Methyl-2,6-cyclohexandiisocyanat sowie die entsprechenden Isomerengemische, 4,4'-Dicyclohexylmethandiisocyanat, 2,4'-Dicyclohexylmethandiisocyanat und 2,2'- Dicyclohexylmethandiisocyanat sowie die entsprechenden Isomerengemische; außerdem aromatische Diisocyanate wie 2,4-Toluylendiisocyanat, Gemische aus 2,4- Toluylendiisocyanat und 2,6-Toluylendiisocyanat, 4,4I-Diphenylmethandiisocyanat, 2,4'- Diphenylmethandiisocyanat und 2,2'-Diphenylmethandiisocyanat, Gemische aus 2,4'- Diphenylmethandiisocyanat und 4,4'-Diphenylmethandiisocyanat, urethan modifizierte flüssige 4,4'-Diphenylmethandiisocyanate oder 2,4'-Diphenylmethandiisocyanate, 4,4'- Diisocyanatodiphenylethan-(1 ,2) und 1 ,5-Naphthylendiisocyanat. Vorzugsweise verwendet werden 1 ,6-Hexamethylendiisocyanat, 1 ,4-Cyclohexandiisocyanat, Isophorondiisocyanat, Dicyclohexylmethandiisocyanat, Diphenylmethandiisocyanat- Isomerengemische mit einem 4,4'-Diphenylmethandiisocyanatgehalt von mehr als 96 Gew.-% und insbesondere 4,4'-Diphenylmethandiisocyanat und 1 ,5- Naphthylendiisocyanat.As organic diisocyanates (A) it is possible to use aliphatic, cycloaliphatic, araliphatic, aromatic and heterocyclic diisocyanates or any desired mixtures of these diisocyanates (cf. HOUBEN-WEYL "Methods of Organic Chemistry", Volume E 20 "Macromolecular Materials", Georg Thieme Verlag, Stuttgart, New York 1987, pages 1587 to 1593 or Justus Liebigs Annalen der Chemie, 562, pages 75 to 136). Specific examples are: aliphatic diisocyanates such as ethylene diisocyanate, 1,4-tetramethylene diisocyanate, 1,6-hexamethylene diisocyanate, 1,12-dodecane diisocyanate; Cycloaliphatic diisocyanates such as isophorone diisocyanate, 1, 4-cyclohexane diisocyanate, 1-methyl-2,4-cyclohexane diisocyanate and 1-methyl-2,6-cyclohexane diisocyanate and the corresponding isomer mixtures, 4,4'-dicyclohexylmethane diisocyanate, 2,4'-dicyclohexylmethane diisocyanate and 2 , 2'-dicyclohexylmethane diisocyanate and the corresponding isomer mixtures; also aromatic diisocyanates such as tolylene 2,4-diisocyanate, mixtures of 2,4-tolylene diisocyanate and 2,6-tolylene diisocyanate, 4,4-diphenylmethane diisocyanate I, 2,4'-diphenylmethane diisocyanate and 2,2'-diphenylmethane diisocyanate, mixtures of 2,4 '- Diphenylmethane diisocyanate and 4,4'-diphenylmethane diisocyanate, urethane-modified liquid 4,4'-diphenylmethane diisocyanates or 2,4'-diphenylmethane diisocyanates, 4,4'-diisocyanatodiphenylethane (1, 2) and 1, 5-naphthylene diisocyanate. Preferably used are 1,6-hexamethylene diisocyanate, 1,4-cyclohexane diisocyanate, isophorone diisocyanate, dicyclohexylmethane diisocyanate, diphenylmethane diisocyanate isomer mixtures having a 4,4'-diphenylmethane diisocyanate content of more than 96% by weight and in particular 4,4'-diphenylmethane diisocyanate and 1,5 - Naphthylene diisocyanate.
Die genannten Diisocyanate können einzeln oder in Form von Mischungen untereinander zur Anwendung kommen. Sie können auch zusammen mit bis zu 15 mol-% (berechnet auf Gesamt-Diisocyanat) eines Polyisocyanates verwendet werden. Es darf aber höchstens soviel Polyisocyanat zugesetzt werden, dass ein noch thermoplastisch verarbeitbares Produkt entsteht.The diisocyanates mentioned can be used individually or in the form of mixtures with one another. They may also be used together with up to 15 mol% (calculated on total diisocyanate) of a polyisocyanate. However, it may be added at most as much polyisocyanate that a still thermoplastically processable product is formed.
Beispiele für Polyisocyanate sind Triphenylmethan-4,4',4"-triisocyanat und Polyphenyl- polymethylenpolyisocyanate.Examples of polyisocyanates are triphenylmethane-4,4 ', 4 "-triisocyanate and polyphenyl polymethylene polyisocyanates.
Das besonders bevorzugte Isocyanat ist 4,4'-Diphenylmethandiisocyanat.The most preferred isocyanate is 4,4'-diphenylmethane diisocyanate.
Zerewitinoffaktive Polyole (B)1 die bei den erfindungsgemäßen Produkten eingesetzt werden, sind solche mit im Mittel mindestens 1 ,8 bis höchstens 3,0 zerewitinoffaktivenZerewitinoff-active polyols (B) 1 used in the products of the invention are those having on average at least 1, 8 to at most 3.0 Zerewitinoffaktiven
Wasserstoffatomen und einem zahlenmittleren Molekulargewicht Mn von 450 bis 10000 Dalton. Produktionsbedingt enthalten diese oft kleine Mengen an nichtlinearen Verbindungen. Häufig spricht man daher auch von „im Wesentlichen linearen Polyolen". Bevorzugt sind Polyester-, Polyether-, Polycarbonat-Diole oder Gemische aus diesen.Hydrogen atoms and a number average molecular weight M n of 450 to 10,000 daltons. Due to production, these often contain small amounts of nonlinear Links. Therefore, one often speaks of "substantially linear polyols." Preference is given to polyester, polyether, polycarbonate diols or mixtures of these.
Eingeschlossen sind neben Aminogruppen, Thiolgruppen oder Carboxylgruppen aufweisenden Verbindungen insbesondere zwei bis drei, bevorzugt zwei Hydroxylgruppen aufweisende Verbindungen, speziell solche mit zahlenmittleren Molekulargewichten Mn von 450 bis 6000 Dalton, besonders bevorzugt solche mit einem zahlenmittleren Molekulargewicht Mn von 600 bis 4500 Dalton zum Beispiel Hydroxylgruppen aufweisende Polyester, Polyether, Polycarbonate und Polyesteramide.Included are in addition to amino groups, thiol groups or carboxyl-containing compounds in particular two to three, preferably two hydroxyl-containing compounds, especially those with number average molecular weights M n from 450 to 6000 daltons, particularly preferably those having a number average molecular weight M n of 600 to 4500 daltons, for example Hydroxyl-containing polyesters, polyethers, polycarbonates and polyesteramides.
Geeignete Polyether-Diole können dadurch hergestellt werden, dass man ein oder mehrere Alkylenoxide mit 2 bis 4 Kohlenstoffatomen im Alkylenrest mit einem Startermolekül, das zwei aktive Wasserstoffatome gebunden enthält, umsetzt. Als Alkylenoxide seien zum Beispiel genannt: Ethylenoxid, 1 ,2-Propylenoxid, Epichlorhydrin und 1 ,2-Butylenoxid und 2,3-Butylenoxid. Vorzugsweise Anwendung finden Ethylenoxid, Propylenoxid und Mischungen aus 1 ,2- Propylenoxid und Ethylenoxid. Die Alkylenoxide können einzeln, alternierend nacheinander oder als Mischungen verwendet werden. Als Startermoleküle kommen beispielsweise in Betracht: Wasser, Aminoalkohole, wie N-AIkyl-diethanolamine, beispielsweise N-Methyl- diethanolamin und Diole wie Ethylenglykol, 1 ,3-PropyIengIykol, 1 ,4-Butandiol und 1 ,6- Hexandiol. Gegebenenfalls können auch Mischungen von Startermolekülen eingesetzt werden. Geeignete Polyetherole sind ferner die hydroxylgruppenhaltigen Polymerisationsprodukte des Tetrahydrofurans. Es können auch trifunktionelle Polyether in Anteilen von 0 bis 30 Gew.-% bezogen auf die bifunktionellen Polyether eingesetzt werden, jedoch höchstens in solcher Menge, dass ein noch thermoplastisch verarbeitbares Produkt entsteht. Die im Wesentlichen linearen Polyether-Diole besitzen vorzugsweise zahlenmittlere Molekulargewichte Mn von 450 bis 6000 Dalton. Sie können sowohl einzeln als auch in Form von Mischungen untereinander zur Anwendung kommen.Suitable polyether diols can be prepared by reacting one or more alkylene oxides having 2 to 4 carbon atoms in the alkylene radical with a starter molecule containing two active hydrogen atoms bonded. Examples of alkylene oxides which may be mentioned are: ethylene oxide, 1,2-propylene oxide, epichlorohydrin and 1,2-butylene oxide and 2,3-butylene oxide. Preferably used are ethylene oxide, propylene oxide and mixtures of 1, 2-propylene oxide and ethylene oxide. The alkylene oxides can be used individually, alternately in succession or as mixtures. Examples of suitable starter molecules are: water, amino alcohols, such as N-alkyldiethanolamines, for example N-methyldiethanolamine and diols, such as ethylene glycol, 1,3-propyleneglycol, 1,4-butanediol and 1,6-hexanediol. Optionally, mixtures of starter molecules can be used. Suitable polyetherols are also the hydroxyl-containing polymerization of tetrahydrofuran. It is also possible to use trifunctional polyethers in proportions of from 0 to 30% by weight, based on the bifunctional polyethers, but at most in such an amount that a still thermoplastically processable product is formed. The substantially linear polyether diols preferably have number average molecular weights M n of 450 to 6000 daltons. They can be used both individually and in the form of mixtures with one another.
Geeignete Polyester-Diole können beispielsweise aus Dicarbonsäuren mit 2 bis 12Suitable polyester diols may be, for example, from dicarboxylic acids having 2 to 12
Kohlenstoffatomen, vorzugsweise 4 bis 6 Kohlenstoffatomen, und mehrwertigenCarbon atoms, preferably 4 to 6 carbon atoms, and polyvalent ones
Alkoholen hergestellt werden. Als Dicarbonsäuren kommen beispielsweise in Betracht aliphatische Dicarbonsäuren wie Bernsteinsäure, Glutarsäure, Adipinsäure, Korksäure, Azelainsäure und Sebacinsäure oder aromatische Dicarbonsäuren wie Phthalsäure, Isophthalsäure und Terephthalsäure. Die Dicarbonsäuren können einzeln oder ais Gemische, zum Beispiel in Form einer Bernstein-, Glutar- und Adipinsäuremischung, verwendet werden. Zur Herstellung der Poiyester-Diole kann es gegebenenfalls vorteilhaft sein, anstelle der Dicarbonsäuren die entsprechenden Dicarbonsäurederivate wie Carbonsäurediester mit 1 bis 4 Kohlenstoffatomen im Alkoholrest, Carbonsäureanhydride oder Carbonsäurechloride zu verwenden. Beispiele für mehrwertige Alkohole sind Glykole mit 2 bis 10, vorzugsweise 2 bis 6 Kohlenstoffatomen, zum Beispiel Ethylenglykol, Diethylenglykol, 1 ,4-Butandiol, 1 ,5-Pentandiol, 1 ,6-Hexandiol, 1 ,10-Decandiol, 2,2-Dimethyl-1 ,3-propandiol, 1 ,3-PropandioI oder Dipropylenglykol. Je nach den gewünschten Eigenschaften können die mehrwertigen Alkohole allein oder in Mischung untereinander verwendet werden. Geeignet sind ferner Ester der Kohlensäure mit den genannten Diolen, insbesondere solche mit 4 bis 6 Kohlenstoffatomen wie 1 ,4- Butandiol oder 1,6-Hexandiol, Kondensationsprodukte von omega-Hydroxycarbonsäuren wie omega-Hydroxycapronsäure oder Polymerisationsprodukte von Lactonen zum Beispiel gegebenenfalls substituierten omega-Caprolactonen. Als Polyester-Diole vorzugsweise verwendet werden Ethandiol-polyadipate, 1 ,4-Butandiolpolyadipate, Ethandiol-1 ,4-butandiolpolyadipate, 1 ,6-Hexandiol-neopentylglykolpolyadipate, 1 ,6- Hexandiol-1 ,4-butandiolpolyadipate und Polycaprolactone. Die Polyester-Diole besitzen zahlenmittlere Molekulargewichte Mn von 450 bis 10000 Dalton und können einzeln oder in Form von Mischungen untereinander zur Anwendung kommen.Alcohols are produced. Suitable dicarboxylic acids are, for example, aliphatic dicarboxylic acids such as succinic acid, glutaric acid, adipic acid, suberic acid, Azelaic acid and sebacic acid or aromatic dicarboxylic acids such as phthalic acid, isophthalic acid and terephthalic acid. The dicarboxylic acids can be used singly or as mixtures, for example in the form of an amber, glutaric and adipic acid mixture. For the preparation of the polyester diols, it may be advantageous to use, instead of the dicarboxylic acids, the corresponding dicarboxylic acid derivatives such as carbonic acid diesters having 1 to 4 carbon atoms in the alcohol radical, carboxylic anhydrides or carboxylic acid chlorides. Examples of polyhydric alcohols are glycols having 2 to 10, preferably 2 to 6 carbon atoms, for example ethylene glycol, diethylene glycol, 1, 4-butanediol, 1, 5-pentanediol, 1, 6-hexanediol, 1, 10-decanediol, 2,2 Dimethyl 1,3-propanediol, 1,3-propanediol or dipropylene glycol. Depending on the desired properties, the polyhydric alcohols may be used alone or mixed with each other. Also suitable are esters of carbonic acid with the diols mentioned, in particular those having 4 to 6 carbon atoms, such as 1,4-butanediol or 1,6-hexanediol, condensation products of omega-hydroxycarboxylic acids, such as omega-hydroxycaproic acid or polymerization products of lactones, for example optionally substituted omega-hydroxycarboxylic acids. caprolactones. Preferred polyester diols used are ethanediol polyadipates, 1,4-butanediol polyadipates, ethanediol-1,4-butanediol polyadipates, 1,6-hexanediol neopentyl glycol polyadipates, 1,6-hexanediol-1,4-butanediol polyadipates and polycaprolactones. The polyester diols have number average molecular weights M n of 450 to 10,000 daltons and can be used individually or in the form of mixtures with one another.
Das bevorzugte Diol ist ein hydroxylgruppenhaltiges Polymerisationsprodukt des Tetrahydrofurans, da diese relativ stabil gegen Hydrolyse, mikrobiellem Abbau und Oxidation sind. Das Molekulargewicht Mn liegt im Bereich von 450 bis 10000 Dalton, vorzugsweise im Bereich von 600 bis 1500 Dalton.The preferred diol is a hydroxylated polymerization product of tetrahydrofuran, as these are relatively stable to hydrolysis, microbial degradation and oxidation. The molecular weight M n is in the range of 450 to 10,000 daltons, preferably in the range of 600 to 1500 daltons.
Zerewitinoffaktive Polyole (C) sind so genannte Kettenverlängerungsmittel und besitzen im Mittel 1 ,8 bis 3,0 zerewitinoffaktive Wasserstoffatome und haben ein Molekulargewicht von 60 bis 400 Dalton. Hierunter versteht man neben Aminogruppen, Thiolgruppen oder Carboxylgruppen aufweisenden Verbindungen solche mit zwei bis drei, bevorzugt zwei Hydroxylgruppen. Als Kettenverlängerungsmittel werden vorzugsweise aliphatische Diole mit 2 bis 14 Kohlenstoffatomen eingesetzt wie zum Beispiel Ethandiol, 1 ,2-Propandiol, 1 ,3- Propandiol, 1 ,4-Butandiol, 2,3-Butandiol, 1 ,5-Pentandiol, 1 ,6-Hexandiol, Diethylenglykol und Dipropylenglykol. Geeignet sind jedoch auch Diester der Terephthalsäure mit Glykolen mit 2 bis 4 Kohlenstoffatomen zum Beispiel Terephthalsäure-bis-ethylenglykol oder Terephthalsäure-bis-1 ,4-butandiol, Hydroxyaikylenether des Hydrochinons, zum Beispiel 1 ,4-Di(beta-hydroxyethyl)-hydrochinon, ethoxylierte Bisphenole zum Beispiel 1 ,4- Di(beta-hydroxyethyl)-bisphenol A, (cyclo)aliphatische Diamine wie Isophorondiamin, Ethylendiamin, 1 ,2-Propylendiamin, 1 ,3-Propylendiamin, N-Methyl-propylen-1 ,3-diamin, N,N'-Dimethylethylendiamin und aromatische Diamine wie 2,4-Toluylendiamin, 2,6- Toluyiendiamin, 3,5-Diethyl-2,4-toluylendiamin oder 3,5-Diethyl-2,6-toluylendiamin oder primäre mono-, di-, tri- oder tetraalkylsubstituierte 4,4'-Diaminodiphenylmethane. Besonders bevorzugt werden als Kettenverlängerer Ethandiol, 1 ,4-Butandiol, 1 ,6- Hexandiol, 1 ,4-Di(beta-hydroxyethyl)-hydrochinon oder 1 ,4-Di(beta-hydroxyethyl)- bisphenol A verwendet. Es können auch Gemische der oben genannten Kettenverlängerer eingesetzt werden. Daneben können auch kleinere Mengen an Triolen zugesetzt werden.Zerewitinoff-active polyols (C) are so-called chain extenders and have an average of 1, 8 to 3.0 Zerewitinoffaktiv hydrogen atoms and have a molecular weight of 60 to 400 daltons. By these is meant, in addition to amino groups, thiol groups or carboxyl-containing compounds, those having two to three, preferably two hydroxyl groups. As chain extenders are preferably used aliphatic diols having 2 to 14 carbon atoms such as ethanediol, 1, 2-propanediol, 1, 3-propanediol, 1, 4-butanediol, 2,3-butanediol, 1, 5-pentanediol, 1, 6 Hexanediol, diethylene glycol and dipropylene glycol. Also suitable, however, are diesters of terephthalic acid with glycols having 2 to 4 carbon atoms, for example terephthalic acid-bis-ethylene glycol or terephthalic acid bis-1,4-butanediol, hydroxyalkylene ethers of hydroquinone, for example 1,4-di (beta-hydroxyethyl) hydroquinone ethoxylated bisphenols for example 1,4-di (beta-hydroxyethyl) bisphenol A, (cyclo) aliphatic diamines such as isophoronediamine, ethylenediamine, 1,2-propylenediamine, 1,3-propylenediamine, N-methyl-propylene-1,3 -diamine, N, N'-dimethylethylenediamine and aromatic diamines such as 2,4-toluenediamine, 2,6-toluylenediamine, 3,5-diethyl-2,4-toluenediamine or 3,5-diethyl-2,6-toluenediamine or primary mono-, di-, tri- or tetraalkyl-substituted 4,4'-diaminodiphenylmethanes. Ethanediol, 1,4-butanediol, 1,6-hexanediol, 1,4-di (beta-hydroxyethyl) hydroquinone or 1,4-di (beta-hydroxyethyl) bisphenol A are particularly preferably used as chain extenders. It is also possible to use mixtures of the abovementioned chain extenders. In addition, smaller amounts of triols can be added.
Das bevorzugte Kettenverlängerungsmittel ist 1 ,4-Butandiol.The preferred chain extender is 1,4-butanediol.
Die Kombination von 4,4'-Diphenylmethandiisocyanat mit 1 ,4-Butandiol liefert Hartblöcke mit hinreichend hoher Beständigkeit gegen Schmelzen der Proben bei Temperaturbelastung.The combination of 4,4'-diphenylmethane diisocyanate with 1, 4-butanediol provides hard blocks with sufficiently high resistance to melting of the samples under temperature load.
Gegenüber Isocyanaten monofunktionelle Verbindungen können in Anteilen bis zu 2 Gew.-%, bezogen auf TPU, als so genannte Kettenabbrecher eingesetzt werden. Geeignet sind zum Beispiel Monoamine wie Butyl- und Dibutylamin, Octylamin, Stearylamin, N-Methylstearylamin, Pyrrolidin, Piperidin oder Cyclohexylamin, Monoalkohole wie Butanol, 2-Ethylhexanol, Octanol, Dodecanol, Stearylalkohol, die verschiedenen Amylalkohole, Cyclohexanol und Ethyienglykolmonomethylether.Compounds which are monofunctional towards isocyanates can be used in proportions of up to 2% by weight, based on TPU, as so-called chain terminators. Suitable are, for example, monoamines such as butyl and dibutylamine, octylamine, stearylamine, N-methylstearylamine, pyrrolidine, piperidine or cyclohexylamine, monoalcohols such as butanol, 2-ethylhexanol, octanol, dodecanol, stearyl alcohol, the various amyl alcohols, cyclohexanol and Ethyienglykolmonomethylether.
Als Flammschutzmittel (E) werden zum Beispiel anorganische oder vorzugsweise organische phosphorhaltiges Verbindungen gewählt. Beispiele sind Ammoniumpolyphosphat, Ethylendiaminpolyphosphat und Phosphorsäure- und Phosphonsäureester wie zum Beispiel Triphenylphosphat, Tricresylphosphat, Alkyphenyl- phosphate oder Diphenylkresylphosphat.As flame retardants (E), for example, inorganic or preferably organic phosphorus-containing compounds are selected. examples are Ammonium polyphosphate, ethylenediamine polyphosphate and phosphoric acid and phosphonic acid esters, for example triphenyl phosphate, tricresyl phosphate, alkyphenyl phosphates or diphenyl cresyl phosphate.
Besonders bevorzugt sind Hydrocarbyl (dihydrocarbylphosphate) der allgemeinen FormelParticularly preferred are hydrocarbyl (dihydrocarbylphosphate) of the general formula
O O ii frO O ii fr
RO- (P-O-A-O-P) n-ORRO- (POAOP) n -OR
1 I1 I
RO ORRO OR
wobei R bevorzugt eine Arylgruppe (zum Beispiel Phenyl, Kresyi), A eine verbindende Gruppe wie Arylen (zum Beispiel Phenylen), Biarylen (zum Beispiel Biphenyl), zwei Arylengruppen welche durch eine weitere Gruppe wie -CH2-, -C(CH3) 2 -, -SO2 - oder - CO- verbunden sind, oder Alkylen (zum Beispiel Neopentyl) ist und n zwischen 1 und 10 liegt. Derartige Verbindungen werden großtechnisch aus Phosphorsäure oder Phosphoroxytrichlorid und Diphenolen wie Resorcin oder Bisphenol A (welche dann die Gruppe A bilden) und Monophenolen wie Phenol und Kresol (welche dann die Gruppe R bilden) hergestellt. Bevorzugt werden Phosphorsäure-1 ,3-phenylen-tetraphenylester und Phosphorsäure-1 ,3-Phenylen-tetraphenylester-Oligomere sowie Bisphenol A bis- (diphenylphosphate) und dessen Oligomere.wherein R preferably an aryl group (for example, phenyl, Kresyi), A is a linking group such as arylene (for example, phenylene), biaryls (for example, biphenyl), two arylene groups which by another group such as -CH2-, -C (CH3) 2 -, -SO 2 - or - CO- are joined, or alkylene (for example, neopentyl) and n is between 1 and 10. Such compounds are industrially prepared from phosphoric acid or phosphorus oxytrichloride and diphenols such as resorcinol or bisphenol A (which then form group A) and monophenols such as phenol and cresol (which then form the group R). Preference is given to phosphoric acid-1, 3-phenylene tetraphenyl esters and phosphoric acid-1, 3-phenylene tetraphenyl ester oligomers and bisphenol A bis (diphenylphosphate) and its oligomers.
Ganz besonders bevorzugt werden Phosphorsäure- und Phosphonsäurederivate die bei Hydrolyse weder Phenol noch Kresol freisetzen, Beispiele hierfür sind Trixylylphosphat, butylierte Tri phenyl phosphate (zum Beispiel Fyrquel™ EHC-S), Phosphorsäure-1 ,3- Phenylen-tetraxylenylester und Salze von Phosphonsäuren wie Natrium-, Magnesium-, Zink- oder Aluminiumsalze der Propan- oder Phenylphosphonsäure (Benzolphosphonsäure).Very particular preference is given to phosphoric acid and phosphonic acid derivatives which on hydrolysis release neither phenol nor cresol, examples of which are trixylyl phosphate, butylated tri phenyl phosphates (for example Fyrquel ™ EHC-S), phosphoric acid-1, 3-phenylene tetraxylenyl esters and salts of phosphonic acids such as Sodium, magnesium, zinc or aluminum salts of propane or phenylphosphonic acid (benzenephosphonic acid).
Beispiele für einbaubare phosphorhaltige Verbindungen sind Phosphonate oder Phosphinoxide mit im Mittel mindestens 1 ,5 und höchstens 3,0 zerewitinoffaktiven Wasserstoffatomen und einem zahlenmittleren Molekulargewicht Mn von 60 bis 10000 Dalton weisen die folgende Strukturformel Examples of incorporable phosphorus-containing compounds are phosphonates or phosphine oxides having an average of at least 1, 5 and at most 3.0 Zerewitinoff-active hydrogen atoms and a number average molecular weight M n of 60 to 10,000 daltons have the following structural formula
mitWith
R1, R2 verzweigte oder unverzweigte Alkylenreste mit 1 bis 24 C-Atomen, substituierte oder nicht-substituierte Arylenreste mit 6 bis 20 C-Atomen, substituierte oder nicht-substituierte Aralkylenreste mit 6 bis 30 C-Atomen, substituierte oder nicht-substituierte Alkarylenreste mit 6 bis 30 C-Atomen, wobei R1 und R2 gleich oder verschieden sein können,R 1 , R 2 branched or unbranched alkylene radicals having 1 to 24 carbon atoms, substituted or unsubstituted arylene radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkylene radicals having 6 to 30 carbon atoms, substituted or unsubstituted Alkarylene radicals having 6 to 30 carbon atoms, where R 1 and R 2 may be identical or different,
R3 H, verzweigte oder unverzweigte Alkylreste mit 1 bis 24 C-Atomen, substituierte oder nicht-substituierte Arylreste mit 6 bis 20 C-Atomen, substituierte oder nicht-substituierte Aralkylreste mit 6 bis 30 C-Atomen, substituierte oder nicht-substituierte Alkarylreste mit 6 bis 30 C-Atomen,R 3 H, branched or unbranched alkyl radicals having 1 to 24 carbon atoms, substituted or unsubstituted aryl radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkyl radicals having 6 to 30 carbon atoms, substituted or unsubstituted alkaryl radicals with 6 to 30 carbon atoms,
x, y = 1 bis 50x, y = 1 to 50
oderor
mitWith
R1 H, verzweigte oder unverzweigte Alkylreste mit 1 bis 24 C-Atomen, substituierte oder nicht-substituierte Arylreste mit 6 bis 20 C-Atomen, substituierte oder nicht-substituierte Aralkylreste mit 6 bis 30 C-Atomen, substituierte oder nicht-substituierte Alkarylreste mit 6 bis 30 C-Atomen,R 1 H, branched or unbranched alkyl radicals having 1 to 24 carbon atoms, substituted or unsubstituted aryl radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkyl radicals having 6 to 30 carbon atoms, substituted or unsubstituted alkaryl radicals with 6 to 30 carbon atoms,
R2, R3 verzweigte oder unverzweigte Alkylenreste mit 1 bis 24 C-Atomen, substituierte oder nicht-substituierte Arylenreste mit 6 bis 20 C-Atomen, substituierte oder nicht-substituierte Aralkylenreste mit 6 bis 30 C-Atomen, substituierte oder nicht-substituierte Alkarylenreste mit 6 bis 30 C-Atomen, wobei R2 und R3 gleich oder verschieden sein könnenR 2 , R 3 branched or unbranched alkylene radicals having 1 to 24 carbon atoms, substituted or unsubstituted arylene radicals having 6 to 20 carbon atoms, substituted or unsubstituted aralkylene radicals having 6 to 30 carbon atoms, substituted or unsubstituted alkarylene radicals having 6 to 30 carbon atoms, wherein R 2 and R 3 may be the same or different
auf.on.
Zur Vermeidung der Verwendung umständlicher lUPAC-Bezeichnungen werden nachfolgend einige Substanzen mit ihrer CAS-Nr. charakterisiert.To avoid the use of cumbersome lUPAC designations, some substances with their CAS no. characterized.
Als halogenfreie Flammschutzmittel (E) sind auch stickstoffhaltige Verbindungen wie Melamincyanurat, Melamin, Biuret, Triuret, Ammelide, Ammeline, Cyanursäure, Tris (2- hydroxyethyl) isocyanurat, Bis (2-hydroxyethyl) isocyanurat, 2-Hydroxyethyiisocyanurat, Tris (carbomethyl) isocyanurat, Tris (2-cyanoethyl) isocyanurat, Bis (2-cyanoethyl) isocyanurat, 2-Cyanoethylisocyanurat, Trimethylisocyanurat, HA(L)S wie CAS-Nr. 40601- 76-1 oder 27676-62-6 oder 34137-09-2 oder 129757-67-1 oder191680-81 -6, Melam, Meiern, Dicyandiamid, Guanadine, Biguanadine, Triphenylisocyanurat, Tricresyl- isocyanurat geeignet.Also included as halogen-free flame retardants (E) are nitrogen-containing compounds such as melamine cyanurate, melamine, biuret, triuret, ammelide, ammeline, cyanuric acid, tris (2-hydroxyethyl) isocyanurate, bis (2-hydroxyethyl) isocyanurate, 2-hydroxyethyl isocyanurate, tris (carbomethyl) isocyanurate , Tris (2-cyanoethyl) isocyanurate, bis (2-cyanoethyl) isocyanurate, 2-cyanoethyl isocyanurate, trimethyl isocyanurate, HA (L) S such as CAS no. 40601-76-1 or 27676-62-6 or 34137-09-2 or 129757-67-1 or 191680-81-6, melam, Meiern, dicyandiamide, guanadine, biguanadine, triphenyl isocyanurate, tricresyl isocyanurate suitable.
Als Flammschutzmittel (E) kommen Verbindungen in Frage, die beide Elemente enthalten wie zum Beispiel Melaminphosphat, Melaminpolyphosphat, Harnstoffphosphat, Diethyl N, N-bis(2-hydroxyethyl)aminomethylphosphonat, N,N-bis-(2-hydroxyalkyl)- aminomethanphosphonsäuredimethylester, Triethanolaminhosphat oder Phosphor- oxytriamid.Suitable flame retardants (E) are compounds which contain both elements, for example melamine phosphate, melamine polyphosphate, urea phosphate, diethyl N, N-bis (2-hydroxyethyl) aminomethylphosphonate, N, N-bis (2-hydroxyalkyl) -aminomethanephosphonic acid dimethyl ester, Triethanolamine phosphate or phosphorus oxytriamide.
Als Flammschutzmittel (E) sind auch andere halogenfreie Substanzen geeignet, Beispiele dafür sind Aluminiumhydroxid, Magnesiumhydroxid, expandierbarer oder exfolierter Graphit.As flame retardant (E), other halogen-free substances are suitable, examples of which are aluminum hydroxide, magnesium hydroxide, expandable or exfoliated graphite.
Bevorzugtes Flammschutzmittel (E) ist Melamincyanurat.Preferred flame retardant (E) is melamine cyanurate.
Die erfindungsgemäß verwandten thermoplastischen Polyurethane können als Hilfs- und Zusatzstoffe (H), welche keine Flammschutzmittel sind, bis zu vorzugsweise maximal 20 Gew.-%, bezogen auf die Gesamtmenge an TPU, der üblichen Hilfs- und Zusatzstoffe enthalten. Typische Hilfs- und Zusatzstoffe sind Nucleierungsmittel, Gleitmittel wie Fettsäureester, deren Metallseifen, Fettsäureamide, Fettsäureesteramide und Siliconverbindungen, Antiblockmittel, Inhibitoren, Lichtschutzmittel, Farbstoffe, Pigmente, anorganische und/oder organische Füllstoffe, Weichmacher wie Adipate, Sebacate und Alkylsulfonsäureester, fungistatisch und bakteriostatisch wirkende Substanzen sowie Füllstoffe und deren Mischungen und Verstärkungsmittel wie faserartige Materialien. Nähere Angaben über die genannten Hilfs- und Zusatzstoffe sind der Fachliteratur, beispielsweise der Monographie von J. H. Saunders und K.C. Frisch "High Polymers", Band XVI, Polyurethane, Teil 1 und 2, Verlag Interscience Publishers 1962 beziehungsweise 1964, dem Taschenbuch für Kunststoff Additive von R, Gächter und H. Müller {Hanser Verlag München 1990) oder der DE 29 01 774 A1 zu entnehmen.The thermoplastic polyurethanes used according to the invention may contain, as auxiliary agents and additives (H), which are not flame retardants, up to preferably not more than 20% by weight, based on the total amount of TPU, of the customary auxiliaries and additives. Typical auxiliaries and additives are nucleating agents, lubricants such as fatty acid esters, their metal soaps, fatty acid amides, fatty acid ester amides and silicone compounds, antiblocking agents, inhibitors, light stabilizers, dyes, pigments, inorganic and / or organic fillers, plasticizers such as adipates, sebacates and alkylsulfonic acid esters, fungistatic and bacteriostatic agents Substances and fillers and their mixtures and reinforcing agents such as fibrous materials. Further details of the abovementioned auxiliaries and additives are the specialist literature, for example, the monograph by JH Saunders and KC Fresh "High Polymers", Volume XVI, polyurethanes, part 1 and 2, published by Interscience Publishers 1962 and 1964, the paperback for plastic additives of R, Gächter and H. Müller {Hanser Verlag Munich 1990) or DE 29 01 774 A1.
Die erfindungsgemäße Trägerfolie ist vorzugsweise im Wesentlichen frei von flüchtigen Weichmachern wie zum Beispiel DOP oder DINP und hat daher ein ausgezeichnetes Brandverhalten und geringe Emission (Weichmacherausdampfung, Fogging). Der Fogging-Wert liegt vorzugsweise über 90 %. Die Folie enthält vorzugsweise bis 5 phr phosphorfreie Weichmacher, insbesondere überhaupt keine phosphorfreien Weichmacher.The carrier film of the invention is preferably substantially free of volatile plasticizers such as DOP or DINP and therefore has an excellent fire behavior and low emission (plasticizer evaporation, fogging). The fogging value is preferably over 90%. The film preferably contains up to 5 phr of phosphorus-free plasticizers, in particular no phosphorus-free plasticizers at all.
Wenn sehr hohe Fogging-Werte erforderlich sind, werden Phosphorsäure- und Phosphonsäureverbindungen bevorzugt, die eingebaut werden und die wegen ihres Molekulargewichtes von mindestens 300, vorzugsweise mindestens 400 Dalton wenig flüchtig sind, das heißt, Phosphatweichmacher mit einem Molekulargewichtes von 300 Dalton oder weniger oder vorzugsweise 400 Dalton oder weniger sollen vermieden werden.When very high fogging levels are required, preferred are phosphoric and phosphonic acid compounds which are incorporated and which are sparse because of their molecular weight of at least 300, preferably at least 400 daltons, that is, phosphate plasticizers having a molecular weight of 300 daltons or less, or preferably 400 daltons or less should be avoided.
Die erfindungsgemäß verwendete Folie enthält mindestens einen Stabilisator, beispielsweise mindestens ein Antioxidant (F). Die Menge ist vorzugsweise mindestens 1 phr und insbesondere mindestens 2 phr (die Angaben in phr bedeuten Gewichtsteile der betreffenden Komponente bezogen auf 100 Gewichtsteile aller Polymerkomponenten derThe film used according to the invention contains at least one stabilizer, for example at least one antioxidant (F). The amount is preferably at least 1 phr and in particular at least 2 phr (the data in phr mean parts by weight of the relevant component based on 100 parts by weight of all polymer components of
Folie). Beispiele für sind Antioxidantien auf phenolischer oder aminischer Basis und sekundäre Antioxidantien auf Schwefel- oder Phosphorbasis. Die erfindungsgemäßen Wickelbänder enthalten vorzugsweise einer Kombination aus primären und sekundären Antioxidant, wobei die primäre und sekundäre Antioxidantfunktion in verschiedenen Molekülen vorliegen oder in einem Molekül vereinigt sein kann. Bei den aufgeführten Mengenangaben sind optionale Stabilisatoren wie Metalldesaktivatoren oder Lichtschutzmittel nicht eingerechnet.Foil). Examples are phenolic or aminic based antioxidants and sulfur or phosphorus based secondary antioxidants. The wrapping tapes of the invention preferably contain a combination of primary and secondary Antioxidant, wherein the primary and secondary antioxidant function are present in different molecules or may be combined in one molecule. The listed quantities do not include optional stabilizers such as metal deactivators or light stabilizers.
Die Menge an sekundärem Antioxidant beträgt vorzugsweise mindestens 0,5 phr, insbesondere mindestens 1 phr.The amount of secondary antioxidant is preferably at least 0.5 phr, more preferably at least 1 phr.
Stabilisatoren für PVC-Produkte lassen sich nicht auf TPU übertragen. Sekundäre Antioxidantien bauen Peroxide ab und werden daher bei Dienelastomeren als Teil von Alterungsschutzpaketen verwendet. Überraschend wurde gefunden, dass eine Kombination von primären Antioxidantien (zum Beispiel sterisch gehinderten Phenolen oder C- Radikalfängem wie CAS 181314-48-7) und sekundären Antioxidantien (zum Beispiel Schwefelverbindungen, Phosphiten oder sterisch gehinderten Aminen), wobei die beiden Funktionen auch in einem Molekül vereinigt sein können, die Aufgabe auch bei dienfreien TPU löst. Vor allem wird die Kombination von primärem Antioxidant, vorzugsweise sterisch gehinderten Phenolen mit einem Molekulargewicht von mehr als 500 g/mol (vorzugsweise > 700 g/mol), mit einem phosphitischen sekundären Antioxidant (vorzugsweise mit einem Molekulargewicht > 600 g/mol) bevorzugt.Stabilizers for PVC products can not be transferred to TPU. Secondary antioxidants break down peroxides and are therefore used in diene elastomers as part of anti-aging packages. Surprisingly, it has been found that a combination of primary antioxidants (for example sterically hindered phenols or C radical scavengers such as CAS 181314-48-7) and secondary antioxidants (for example sulfur compounds, phosphites or sterically hindered amines), the two functions also in one Molecule can be united, the task also solves at dienstfreien TPU. Above all, the combination of primary antioxidant, preferably sterically hindered phenols having a molecular weight of more than 500 g / mol (preferably> 700 g / mol) with a phosphitic secondary antioxidant (preferably having a molecular weight> 600 g / mol) is preferred.
Insbesondere ist die Kombination aus einem wenig flüchtigen primären phenolischen Antioxidants und jeweils einem sekundären Antioxidants aus der Klasse der Schwefelverbindungen (bevorzugt mit einem Molekulargewicht von mehr als 400 g/mol, insbesondere > 500 g/mol) und aus der Klasse der Phosphite geeignet, wobei die phenolische, die schwefelhaltige und die phosphitische Funktionen nicht in drei verschiedenen Molekülen vorliegen müssen, sondern auch mehr als eine Funktion in einem Molekül vereinigt sein kann,In particular, the combination of a low-volatile primary phenolic antioxidant and a respective secondary antioxidant from the class of sulfur compounds (preferably having a molecular weight of more than 400 g / mol, in particular> 500 g / mol) and from the class of phosphites is suitable the phenolic, sulphurous and phosphitic functions need not be present in three different molecules, but more than one function may be combined in one molecule,
Beispiele:Examples:
• Phenolische Funktion:• Phenolic function:
CAS 6683-19-8 , 2082-79-3, 1709-70-2, 36443-68-2, 1709-70-2, 34137-09-2, 27676-62-CAS 6683-19-8, 2082-79-3, 1709-70-2, 36443-68-2, 1709-70-2, 34137-09-2, 27676-62-
6, 40601-76-1 , 31851-03-3, 991-84-4, 10191-41-0, 1843-03^16, 40601-76-1, 31851-03-3, 991-84-4, 10191-41-0, 1843-03 ^ 1
• Schwefelhaltige Funktion: CAS 693-36-7, 123-28-4, 16545-54-3, 2500-88-1 , 16545-34-3, 29598-76-3, 41484-34-9• Sulfur-containing function: CAS 693-36-7, 123-28-4, 16545-54-3, 2500-88-1, 16545-34-3, 29598-76-3, 41484-34-9
• Phosphitische Funktion;• phosphitic function;
CAS 31570-04-4, 26741-53-7, 80693-00-1 , 140221 -14-3, 119345-01-6, 3806-34-6, 80410-33-9, 14650-60-8, 161717-32-4, 145650-60-8, 26741-53-7, 1 19345-01-6CAS 31570-04-4, 26741-53-7, 80693-00-1, 140221 -14-3, 119345-01-6, 3806-34-6, 80410-33-9, 14650-60-8, 161717 -32-4, 145650-60-8, 26741-53-7, 1 19345-01-6
• Phenolische und schwefelhaltige Funktion:Phenolic and sulphurous function:
CAS 41484-35-9, 90-66-4, 110553-27-0, 96-96-5, 41484, 90-66-4CAS 41484-35-9, 90-66-4, 110553-27-0, 96-96-5, 41484, 90-66-4
• Phenolische und aminische Funktion: CAS 991-84-4, 633843-89-0• Phenolic and aminic function: CAS 991-84-4, 633843-89-0
• Aminische Funktion:• Aminic function:
CAS 52829-07-9, 41 1556-26-7, 129757-67-1 , 71878-19-8, 65447-77-0, 65140-91-2CAS 52829-07-9, 41 1556-26-7, 129757-67-1, 71878-19-8, 65447-77-0, 65140-91-2
Die Kombination von CAS 6683-19-8 (zum Beispiel Irganox 1010) mit Thiopropionsäure- ester CAS 693-36-7 (Irganox PS 802) oder 123-28-4 (Irganox PS 800) mit CAS 31570- 04-4 (Irgafos 168) ist besonders bevorzugt. Bevorzugt ist des Weiteren eine Kombination, bei welcher der Anteil an sekundärem Antioxidant den des primären übersteigt. Zusätzlich können noch Metalldesaktivatoren zur Komplexierung von Schwermetallspuren, welche die Alterung katalytisch beschleunigen können, zugefügt werden. Beispiele sind CAS 32687-78-8, 70331-94-1 , 6629-10-3, Ethylendiamintetraessigsäure, N,N'-di-salicyliden- 1 ,2-diaminopropan, 3-(N-salicylol)-amino-1 ,2,4-triazol (Palmarole ADK STAB CDA-1 ), N,N'-bis[3-(3',5'-di-tert-butyl-4'-hydroxyphenyl)propionyl]hydrazid (Palmarole MDA.P.10) oder 2,2'-oxamido-bis-[ethyl-3-(tert-butyl-4-hydroxyphenyl)propionat] (Palmarole MDA.P.11.).The combination of CAS 6683-19-8 (for example Irganox 1010) with thiopropionic acid ester CAS 693-36-7 (Irganox PS 802) or 123-28-4 (Irganox PS 800) with CAS 31570-04-4 (Irgafos 168) is particularly preferred. Further preferred is a combination in which the level of secondary antioxidant exceeds that of the primary. In addition, metal deactivators can be added to complex heavy metal traces which can catalytically accelerate aging. Examples are CAS 32687-78-8, 70331-94-1, 6629-10-3, ethylenediaminetetraacetic acid, N, N'-di-salicylidene-1,2-diaminopropane, 3- (N-salicylol) -amino-1, 2,4-triazole (Palmarole ADK STAB CDA-1), N, N'-bis [3- (3 ', 5'-di-tert-butyl-4'-hydroxyphenyl) propionyl] hydrazide (Palmarole MDA.P. 10) or 2,2'-oxamido-bis- [ethyl-3- (tert-butyl-4-hydroxyphenyl) propionate] (Palmarole MDA.P.11.).
Die Auswahl der genannten Alterungsschutzmittel hat besondere Bedeutung für die erfindungsgemäße Wickelfolie, da mit phenolischen Antioxidantien allein oder selbst inThe selection of said antiaging agent is of particular importance for the wrapping film according to the invention, since with phenolic antioxidants alone or even in
Kombination mit schwefelhaltigen Costabilisatoren nicht immer praxisgerechte Produkte erreicht werden können. Bei der Kalanderverarbeitung, bei der auf den Walzen ein relativ lang andauernder Zutritt von Luftsauerstoff unvermeidlich ist, stellt sich dieCombination with sulfur-containing costabilizers not always practical products can be achieved. In the calender processing, in which a relatively long-lasting access of atmospheric oxygen is inevitable on the rollers, the
Mitverwendung von Phosphitstabilisatoren als besonders geeignet für eine ausreichende Wärmealterungsstabilität des Produktes heraus. Selbst bei Extrusionsverarbeitung macht sich der Zusatz von Phosphiten bei der Aiterungsprüfung des Produktes noch positiv bemerkbar. Für den Phosphitstabilisator wird eine Menge von mindestens 0,1 , vorzugsweise mindestens 0,3 phr bevorzugt.Use of phosphite stabilizers as particularly suitable for a sufficient heat aging stability of the product out. Even in extrusion processing power The addition of phosphites in the Aiterungsprüfung the product is still positively noticeable. For the phosphite stabilizer, an amount of at least 0.1, preferably at least 0.3, phr is preferred.
Als Hydrolyseschutzmittel (G) können zum Beispiel monomere oder polymere Carbodiimide, Oxazoline oder reaktive Polyharnstoffe eingesetzt werden. Bevorzugt wird ein polymeres Carbodiimid auf Basis aromatischer Isocyanate. Zur Herstellung und Struktur solcher Carbodimide siehe US 2,941 ,956 A, JP 04 733 279 A, J. Org. Chem., 28, 2069 bis 2075 (1963); Chemical Review, Vol. 81 , No. 4, pp. 619 bis 621 (1981). Die Menge liegt bevorzugt bei mindestens 0,5 und insbesondere mindestens 2 phr.For example, monomeric or polymeric carbodiimides, oxazolines or reactive polyureas can be used as hydrolysis stabilizers (G). Preference is given to a polymeric carbodiimide based on aromatic isocyanates. For the preparation and structure of such carbodimides, see US 2,941, 956 A, JP 04 733 279 A, J. Org. Chem., 28, 2069-2075 (1963); Chemical Review, Vol. 81, No. 4, pp. 619 to 621 (1981). The amount is preferably at least 0.5 and in particular at least 2 phr.
Bevorzugt wird eine Kombination aus Antioxidant (F) und Hydrolyseschutzmittel (G) eingesetzt.Preference is given to using a combination of antioxidant (F) and hydrolysis protection agent (G).
Weitere Zusätze, die in das TPU eingearbeitet werden können, sind Thermoplaste wie Polyethylene, Ethylen/Vinylacetatcopolymere, Polypropylenhomopolymere oder -copoly- mere. Auch synthetische Elastomere wie hydrierte Styrol-Dien-Copolymere oder nicht schmelzbare Polymere wie EVA-Dispersionspulver oder Impact Modifier (zum Beispiel Acrylatelastomerteilchen mit einer Hülle aus PAN oder PMMA) können verwendet werden. Vorzugsweise werden keine hydrolyseempfindlichen polymeren Zusätze mit Ester- oder Amidgruppen in der Polymerhauptkette mitverwandt.Other additives which can be incorporated into the TPU are thermoplastics such as polyethylenes, ethylene / vinyl acetate copolymers, polypropylene homopolymers or copolymers. Also, synthetic elastomers such as hydrogenated styrene-diene copolymers or non-fusible polymers such as EVA dispersion powder or impact modifier (for example acrylate elastomer particles having a shell of PAN or PMMA) can be used. Preferably, no hydrolysis-sensitive polymeric additives having ester or amide groups in the polymer backbone are used.
Geeignete erfindungsgemäße Katalysatoren (D) sind die nach dem Stand der Technik bekannten und üblichen tertiären Amine wie zum Beispiel Triethylamin, Dimethylcyclohexylamin, N-Methylmorpholin, N,N'-Dimethylpiperazin, 2-(Dimethyl- aminoethoxy)ethanol, Diazabicyclo[2,2,2]octan und ähnliche sowie insbesondere organische Metallverbindungen wie Titansäureester, Eisenverbindungen oder Zinnverbindungen wie Zinndiacetat, Zinndioctoat, Zinndilaurat oder die Zinndialkylsalze aliphatischer Carbonsäuren wie Dibutylzinndiacetat oder Dibutylzinndilaurat oder ähnliche.Suitable catalysts (D) according to the invention are the tertiary amines known and customary in the prior art, for example triethylamine, dimethylcyclohexylamine, N-methylmorpholine, N, N'-dimethylpiperazine, 2- (dimethylaminoethoxy) ethanol, diazabicyclo [2.2 , 2] octane and similar and in particular organic metal compounds such as titanic acid esters, iron compounds or tin compounds such as tin diacetate, tin dioctoate, tin dilaurate or the Zinndialkylsalze aliphatic carboxylic acids such as dibutyltin diacetate or dibutyltin dilaurate or the like.
Bevorzugte Katalysatoren sind organische Metallverbindungen, insbesondere Titansäureester, Eisen- und Zinnverbindungen. Die Gesamtmenge an Katalysatoren in den erfindungsgemäßen TPU beträgt in der Regel etwa O bis 5 Gew.-%, bevorzugt 0 bis 2 Gew.-%, bezogen auf die Gesamtmenge an JPU.Preferred catalysts are organic metal compounds, in particular titanic acid esters, iron and tin compounds. The total amount of catalysts in The TPU according to the invention is generally about 0 to 5 wt .-%, preferably 0 to 2 wt .-%, based on the total amount of JPU.
Das erfindungsgemäß verwandte TPU kann kontinuierlich oder diskontinuierlich hergestellt worden sein. Die bekanntesten Herstellverfahren sind das Bandverfahren (GB 1 057 018 A) und das Extruderverfahren (DE 19 64 834 A1 ). Der Aufbau des TPU kann entweder schrittweise (Prepolymerdosierverfahren, Umsetzung der Komponenten (A) und (B) und danach mit (C) oder durch die gleichzeitige Reaktion aller Komponenten (A), (B) und (C) in einer Stufe (one-shot-Dosierverfahren) erfolgen. Vorzugsweise das Prepolymerverfahren benutzt.The TPU related to the invention may be produced continuously or discontinuously. The best known production methods are the belt process (GB 1 057 018 A) and the extruder process (DE 19 64 834 A1). The structure of the TPU can be carried out either stepwise (prepolymer dosing method, reaction of components (A) and (B) and then with (C) or by the simultaneous reaction of all components (A), (B) and (C) in one step (one- Preferably, the prepolymer method is used.
Die Zugabe der Flammschutzmittel (E), der Antioxidantien (F), der Hydrolyseschutzmittel (G) und/oder der Hilfsstoffe (H) kann jeweils vor, während oder nach der Polyurethanreaktion erfolgen.The addition of the flame retardant (E), the antioxidants (F), the hydrolysis protection agent (G) and / or the auxiliaries (H) can be carried out before, during or after the polyurethane reaction.
Die vorliegende Erfindung hat hauptsächlich die Abwesenheit von Halogenen bei hoher Flammfestigkeit, Reißfestigkeit und Flexibilität zum Ziel. Wie ausgeführt steigen die thermischen Anforderungen der Anwendung, so dass zusätzlich eine erhöhteThe object of the present invention is primarily the absence of halogens with high flame retardancy, tear resistance and flexibility. As stated, the thermal requirements of the application increase, so that in addition an increased
Beständigkeit gegenüber konventionellen PVC-Wickelbändem oder den in Entwicklung befindlichen PVC-freien Folienwickelbändern auf Polyolefinbasis erreicht werden soll.Resistance to conventional PVC wrapping tapes or to the polyolefin-based PVC-free film wrapping tapes under development is to be achieved.
Daher werden die Eigenschaften der vorliegenden Erfindung diesbezüglich im Folgenden ausführlich beschrieben.Therefore, the characteristics of the present invention will be described below in detail.
Das erfindungsgemäße Produkt ist halogenfrei in dem Sinne, dass der Halogenhalt der Rohstoffe so niedrig ist, dass er für die Flammwidrigkeit keine Rolle spielt. Halogene in Spurenmengen, wie sie durch Verunreinigungen, Prozessadditive (Fluoreiastomer) oder als Rückstände von Katalysatoren auftreten könnten, bleiben unberücksichtigt.The product according to the invention is halogen-free in the sense that the halogen content of the raw materials is so low that it plays no role in the flame retardance. Halogens in trace amounts, such as those that could occur as a result of impurities, process additives (fluoroelastomer) or as residues of catalysts, are not taken into consideration.
Der Verzicht auf Halogene zieht normalerweise die Eigenschaft der leichten Brennbarkeit nach sich, was den Sicherheitserfordernissen in elektrischen Anwendungen wieThe elimination of halogens usually entails the characteristic of flammability, which meets the safety requirements in electrical applications such as
Haushaltsgeräten, Gebäuden oder Fahrzeugen nicht entspricht. Das erfindungemäße Wickelband weist selbstverlöschende Eigenschaften auf, wobei die bevorzugten Ausführungsformen des Wickelbandes in Brandtesten nach FMVSS 302 (waagerechte Probe) und/oder ASTM D 568 (senkrechte Probe) genannten Prüfbedingungen von selbst verlöschen.Household appliances, buildings or vehicles. The inventive winding tape has self-extinguishing properties, with the preferred Embodiments of the winding band in fire tests according to FMVSS 302 (horizontal sample) and / or ASTM D 568 (vertical sample) mentioned test conditions extinguish itself.
Die Dicke der erfindungsgemäßen Folie liegt vorzugsweise im Bereich von 30 bis 180 μm, bevorzugt 50 bis 150 μm, insbesondere 55 bis 100 μm. Somit werden eine ausreichende Anschmiegsamkeit beim Wickeln, eine gute Handeinreißbarkeit und annehmbare Kosten erzielt. Das erfindungsgemäße Wickelband weist eine entsprechende Dicke erhöht um die Dicke der gegebenenfalls vorhandenen Haftklebebeschichtung auf. Die Oberfläche kann strukturiert oder glatt sein. Vorzugsweise ist die Oberfläche leicht matt eingestellt. Dies kann durch Verwendung eines Füllstoffs mit einer hinreichend hohen Teilchengröße oder durch eine Walze (zum Beispiel Prägewalze am Kalander oder mattierte Chiliroll oder Prägewalze bei der Extrusion) erreicht werden.The thickness of the film of the invention is preferably in the range of 30 to 180 .mu.m, preferably 50 to 150 .mu.m, in particular 55 to 100 microns. Thus, sufficient conformability in winding, good hand tearability and acceptable cost are achieved. The winding tape according to the invention has a corresponding thickness increased by the thickness of the optional pressure-sensitive adhesive coating. The surface can be textured or smooth. Preferably, the surface is slightly dull. This can be achieved by using a filler with a sufficiently high particle size or by a roll (for example embossing roll on the calender or matted chiliroll or embossing roll on extrusion).
Das erfindungsgemäße verwendete Wickelband ist vorzugsweise gefärbt (schwarz, weiß oder bunt), wobei die Trägerfolie und/oder eine weitere Schicht wie zum Beispiel die Klebemasse eingefärbt sind. Die verwendeten Pigmente sind vorzugsweise frei von giftigen Schwermetallen wie zum Beispiel auf Basis Blei, Cadmium oder Chrom.The winding tape used according to the invention is preferably colored (black, white or colored), wherein the carrier film and / or a further layer such as the adhesive are colored. The pigments used are preferably free of toxic heavy metals such as lead, cadmium or chromium.
Das erfindungsgemäße Wickelband weist in Längsrichtung eine Kraft bei 10 %-Dehnung von 2 bis 20 N/cm auf, vorzugsweise von 4 bis 11 N/cm, und bei 50 %-Dehnung eine Kraft von 3 bis 25 N/cm, vorzugsweise von 6 bis 17 N/cm.The winding tape according to the invention has a force at 10% elongation of 2 to 20 N / cm in the longitudinal direction, preferably from 4 to 11 N / cm, and at 50% elongation a force of 3 to 25 N / cm, preferably of 6 up to 17 N / cm.
Die 10%-Kraft ist ein Maß für die Steifigkeit der Folie, und die 50 %-Kraft ist ein Maß für die Anschmiegsamkeit beim Wickeln bei starker Deformation durch hohe Wickelspannung. Die 50 %-Kraft darf aber auch nicht zu niedrig liegen, weil sonst in der Regel die Reißfestigkeit zu gering ist.The 10% force is a measure of the stiffness of the film, and the 50% force is a measure of the conformability of winding in high deformation by high winding tension. However, the 50% force must not be too low, because otherwise the tear strength is usually too low.
Die Reißkraft (Bruchkraft) der Trägerfolie liegt bei mindestens 10 N/cm, vorzugsweise mindestens 20 N/cm.The tensile strength (breaking strength) of the carrier film is at least 10 N / cm, preferably at least 20 N / cm.
Da TPUs sehr zäh sein können, sind gegebenenfalls Maßnahmen zur Verbesserung derSince TPUs can be very tough, measures may be taken to improve their performance
Handeinreißbarkeit des Wickelbandes erforderlich wie zum Beispiel Abmischung mit Füllstoffen, unverträglichen thermoplastischen oder nicht schmelzbaren Polymeren, durch rau geschnittene Seitenkanten, die bei mikroskopischer Betrachtung Risse in der Folie ausbilden, die dann offenbar ein Weiterreißen begünstigen, oder durch mit nachträglich zum Beispiel durch Anstanzen angebrachten Einkerbungen versehenen Seitenkanten. Raue Schnittkanten können insbesondere durch die Anwendung eines Quetschschnitts mit stumpfen oder definiert gezackten rotierenden Messern auf Ballenware (Jumbos, Rollen in großer Länge) oder durch einen Abstechschnitt mit feststehenden Klingen oder rotierenden Messern von Stangenware (Rollen in Produktionsbreite und verkaufsüblicher Länge) erzeugt werden. Die Bruchdehnung kann durch einen geeigneten Schliff der Klingen und Messer eingestellt werden. Bevorzugt ist die Ausführung der Herstellung von Stangenware mit Abstechschnitt mit stumpfen feststehenden Klingen. Durch starkes Abkühlen der Stangen vor dem Schneiden kann die Rissbildung beim Schneidprozess noch verbessert werden.Hand tearability of the wrapping tape required, such as blending with fillers, incompatible thermoplastic or non-meltable polymers, by rough cut side edges that form microscopic cracks in the film, which then apparently favor a tearing, or by later provided with, for example, by punching notches provided side edges. Rough cut edges can be produced, in particular, by using a squeeze cut with dull or jagged rotating knives on bale goods (jumbos, long rolls) or by cutting off with fixed blades or rotating knives of bar stock (rolls of production width and commercial length). The elongation at break can be adjusted by a suitable grinding of the blades and blades. Preference is given to the execution of the production of bar stock with cut-away with blunt fixed blades. By strongly cooling the bars before cutting, the cracking during the cutting process can be improved.
Voraussetzungen für eine ausreichende Wärmebeständigkeit und Kurzzeithit- zebeständigkeit sind ein hinreichender Kristallitschmelzpunkt des TPU (vorzugsweise mindestens 158 0C und besonders bevorzugt mindestens 170 0C) sowie eine Beständigkeit gegen Alterung durch Abbau was durch Antioxidantien und/oder Hydrolyseschutzmittel sichergestellt werden kann.Prerequisites for sufficient heat resistance and are Kurzzeithit- zebeständigkeit a sufficient crystallite melting point of TPU (preferably at least 158 0 C and most preferably at least 170 0 C), as well as resistance to aging by degradation which can be ensured by antioxidants and / or hydrolysis stabilizers.
Das erfindungsgemäße Wickelband weist eine hohe Temperaturbeständigkeit auf, in bevorzugten Ausführungsformen soll eine Bruchdehnung von mindestens 100 % nach 312 Stunden Lagerung bei 140 0C (Wärmebeständigkeitstest) beziehungsweise eine Kurzzeithitzebeständigkeit von 170 0C (nach 30 min keine Risse oder geschmolzene Stellen) aufweisen.The winding tape according to the invention has a high temperature resistance, in preferred embodiments should have an elongation at break of at least 100% after 312 hours of storage at 140 0 C (heat resistance test) or a short-term heat resistance of 170 0 C (after 30 min no cracks or molten points).
Zur Erreichung dieser Kraftwerte als auch der Wärmebeständigkeit enthält die Folie des Wickelbandes ein TPU mit hinreichend hohem Hartblockanteil, weshalb die Shore D- Härte des TPU-Rohstoffs vorzugsweise mindestens 35 und besonders bevorzugt mindestens 50 beträgt, das entspricht in etwa Shore A-Härten von vorzugsweise mindestens 85 beziehungsweise besonders bevorzugt mindestens 100. Die im Stand der Technik dargestellten flammfesten Klebebänder verwenden deutlich weichere TPU (Shore A 70 bis 80) als die hier angestrebten flammfesten Klebebänder mit eingebautem Flammschutzmittel. Wenn den Klebebändern aus solchen weichen TPU noch Weichmacher oder Phosphorsäureester als Flammschutzmittel zugesetzt werden, sind diese dann noch viel ungeeigneter als die erfindungsgemäßen Wickelbänder. Die Herstellung der Folie erfolgt auf einem Kalander oder durch Extrusion wie zumTo achieve these strength values as well as the heat resistance, the film of the winding tape contains a TPU with a sufficiently high proportion of hard blocks, which is why the Shore D hardness of the TPU raw material is preferably at least 35 and more preferably at least 50, which corresponds approximately to Shore A hardnesses of preferably at least 85 or particularly preferably at least 100. The flame-resistant adhesive tapes shown in the prior art use significantly softer TPU (Shore A 70 to 80) than the flame-resistant adhesive tapes with built-in flame retardant. If plasticizers or phosphoric acid esters are added to the adhesive tapes of such soft TPU as flame retardants, then these are much more inappropriate than the winding tapes according to the invention. The film is produced on a calender or by extrusion such as
Beispiel im Blas- oder Castprozess. Diese Verfahren sind zum Beispiel in Ullmann'sExample in the blowing or casting process. These methods are for example in Ullmann's
Encyclopedia of Industrial Chemistry, 6. Auflage, Wiley-VCH 2002 beschrieben. Bei der Mitverwendung von festen oder flüssigen Additiven für das TPU wird ein Compound aus den Hauptkomponenten oder allen Komponenten in einem Compounder wie Kneter (zumEncyclopedia of Industrial Chemistry, 6th Edition, Wiley-VCH 2002. When using solid or liquid additives for the TPU, a compound of the main components or all components in a compounder such as kneader (for
Beispiel Stempelkneter) oder Extruder (zum Beispiel Zweischneckenextruder,Example stamp kneader) or extruder (for example, twin-screw extruder,
Planetwalzenextruder) hergestellt und dann in eine feste Form (zum Beispiel Granulat) überführt, welche dann in einer Folienextrusionsanlage oder in einem Extruder, Kneter oder Walzwerk einer Kalanderanlage weiterverarbeitet werden.Planetary roller extruder) and then converted into a solid form (for example granules), which are then further processed in a film extrusion line or in an extruder, kneader or rolling mill of a calender line.
Die Polyurethanfolie wird vorzugsweise zumindest einseitig mit einer Klebemasse beschichtet.The polyurethane film is preferably coated on at least one side with an adhesive.
Die Menge der bevorzugt vorhandenen Klebstoffschicht beträgt 10 bis 40 g/m2, vorzugsweise 18 bis 28 g/m2 (das ist die Menge nach einer eventuellen notwendigen Entfernung von Wasser oder Lösungsmittel; die Zahlenwerte entsprechen auch in etwa der Dicke in μm). In einem Fall mit Klebstoffbeschichtung beziehen sich die hier gemachten Angaben zur Dicke und zu dickenabhängigen mechanischen Eigenschaften ausschließlich auf die TPU-haltige Schicht des Wickelbandes ohne Berücksichtung von Klebstoffschicht oder weiteren Schichten, die in Zusammenhang mit Klebstoffschichten vorteilhaft sind. Die Beschichtung muss nicht vollflächig sein, sondern kann auch teilflächig ausgeführt sein. Als Beispiel sei ein Wickelband mit je einem haftklebenden Streifen an den Seitenkanten genannt. Diese kann zu etwa rechteckigen Blättern abgeschnitten werden, welche mit dem einem Klebstoffstreifen auf dem Kabelbündel aufgeklebt und dann so weit gewickelt werden, bis der andere Klebstoffstreifen auf der Wickelbanddrückseite verklebt werden kann. Eine solche schlauchartige Umhüllung, ähnlich einer Sleeve-Verpackung, weist den Vorteil auf, dass die Biegsamkeit des Kabelbaumes durch die Umwicklung praktisch nicht verschlechtert wird.The amount of preferably present adhesive layer is 10 to 40 g / m 2 , preferably 18 to 28 g / m 2 (that is the amount after any necessary removal of water or solvent, the numerical values also correspond approximately to the thickness in microns). In a case with adhesive coating, the information given here on the thickness and thickness-dependent mechanical properties relate exclusively to the TPU-containing layer of the winding tape without consideration of adhesive layer or other layers that are advantageous in connection with adhesive layers. The coating does not have to be full-surface, but may also be part-surface. As an example, a wrapping tape, each with a pressure-sensitive adhesive strip on the side edges is called. This can be cut into approximately rectangular sheets, which are glued with the one adhesive strip on the cable bundle and then wound until the other adhesive strip on the Wickelbanddrückseite can be glued. Such a tube-like envelope, similar to a sleeve packaging, has the advantage that the flexibility of the cable harness is practically not deteriorated by the wrapping.
Als Klebstoff kommen alle gängigen Typen in Frage, vor allem auf Basis von Kautschuk. Solche Kautschuke können zum Beispiel Homo- oder Copolymere des Isobutylens, des 1 -Butens, des Vinylacetats, des Ethylens, von Acrylsäureestem, des Butadiens oder des Isoprens sein. Besonders geeignet sind Rezepturen auf Basis von Polymeren basierend auf Acrylsäureestem, Vinylacetat oder Isopren.As adhesive all common types in question, especially based on rubber. Such rubbers may be, for example, homopolymers or copolymers of isobutylene, of 1-butene, of vinyl acetate, of ethylene, of acrylic esters, of butadiene or of Be Isoprens. Especially suitable are formulations based on polymers based on acrylic acid esters, vinyl acetate or isoprene.
Zur Optimierung der Eigenschaften kann die zum Einsatz kommende Selbstklebemasse mit einem oder mehreren Additiven wie Klebrigmachern (Harzen), Weichmachern, Füllstoffen, Flammschutzmitteln, Pigmenten, UV-Absorbern, Lichtschutz-, Alterungsschutzmitteln, Photoinitiatoren, Vemetzungsmitteln oder Vernetzungspromotoren abgemischt sein. Klebrigmacher sind beispielsweise Kohlenwasserstoffharze (zum Beispiel Polymere auf Basis ungesättigter C5- oder Cg-Monomere), Terpenphenolharze, Polyterpenharze aus Rohstoffen wie zum Beispiel α- oder ß-Pinen, aromatische Harze wie Cumaron- Inden-Harze oder Harze auf Basis Styrol oder α-Methylstyrol wie Kolophonium und seine Folgeprodukte, zum Beispiel disproportionierte, dimerisierte oder veresterte Harze, zum Beispiel wozu Umsetzungsprodukte mit Glycol, Glycerin oder Pentaerythrit, um nur einige zu nennen, sowie weitere Harze (wie beispielsweise aufgeführt in Ullmanns Enzyklopädie der technischen Chemie, Band 12, Seiten 525 bis 555 (4. Auflage), Weinheim) zählen. Bevorzugt werden Harze ohne leicht oxidierbare Doppelbindungen wie Terpenphenolharze, aromatische Harze und besonders bevorzugt Harze, die durch Hydrierung hergestellt sind wie zum Beispiel hydrierte Aromatenharze, hydrierte Polycyclopentadienharze, hydrierte Kolophoniumderivate oder hydrierte Terpenharze eingesetzt.To optimize the properties, the self-adhesive composition used can be mixed with one or more additives, such as tackifiers (resins), plasticizers, fillers, flame retardants, pigments, UV absorbers, light stabilizers, aging inhibitors, photoinitiators, crosslinking agents or crosslinking promoters. Tackifiers are, for example, hydrocarbon resins (for example polymers based on unsaturated C 5 or Cg monomers), terpene-phenolic resins, polyterpene resins from raw materials such as α- or β-pinene, aromatic resins such as coumarone-indene resins or styrene-based or α-styrene resins Methyl styrene such as rosin and its derivatives, for example disproportionated, dimerized or esterified resins, for example reaction products with glycol, glycerol or pentaerythritol, to name but a few, and also other resins (such as listed in Ullmanns Enzyklopadie der technischen Chemie, Volume 12) , Pages 525 to 555 (4th edition), Weinheim). Preference is given to using resins without easily oxidizable double bonds, such as terpene-phenolic resins, aromatic resins and particularly preferably resins which are prepared by hydrogenation, for example hydrogenated aromatic resins, hydrogenated polycyclopentadiene resins, hydrogenated rosin derivatives or hydrogenated terpene resins.
Geeignete Füllstoffe und Pigmente sind beispielsweise Ruß, Titandioxid, Calciumcarbonat, Zinkcarbonat, Zinkoxid, Silicate oder Kieselsäure. Geeignete beimischbare Weichmacher sind beispielsweise aliphatische, cycloaliphatische und aromatische Mineralöle, Di- oder Poly-Ester der Phthalsäure, Trimellitsäure oder Adipinsäure, flüssige Kautschuke (zum Beispie! niedermolekulare Nitril- oder Polyisoprenkautschuke), flüssige Polymerisate aus Buten und/oder Isobuten, Acrylsäureester, Polyvinylether, Flüssig- und Weichharze auf Basis der Rohstoffe von Klebharzen, Wollwachs und andere Wachse oder flüssige Silikone. Vernetzungsmittel sind beispielsweise Isocyanate, Phenolharze oder halo- genierte Phenolharze, Melamin- und Formaldehydharze. Geeignete Vernetzungspromotoren sind zum Beispiel Maleinimide, Allylester wie Triallylcyanurat, mehrfunktionelle Ester der Acryl- und Methacryläure. Alterungsschutzmittel sind beispielsweise sterisch gehinderte Phenole, die zum Beispiel unter dem Handelsnamen Irganox™ bekannt sind. Eine Vernetzung ist vorteilhaft, da die Scherfestigkeit (zum Beispiel ausgedrückt als Holding Power) erhöht wird und sich damit die Neigung zu Deformationen der Rollen bei Lagerung (Teleskopieren oder Bildung von Hohlstellen, auch Gaps genannt) verringert. Auch das Ausquetschen der Haftklebemasse wird verringert. Dies drückt sich in kleb- freien Seitenkanten der Rollen und klebfreien Kanten des in einer spiralförmigen Bewegung um Kabel beziehungsweise einen Kabelbaum geführten Wickelbandes aus. Die Holding Power liegt vorzugsweise oberhalb von 150 min.Suitable fillers and pigments are, for example, carbon black, titanium dioxide, calcium carbonate, zinc carbonate, zinc oxide, silicates or silicic acid. Suitable miscible plasticizers are, for example, aliphatic, cycloaliphatic and aromatic mineral oils, di- or polyesters of phthalic acid, trimellitic acid or adipic acid, liquid rubbers (for example low molecular weight nitrile or polyisoprene rubbers), liquid polymers of butene and / or isobutene, acrylic esters, polyvinyl ethers , Liquid and soft resins based on the raw materials of adhesive resins, wool wax and other waxes or liquid silicones. Crosslinking agents are, for example, isocyanates, phenolic resins or halogenated phenolic resins, melamine and formaldehyde resins. Suitable crosslinking promoters are, for example, maleimides, allyl esters, such as triallyl cyanurate, polyfunctional esters of acrylic and methacrylic acid. Anti-aging agents include, for example, hindered phenols, known, for example, under the trade name Irganox ™. Crosslinking is advantageous because the shear strength (for example expressed as holding power) is increased, thereby reducing the propensity to deformation of the rolls during storage (telescoping or formation of voids, also called gaps). The squeezing of the PSA is also reduced. This is expressed in non-adhesive side edges of the rollers and tack-free edges of the winding band guided in a spiral movement around cables or a cable harness. The holding power is preferably above 150 min.
Die Klebkraft auf Stahl sollte im Bereich von 1 ,5 bis 3 N/cm liegen.The bond strength to steel should be in the range of 1.5 to 3 N / cm.
Das erfindungsgemäße Wickelband weist bevorzugt eine Abrollkraft von 1 ,2 bis 6,0 N/cm, ganz besonders bevorzugt von 1 ,6 bis 4,0 N/cm und insbesondere 1 ,8 bis 2,5 N/cm bei 300 mm/min Abrollgeschwindigkeit auf.The winding tape according to the invention preferably has an unwinding force of from 1.2 to 6.0 N / cm, very particularly preferably from 1.6 to 4.0 N / cm and in particular from 1.8 to 2.5 N / cm at 300 mm / min Unwinding speed.
Zusammenfassend weist die bevorzugte Ausführungsform einseitig eine lösungsmittelfreie Selbstklebemasse auf, welche durch Coextrusion, Schmelz- oder Dispersions- beschichtung zustande gekommen ist. Insbesondere werden Klebmassen auf Polyacrylat-Basis in Form Dispersionen oder Hotmelts bevorzugt.In summary, the preferred embodiment has on one side a solvent-free self-adhesive composition which has been produced by coextrusion, melt or dispersion coating. In particular, polyacrylate-based adhesives in the form of dispersions or hotmelts are preferred.
Vorteilhaft ist die Verwendung einer Primerschicht zwischen der Trägerfolie und Klebmasse zur Verbesserung der Haftung der Klebmasse auf der Folie und somit der Vermeidung von Übertragung von Klebstoff auf die Folienrückseite während des Abwickeins der Rollen.The use of a primer layer between the carrier film and adhesive is advantageous for improving the adhesion of the adhesive to the film and thus avoiding the transfer of adhesive to the film back during the unwinding of the rolls.
Als Primer sind die bekannten Dispersion- und Lösungsmittelsysteme verwendbar zum Beispiel auf Basis von isopren- oder butadienhaltigen Kautschuk und/oder Cyclokaut- schuk. Isocyanate oder Epoxyharze als Additive verbessern die Haftung und erhöhen zum Teil auch die Scherfestigkeit des Haftklebstoffes. Physikalische Oberflächen- behandlungen wie Beflammung, Corona oder Plasma oder Coextrusionsschichten sind ebenfalls geeignet, die Haftung zu verbessern. Besonders bevorzugt ist die Anwendung solcher Verfahren auf lösungsmittelfreie Klebstoffschichten, insbesondere solche auf Acrylatbasis. Eine Beschichtung der Rückseite kann durch bekannte Releasemittel (gegebenenfalls mit anderen Polymeren abgemischt) erfolgen. Beispiele sind Stearyl-Verbindungen (zum Beispiel Polyvinylstearylcarbamat, Stearylverbindungen von Übergangsmetallen wie Cr oder Zr), Harnstoffe aus Polyethylenimin und Stearylisocyanat, Polysiloxane (zum Beispiel als Copolymer mit Polyurethanen oder als Propfcopolymer auf Polyolefin), thermoplastische Fluorpolymere. Der Begriff Stearyl steht als Synonym für alle geraden oder verzweigten Alkyle oder Alkenyle mit einer C-Zahl von mindestens 10 wie zum Beispiel Octadecyl.As primers, the known dispersion and solvent systems can be used, for example, based on isoprene- or butadiene-containing rubber and / or cyclo-rubber. Isocyanates or epoxy resins as additives improve the adhesion and in part also increase the shear strength of the pressure-sensitive adhesive. Physical surface treatments such as flame treatment, corona or plasma or coextrusion layers are also suitable for improving adhesion. Particularly preferred is the use of such methods on solvent-free adhesive layers, especially those based on acrylate. A coating of the back can be carried out by known release agents (optionally blended with other polymers). Examples are stearyl compounds (for example polyvinyl stearyl carbamate, stearyl compounds of transition metals such as Cr or Zr), ureas of polyethyleneimine and stearyl isocyanate, polysiloxanes (for example as a copolymer with polyurethanes or as a graft copolymer on polyolefin), thermoplastic fluoropolymers. The term stearyl is synonymous with all straight or branched alkyls or alkenyls having a C number of at least 10 such as octadecyl.
Beschreibungen der üblichen Klebmassen sowie Rückseitenbeschichtungen und Primern finden sich zum Beispiel in „Handbook of Pressure Sensitive Adhesive Technology", D. Satas, (3. Auflage).Descriptions of the customary adhesives and backcoats and primers can be found, for example, in "Handbook of Pressure Sensitive Adhesive Technology", D. Satas, (3rd Edition).
Die Stangenware kann zur Erhöhung der Abrollkraft oder Relaxation der Spannungen der Folien vor dem Schneiden einer Wärmelagerung unterzogen werden. Das Schneiden von Wickelbändern mit Gewebe-, Vlies- und Folienträger (zum Beispiel PVC) erfolgt durch Scherenschnitt (zwischen zwei rotierenden Messern), Abstechschnitt (feststehende oder rotierender Messer werden in eine rotierende Stange des Produktes gedrückt), Klingenschnitt (die Bahn wird bei Durchlauf durch scharfe Klingen geteilt) oder Quetschschnitt (zwischen einem rotierenden Messer und einer Walze).The bar stock can be subjected to a heat storage to increase the unwind force or relaxation of the tensions of the films before cutting. The cutting of wrapping tapes with fabric, non-woven and film carriers (for example PVC) is carried out by shear cut (between two rotating knives), cut-off cut (fixed or rotating knives are pressed into a rotating bar of the product), blade cut (the web is turned on divided by sharp blades) or crimping (between a rotating knife and a roller).
Das erfindungsgemäße Wickelband ist ausgezeichnet zum Umwickeln von langgestreck- tem Gut wie Feldspulen oder Kabelsätzen in Fahrzeugen geeignet. Die Flexibilität ist von herausragender Bedeutung, da bei Anwendung auf Drähten und Kabeln nicht nur in einer spiralförmigen Bewegung gewickelt, sondern an Verzweigungsstellen, Steckern oderThe winding tape according to the invention is excellently suitable for wrapping elongate goods such as field coils or cable harnesses in vehicles. Flexibility is of paramount importance because, when applied to wires and cables, it is not just wrapped in a spiraling motion, but at branching points, plugs or cords
Befestigungsclipsen auch faltenfrei kurvenflexibel gewickelt werden muss. Darüber hinaus ist erwünscht, dass das Wickelband den Kabelstrang elastisch zusammenzieht. Das erfindungsgemäße Wickelband ist ebenfalls für andere Anwendungen geeignet wie zum Beispiel zur Abdichtung von Lüftungsrohren im Klimabau, da die hohe Flexibilität eine gute Anschmiegsamkeit an Nieten, Sicken und Falzen sichert. Diese mechanischenFixing clips must also be wrinkle-free curve-flexible wound. In addition, it is desirable that the winding tape elastically contracts the wire harness. The wrapping tape according to the invention is also suitable for other applications such as for the sealing of ventilation pipes in climatic degradation, since the high flexibility ensures good conformability to rivets, beads and folds. This mechanical
Eigenschaften können nur von einem weichen flexiblen Wickelband erreicht werden. DieProperties can only be achieved by a soft, flexible wrapping tape. The
Aufgabe, die nötige Flexibilität durch Vermeidung des Zusatzes größerer Mengen an Flammschutzmitteln zu erreichen, wird erfindungsgemäß gelöst. Den heutigen arbeitshygienischen und ökologischen Anforderungen wird Rechnung getragen, indem auf den Einsatz halogenhaltiger Rohstoffe verzichtet wird. Die Halogenfreiheit ist für die thermische Verwertung von Abfällen, die solche Wickelbänder ent- halten, von außerordentlicher Bedeutung (zum Beispiel Müllverbrennung der Kunststofffraktion vom Fahrzeugrecycling) aber auch bei Kabel- oder Gebäudebränden, da keine toxischen Rauchgase entstehen.Task to achieve the necessary flexibility by avoiding the addition of larger amounts of flame retardants is achieved according to the invention. The current occupational hygiene and ecological requirements are taken into account by dispensing with the use of halogen-containing raw materials. The absence of halogen is of extreme importance for the thermal utilization of waste containing such winding tapes (for example waste incineration of the plastic fraction from vehicle recycling), but also in cable or building fires, since no toxic fumes are produced.
Im Zuge der immer komplizierter werdenden Elektronik und der steigenden Zahl von elektrischen Verbrauchern in den Automobilen werden auch die Leitungssätze immer komplexer. Bei steigenden Querschnitten der Kabelbäume wird die induktive Erhitzung immer größer, während die Wärmeableitung abnimmt. Dadurch steigen die Anforderungen an die Wärmebeständigkeit der verwendeten Materialien. Die standardmäßig verwendeten PVC-Materialien für die Wickelklebebänder stoßen hier an ihre Grenzen. Auch dieses Problem kann nunmehr als gelöst angesehen werden.In the course of increasingly complicated electronics and the increasing number of electrical consumers in automobiles, the wiring harnesses are becoming ever more complex. With increasing cross sections of the harnesses, the inductive heating is getting larger, while the heat dissipation decreases. This increases the requirements for the heat resistance of the materials used. The standard PVC materials used for the winding tapes are reaching their limits here. This problem can now be considered solved.
PrüfmethodenTest Methods
Die Messungen werden bei einem Prüfklima von 23 ± 1 0C und 50 ± 5 % rel. Luftfeuchte durchgeführt.The measurements are rel under test conditions of 23 ± 1 0 C and 50 ± 5%. Humidity carried out.
Der Kristallitschmeizpunkt (Tcr) wird mit DSC nach ISO 3146 ermittelt. Da frisch verarbeitete TPUs einen extrem breiten Schmelzbereich aufweisen, weil sie sich noch nicht im thermodynamischen Endzustand der Kristallisation befinden, werden die Proben vor Bestimmung des Kristallitschmelzpunktes 24 Stunden bei 140 0C getempert.The crystallite melting point (T cr ) is determined by DSC according to ISO 3146. Since freshly processed TPUs have an extremely wide melting range because they are not already in thermodynamic final stage of crystallization, the samples before determining the crystallite are annealed for 24 hours at 140 0 C.
Die Shore A- und Shore D-Härte werden nach ISO 868 ermittelt.The Shore A and Shore D hardness are determined according to ISO 868.
Die Hydrolysebeständigkeit wird durch Lagerung der Probe in warmem destilliertem Wasser ermittelt. Nach 1000 Stunden bei 80 °C wird die Probe 24 Stunden bei 80 0C im Vakuum getrocknet und anschließend die Abnahme der Reißfestigkeit gegenüber dem Frischzustand bestimmt. Wenn die Reißfestigkeit weniger als 50 % abgenommen hat, ist der Test bestanden (P, passed), und wenn sie mindestens um 50 % abgenommen hat, ist der Test nicht bestanden (NP, not passed).The hydrolysis resistance is determined by storage of the sample in warm distilled water. After 1000 hours at 80 ° C, the sample is dried for 24 hours at 80 0 C in a vacuum and then determines the decrease in tear strength compared to the fresh state. If the tear strength has decreased less than 50%, is the test passed (P, passed), and if it has decreased by at least 50%, the test is failed (NP, not passed).
Das Zugdehnungsverhalten des Wickelbandes wird an Prüflingen vom Typ 2 (rechteckige 150 mm lange und nach Möglichkeit 15 mm breite Prüfstreifen) nach DIN EN ISO 527-The tensile elongation behavior of the winding band is measured on type 2 test specimens (rectangular 150 mm long and, if possible, 15 mm wide test strips) according to DIN EN ISO 527-
3/2/300 mit einer Prüfgeschwindigkeit von 300 mm/min, einer Einspannlänge 100 mm und einer Vorkraft von 0,3 N/cm ermittelt. Im Fall von Mustern mit rauen Schnittkanten sind die Kanten mit einer scharfen Klinge vor dem Zugversuch zu besäumen. Das3/2/300 at a test speed of 300 mm / min, a clamping length 100 mm and a pre-load of 0.3 N / cm determined. In the case of patterns with rough cut edges, the edges should be trimmed with a sharp blade before the tensile test. The
Zugdehnungsverhalten wird, wenn nicht anders angegeben, in Maschinenrichtung (MD, Laufrichtung) geprüft. Die Kraft wird in N/Streifenbreite und die Bruchdehnung in % ausgedrückt. Die Prüfergebnisse, insbesondere die Bruchdehnung (Reißdehnung), sind durch eine hinreichende Zahl von Messungen statistisch abzusichern.Tensile elongation behavior is tested in the machine direction (MD, direction of travel) unless otherwise specified. The force is expressed in N / stripe width and the elongation at break in%. The test results, in particular the elongation at break (elongation at break), must be statistically verified by a sufficient number of measurements.
Die Klebkräfte werden bei einem Abzugswinkel von 180° nach AFERA 4001 an (nach Möglichkeit) 15 mm breiten Teststreifen bestimmt. Hierbei werden Stahlplatten nach AFERA-Norm als Prüfuntergrund verwendet soweit kein anderer Haftgrund genannt ist.Adhesive forces are determined at a deduction angle of 180 ° according to AFERA 4001 on (if possible) 15 mm wide test strips. In this case, steel plates according to the AFERA standard are used as the test substrate unless another primer is mentioned.
Die Dicke der Folie wird nach DIN 53370 bestimmt (Eine eventuelle Haftklebstoffschicht wird von der gemessenen Gesamtdicke abgezogen).The thickness of the film is determined according to DIN 53370 (a possible pressure-sensitive adhesive layer is subtracted from the measured total thickness).
Die Holding Power wird nach der PSTC 107 (10/2001) bestimmt, wobei das Gewicht 20 N beträgt und die Maße der Verklebungsfläche 20 mm in der Höhe und 13 mm in der Breite beträgt.The Holding Power is determined according to PSTC 107 (10/2001), whereby the weight is 20 N and the dimensions of the bonding surface are 20 mm in height and 13 mm in width.
Die Abrollkraft wird bei 300 mm/min nach DIN EN 1944 gemessen.The unwind force is measured at 300 mm / min according to DIN EN 1944.
Die Handeinreißbarkeit lässt sich nicht in Zahlen ausdrücken, auch wenn Bruchkraft, Bruchdehnung und Schlagzugzähigkeit (alles längs gemessen) von wesentlichem Ein- fluss sind.The hand tearability can not be expressed in numbers even though breaking strength, elongation at break, and tensile toughness (all measured longitudinally) are of substantial influence.
Bewertung:Rating:
+++ = sehr leicht, - ++ = gut,+++ = very easy, - ++ = good,
+ = noch verarbeitbar, - = schwer verarbeitbar, — = nur mit hohem Kraftaufwand abreißbar, die Enden sind unsauber,+ = still processable, - = difficult to process, - = can only be torn off with great effort, the ends are unclean,
— = nicht verarbeitbar- = not processable
Das Brandverhalten wird nach FMVSS 302 (waagerechte Probe) beziehungsweise ASTM D 568 (senkrechte Probe) gemessen. Bei FMVSS 302 liegt die Haftkleberbeschichtung nach oben. Diese Methoden erlauben auch eine Bestimmung der Brandgeschwindigkeit brennbarer Proben. Es wird lediglich beurteilt, ob die Probe bis zum Erreichen der 2. Marke (Endmarke) brennt (not passed) oder vorher von selbst verlöscht (passed). Die MVSS 302 (Motor Vecile Safety Standard, US) wurde auch zu einer ISO-Norm weiterentwickelt (ISO 3795).The fire behavior is measured according to FMVSS 302 (horizontal sample) or ASTM D 568 (vertical sample). For FMVSS 302, the pressure-sensitive adhesive coating is up. These methods also allow determination of the burning rate of flammable samples. It is only judged whether the sample burns (not passed) until the second mark (end mark) is reached, or passes by itself before it (passed). The MVSS 302 (Engine Vecile Safety Standard, US) has also been further developed into an ISO standard (ISO 3795).
Die Temperaturbeständigkeit wird nach zwei Methoden bestimmt. Das Wickelband wird zuerst auf eine silikonisierte Polyesterfolie verklebt und in der Wärme gelagert. Nach Ablauf der Prüfzeit wird die Probe 30 min bei 23 0C abgekühlt. Beim Wärmebeständigkeitstest wird nach 312 Stunden Lagerung bei 140 °C geprüft ob die Bruchdehnung noch mindestens 100 % beträgt. Die Prüfung der Kurzzeithitzebeständigkeit erfolgt durch 30 Minuten Lagerung der Probe bei 170 0C, anschließender Wicklung von mindestens 3 Windungen bei 50 %-iger Überlappung um einen Dorn von 10 mm Durchmesser und anschließender Beurteilung, ob das Muster Beschädigungen (zum Beispiel Risse, geschmolzene Stellen) aufweist.The temperature resistance is determined by two methods. The wrapping tape is first glued to a siliconized polyester film and stored in the heat. After the test time, the sample is cooled for 30 min at 23 0 C. The heat resistance test after 312 hours storage at 140 ° C is tested whether the elongation at break is still at least 100%. The short-time heat resistance is carried out by 30 minutes the sample was stored at 170 0 C, followed by winding of at least 3 turns at 50% overlap around a mandrel of 10 mm diameter and subsequent judgment of whether the pattern damage (for example cracks, melted spots ) having.
Beim Kältetest wird der oben beschriebene Probekörper in Anlehnung an ISO/DIS 6722 4 Stunden auf -40 °C abgekühlt und die Probe von Hand auf einen Dorn von 5 mm Durchmesser gewickelt. Die Muster werden visuell auf Fehler (Risse) im Klebeband geprüft.In the cold test, the test specimen described above is cooled for 4 hours to -40 ° C. in accordance with ISO / DIS 6722 and the sample is hand-wound onto a 5 mm diameter mandrel. The samples are checked visually for defects (cracks) in the adhesive tape.
Die Durchschlagspannung wird nach ASTM D 1000 gemessen. Als Zahl wird der höchste Wert genommen, dem das Muster bei dieser Spannung eine Minute standhält. Diese Zahl wird auf eine Probendicke von 100 μm umgerechnet.The breakdown voltage is measured according to ASTM D 1000. The number is taken to be the highest value that the sample withstands at this voltage for one minute. This number is converted to a sample thickness of 100 μm.
Beispiel:Example:
Eine Probe von 200 μm Dicke hält nach einer Minute eine maximale Spannung von 6 kV stand, die berechnete Durchschlagspannung beträgt 3 kV/100 μm. Der Fogging-Wert wird nach DIN 75201 A ermittelt.A sample of 200 μm thickness withstands a maximum voltage of 6 kV after one minute, the calculated breakdown voltage is 3 kV / 100 μm. The fogging value is determined according to DIN 75201 A.
Folgende Beispiele sollen die Erfindung erläutern, ohne deren Umfang zu beschränken.The following examples are intended to illustrate the invention without limiting its scope.
Erläuterung der in den Beispielen eingesetzten PU-RohstoffeExplanation of the PU raw materials used in the examples
Terathane™ 1000: Polyether mit einem Molekulargewicht von Mn = 1000 Dalton (DuPont) Terathane™ 650: Polyether mit einem Molekulargewicht von Mn = 650 Dalton (DuPont) MDI: 4,4'-Diphenylmethandiisocyanat Exolit™ OP 560: Flammschutzmittel auf Basis Diol-Phosphonat mit zerewitinoffaktivenTerathane ™ 1000: Polyethers having a molecular weight of M n = 1000 Daltons (DuPont) Terathane ™ 650: Polyethers having a molecular weight of M n = 650 Daltons (DuPont) MDI: 4,4'-diphenylmethane diisocyanate Exolit ™ OP 560: Flame retardant based Diol phosphonate with Zerewitinoffaktiv
Wasserstoffatomen (Clariant GmbH)Hydrogen atoms (Clariant GmbH)
NORD-MIN™ MC-25J: Melamincyanurat (Nordmann-Rassmann) Fyrolflex™ RDP: Resorcinolphosphatoligomer (Akzonobel) der FormelNORD-MIN ™ MC-25J: melamine cyanurate (Nordmann-Rassmann) Fyrolflex ™ RDP: resorcinol phosphate oligomer (Akzonobel) of the formula
BDO: 1 ,4-ButandiolBDO: 1, 4-butanediol
Irganox™ 1010: Tetrakis(methylen-(3J5-di-tert.-butyl-4-hydroxycinnamate))-methan (CibaIrganox ™ 1010 Tetrakis (methylene (3 J 5-di-tert-butyl-4-hydroxycinnamate)) - methane (Ciba
Specialty Chemicals)Specialty Chemicals)
Irganox™ PS 800: Dilauryl thiodipropionate (Ciba Specialty Chemicals)Irganox ™ PS 800: Dilauryl thiodipropionate (Ciba Specialty Chemicals)
Elastollan™ Konz 952: Masterbatch Irganox™ 1010 in TPU (Elastogran)Elastollan ™ Konz 952: Masterbatch Irganox ™ 1010 in TPU (Elastogran)
Licowax™ C: Trennmittel (Clariant Würtz GmbH)Licowax ™ C: release agent (Clariant Würtz GmbH)
Disflamoll™ DPK: Flammschutzmittel Diphenylkresylphosphat (Bayer AG)Disflamoll ™ DPK: flame retardant diphenyl cresyl phosphate (Bayer AG)
Stabaxol™ KE 9463: Hydrolyseschutzmittel auf Basis eines aromatischen CarbodiimidsStabaxol ™ KE 9463: Hydrolysis protection based on an aromatic carbodiimide
(Rheinchemie) Carbodilite™ V-04B: Hydrolyseschutzmittel auf Carbidiimidbasis (Nisshinbo Industries) Beispiel 1(Rheinchemie) Carbodilite ™ V-04B: Hydrolysis Protection on a Carbidiimide Basis (Nisshinbo Industries) example 1
Ein Gemisch aus 1045 kg Terathane™ 1000, 6,3 kg Irganox™ 1010, 1000 kg NORD- MIN ™ MC-25J und 10 kg Licowax™ C wurde unter Rühren mit einem Flügelrührer mit einer Drehzahl von 500 UpM auf 160 0C hochgeheizt, danach wurden 713 kg MDI zugegeben. Nach Erreichen der maximalen Reaktionstemperatur wurde 30 s nachgerührt, wonach 125 kg BDO und 100 kg Exolit™ OP 560 zugegeben wurden. Anschließend wurde 100 s gerührt, wonach das TPU ausgegossen wurde. Zum Schluss wurde das Material 30 min bei 80 0C nachbehandelt.A mixture of 1045 kg Terathane ™ 1000, 6.3 kg Irganox ™ 1010 1000 kg NORTH MIN ™ MC-25J and 10 kg Licowax ™ C was heated with stirring with a paddle at a rotational speed of 500 rpm to 160 0 C, then 713 kg of MDI were added. After reaching the maximum reaction temperature, stirring was continued for 30 seconds, after which 125 kg of BDO and 100 kg of Exolit ™ OP 560 were added. The mixture was then stirred for 100 s, after which the TPU was poured out. Finally, the material was post-treated at 80 ° C. for 30 minutes.
Das fertige TPU wurde geschnitten, granuliert und in trockenem Zustand einem Compounder zugeführt. Dieser speiste den Spalt eines Kalanders vom Typ „Inverted L", die Verarbeitungstemperaturen lagen um 220 0C. Mit Hilfe der Kalanderwalzen wurde ein Film mit glatter Oberfläche einer Dicke von 80 μm ausgeformt.The finished TPU was cut, granulated and fed to a compounder in the dry state. This fed the nip of an inverted type calender, the processing temperatures were around 220 0 C. Using the calender rolls, a film with a smooth surface of a thickness of 80 microns was formed.
Der Film wurde eine Woche gelagert, auf der Beschichtungsanlage mit Walzen bei 60 0C zur Verbesserung der Planlage egalisiert und nach einer Coronabehandlung auf der einen Seite mit einer Releaseschicht versehen und auf der anderen mit einem wässrigen Acrylathaftkleber (Primal PS 83 D von Rohm und Haas und Zusatz von 5 % Hostasinschwarz (Farbpräparation von Clariant) mittels eines Rakels mit einem Auftragsgewicht von 24 g/m2 versehen. Das fertige Wickelband wurde zu Stangen mit 33 m Lauflänge auf 1 -Zoll-Kern (25 mm) gewickelt. Das Schneiden erfolgte durch Abstechen der Stangen mittels feststehender Klinge mit nicht sehr spitzem Winkel (straight knife) in 29 mm breite Rollen.The film was stored for one week, leveled on the coater with rolls at 60 ° C. to improve the flatness, and provided with a release layer after corona treatment on one side and on the other with an aqueous acrylate pressure-sensitive adhesive (Primal PS 83 D from Rohm and Haas and addition of 5% Hostasin Black (Clariant color preparation) by means of a doctor blade at a coating weight of 24 g / m 2. The finished wrapping tape was wound into bars of 33 m in length on a 1-inch core (25 mm) by cutting off the bars with a fixed blade with a not very acute angle (straight knife) in 29 mm wide rolls.
Beispiel 2Example 2
Analog Beispiel 1 wurde aus MDI und Terathane™ 1000 im Molverhältnis 2,5 : 1 ein Prepolymer in Gegenwart von Irganox™ 1010, NORD-MIN ™ MC-25J und Fyrolflex™ RDP hergestellt und mit 95 Mol-% der äquivalenten Menge BDO umgesetzt. Die Gehalte der Additive sind (bezogen auf 100 phr TPU-Polymer) 0,3 phr Irganox™ 1010, 23 phr NORD-MIN ™ MC-25J und 4 phr Fyrolflex™ RDP. Das fertige TPU wurde geschnitten, granuliert und unter Zusatz von 5 % Masterbatch weiß und 5 % Stabaxol™ KE 9463 bei einer Temperatur von 180 bis 200 0C zu einer 100 μm Blasfolie verarbeitet.Analogously to Example 1, a prepolymer was prepared from MDI and Terathane ™ 1000 in the molar ratio 2.5: 1 in the presence of Irganox ™ 1010, NORD-MIN ™ MC-25J and Fyrolflex ™ RDP and reacted with 95 mole% of the equivalent amount of BDO. The contents of the additives are 0.3 phr Irganox ™ 1010 (based on 100 phr TPU polymer), 23 phr NORD-MIN ™ MC-25J and 4 phr Fyrolflex ™ RDP. The finished TPU was cut, granulated and processed with the addition of 5% Masterbatch white and 5% Stabaxol ™ KE 9463 at a temperature of 180 to 200 0 C to a 100 micron blown film.
Die Trägerfolie wurde einer einseitigen Flammvorbehandlung unterzogen und nach 10 Tagen Lagerung mit Acronal DS 3458 mittels eines Walzenauftragswerks bei 50 m/min beschichtet. Die Temperaturbelastung des Trägers wurde durch eine gekühlte Gegendruckwalze reduziert. Der Masseauftrag betrug ca. 35 g/m2. Eine geeignete Vernetzung wurde in-line vor der Aufwicklung durch Bestrahlung mit einer UV-Anlage erreicht, die mit 6 Mitteldruck-Hg-Lampen ä 120 W/cm ausgestattet ist. Die bestrahlte Bahn wurde zu Stangen mit 33 m Lauflänge auf 1 1/4-Zoll-Kem (31 mm) gewickelt. Das Schneiden erfolgte durch Abstechen der Stangen mittels feststehender Klinge (straight knife) in 25 mm breite Rollen.The carrier film was subjected to a one-sided flame treatment and, after 10 days of storage, coated with Acronal DS 3458 by means of a roll applicator at 50 m / min. The temperature load on the carrier was reduced by a cooled counterpressure roller. The application was about 35 g / m 2 . A suitable cross-linking was achieved in-line before winding by irradiation with a UV system equipped with 6 medium-pressure Hg lamps at 120 W / cm. The irradiated web was wound into rods of 33 m run length on 1 1/4 inch core (31 mm). The cutting was done by cutting off the rods by means of a fixed blade (straight knife) in 25 mm wide rolls.
Beispiel 3Example 3
Analog Beispiel 1 wurde aus MDI und Terathane™ 650 im Molverhältnis 2,2 : 1 ein Prepolymer in Gegenwart von Irganox™ 1010 und Melaminpolyphosphat (Dayang Chemicals) hergestellt und mit 95 Mol-% der äquivalenten Menge BDO umgesetzt. Am Ende der Reaktion wurde Carbodilite™ V-04B zugesetzt. Die Gehalte der Additive sind (bezogen auf 100 phr TPU-Polymer) 0,3 phr Irganox™ 1010, 27 phr Melaminpolyphosphat und 1 phr Carbodilite™ V-04B.Analogously to Example 1, a prepolymer was prepared from MDI and Terathane ™ 650 in a molar ratio of 2.2: 1 in the presence of Irganox ™ 1010 and melamine polyphosphate (Dayang Chemicals) and reacted with 95 mol% of the equivalent amount of BDO. At the end of the reaction Carbodilite ™ V-04B was added. The contents of the additives are 0.3 phr of Irganox ™ 1010 (based on 100 phr of TPU polymer), 27 phr of melamine polyphosphate and 1 phr of Carbodilite ™ V-04B.
Das fertige TPU wurde geschnitten, granuliert und unter Zusatz von 5 Gew.-% eines Schwarzbatches und 5 Gew.-% eines Hydrolyseschutzmittelmasterbatches (KE 9463 von Rhein-Chemie = 20 % Stabaxol™ P200 in TPU) im Cast-Verfahren (Flachdüse mit Chiliroll) zu einer 70 μm dicken Folie ausgeformt.The finished TPU was cut, granulated and added with the addition of 5% by weight of a blackbatch and 5% by weight of a hydrolysis protection masterbatch (KE 9463 from Rhein-Chemie = 20% Stabaxol ™ P200 in TPU) in the cast process (flat die with Chiliroll ) formed into a 70 micron thick film.
Eine Seite wurde mit einem Primer aus 5 Teilen MDi, 45 Teilen Naturkautschuk und 50 Teilen Cyclokautschuk mit 0,6 g/m2 beschichtet und getrocknet. Die Klebmassenbeschichtung wurde direkt auf die Haftvermittlerschicht mittels Kommarakel mit einem Auftragsgewicht von 18 g/m2 (bezogen auf Trockensubstanz) aufgetragen. Die Klebmasse bestand aus einer Lösung einer Naturkautschukklebemasse in n-Hexan mit einem Feststoffgehalt von 30 Gewichtsprozent. Diese bestand aus 50 Teilen Naturkautschuk, 10 Teilen Zinkoxid, 3 Teilen Kolophoniumharz, 6 Teilen Alkylphenoiharz, 17 Teilen Terpenphenolharz, 12 Teilen Poly-ß-Pinenharz, 1 Teil Antioxidant Irganox 1076 und 2 Teilen mineralischem Öl. Die Trocknung des Nachstriches erfolgte im Trockenkanal bei 100 0C. Die Folie wurde unmittelbar dahinter in einem Verbundschneidautomaten mit einem Messerbalken mit scharfen Klingen in 19 mm Abstand zu Rollen auf Standardkiebebandkemen (3 Zoll) geschnitten.One side was coated with a primer of 5 parts MDi, 45 parts natural rubber and 50 parts of cyclo rubber at 0.6 g / m 2 and dried. The adhesive coating was applied directly to the primer layer by means of a comma bar with a coating weight of 18 g / m 2 (based on dry matter). The adhesive consisted of a solution of a natural rubber adhesive in n-hexane with a solids content of 30 percent by weight. This consisted of 50 parts Natural rubber, 10 parts zinc oxide, 3 parts rosin resin, 6 parts alkylphenol resin, 17 parts terpene phenolic resin, 12 parts poly-β-pinene resin, 1 part antioxidant Irganox 1076 and 2 parts mineral oil. The drying This subsequent in a drying tunnel at 100 0 C. The film was immediately cut in behind a composite cutting machine with a knife bar with sharp blades at 19 mm distance from rolling on Standardkiebebandkemen (3 inches).
Beispiel 4Example 4
Die Herstellung erfolgte analog Vergleichsbeispiel 2, wobei Antioxidant und Hydrolyseschutzmittel über Masterbatche bei der Extrusion hinzufügt wurden, es handelte sich um 1 ,5 % Elastollan™ Konz 952 und 11 % Stabaxol™ KE 9463.The preparation was carried out analogously to Comparative Example 2, wherein antioxidants and hydrolysis protectants were added via masterbatches during the extrusion, which comprised 1.5% Elastollan ™ Konz 952 and 11% Stabaxol ™ KE 9463.
Vergleichsheispiel 1Comparative Example 1
Die Herstellung des Wickelbandes erfolgte analog Beispiel 1 , die TPU-Folie bestand jedoch aus T-8375 (thermoplastisches Polyesterpolyurethan mit Shore A-Härte von 75 von DIC Bayer Polymer). Bei der gleichen Verarbeitungstemperatur klebte die Schmelze so stark an den Kalanderwalzen, dass keine Folie hergestellt werden konnte. Nach Senkung der Temperatur auf 160 0C konnte eine Folie abgezogen werden. Das T-8375 wurde gewählt, da es für die Beispiele der JP 2005 264 112 A (Klebeband aus Copolyamid modifiziert mit TPU und einem zugemischten Flammschutzmittel auf Stickstoffbasis) eingesetzt wurde.The winding tape was produced analogously to Example 1, but the TPU film consisted of T-8375 (thermoplastic polyester polyurethane with Shore A hardness of 75 from DIC Bayer Polymer). At the same processing temperature, the melt adhered so strongly to the calender rolls that no film could be produced. After lowering the temperature to 160 0 C, a film could be removed. The T-8375 was chosen because it was used for the examples of JP 2005 264 112 A (copolyamide-modified adhesive tape with TPU and a nitrogen-based compound flame retardant).
Vergleichsbeispiel 2Comparative Example 2
Die Herstellung des Wickelbandes sollte analog Vergleichsbeispiel 1 erfolgen, die TPU- Folie sollte jedoch aus 100 phr T-8375 und 10 phr Reofos 65 (isopropyliertes Triarylphosphat von Great Lakes) als nicht eingebautem phosphorhaltigem Flammschutzmittel. Wegen sehr starkem Kleben an den Kalanderwalzen gelang es jedoch nicht, trotz Variation der Verarbeitungsbedingungen eine Folie zu erhalten. Die Folie ließ sich auch nicht im Blasprozess analog Beispiel 2 wegen mangelnder Schmelzefestigkeit verarbeiten. Erst mit dem Cast-Prozess analog Beispiel 3 konnte eine 80 μm starke farblose Folie erzeugt werden. Diese wurden dann analog Beispiel 1 mit Haftkleber beschichtet.The preparation of the winding tape should be carried out analogously to Comparative Example 1, the TPU film should, however, from 100 phr T-8375 and 10 phr Reofos 65 (isopropylated triaryl phosphate from Great Lakes) as a non-incorporated phosphorus-containing flame retardant. Because of very strong sticking to the calender rolls, however, it was not possible to obtain a film despite varying the processing conditions. The film could not be in the blowing process analogous to Example 2 due to lack of Process melt strength. Only with the casting process analogous to Example 3 was it possible to produce a colorless film 80 μm thick. These were then coated analogously to Example 1 with pressure-sensitive adhesive.
Vergleichsbeispiel 3Comparative Example 3
Die Herstellung des Wickelbandes erfolgte analog Beispiel 1 , die TPU-Folie entsprach in ihrer Zusammensetzung jedoch dem Beispiel 2 der JP 2005 264 112 A: • 40 phr T-8375,The production of the winding tape was carried out analogously to Example 1, the TPU film corresponded in its composition but the example 2 of JP 2005 264 112 A: • 40 phr T-8375,
• 60 phr CM6541X3 (Copolyamid aus ε-Aminocapronsäure und ω- Aminolaurinsäure mit Kristallitschmelzpunkt 133 °C von Toray Industries),60 phr of CM6541X3 (copolyamide of ε-aminocaproic acid and ω-aminolauric acid having a crystallite melting point of 133 ° C. from Toray Industries),
• 10 phr Hydrazodicarbonamid,• 10 phr of hydrazodicarbonamide,
• 40 phr NORD-MIN™ MC-25J, • 1 phr Licowax™ OP,• 40 phr NORD-MIN ™ MC-25J, • 1 phr Licowax ™ OP,
® 10 phr Calciumcarbonat.® 10 phr calcium carbonate.
Bei einer Verarbeitungstemperatur analog Beispiel 1 klebte die Schmelze an den Kalanderwalzen. Sie wies Blasen und Löcher auf (vermutlich durch Zerfall des Hydrazodicarbonamids), nach Senkung der Temperatur auf 160 bis 170 0C konnte eine Folie hergestellt werden. Die Dicke war jedoch analog Beispiel 1 80 μm statt 0,2 mm wie in der japanischen Schrift.At a processing temperature similar to Example 1, the melt adhered to the calender rolls. It had bubbles and holes (presumably by decomposition of Hydrazodicarbonamids), after lowering the temperature to 160 to 170 0 C, a film could be produced. However, the thickness was similar to Example 1 80 microns instead of 0.2 mm as in Japanese writing.
Vergleichsbeispiel 4Comparative Example 4
Zur Beschichtung wurde eine konventionelle Folie für Isolierband von Singapore Plastic Products Pte. unter der Bezeichnung F2104S eingesetzt. Die Folie enthielt nach Herstellerangaben ca. 100 phr (parts per hundred resin) Suspensions-PVC mit dem K-Wert 63 bis 65, 43 phr DOP (Di-2-ethylhexylphthalat), 5 phr dreibasisches Bleisulfat (TLB, Stabili- sator), 25 phr gemahlene Kreide (Bukit Batu Murah Malaysia mit Fettsäure-Coating), 1 phr Furnaceruß. und 0,3 phr Stearinsäure (Gleitmittel). Die Nenndicke betrug 100 μm, und die Oberfläche war glatt aber matt.For coating, a conventional film for insulating tape of Singapore Plastic Products Pte. used under the name F2104S. According to the manufacturer, the film contained about 100 phr (parts per hundred resin) suspension PVC with a K value of 63 to 65, 43 phr DOP (di-2-ethylhexyl phthalate), 5 phr tribasic lead sulphate (TLB, stabilizer), 25 phr ground chalk (Bukit Batu Murah Malaysia with fatty acid coating), 1 phr of furnace black. and 0.3 phr of stearic acid (lubricant). The nominal thickness was 100 μm and the surface was smooth but dull.
Auf der einen Seite wurde der Primer Y01 von Four Pillars Enterprise/Taiwan aufgetragen (analytisch acrylatmodifizierter SBR-Kautschuk in Toluol) und darauf 23 g/m2 des Klebstoffs IV9 von Four Pillars Enterprise/Taiwan (analytisch feststellbare Hauptkomponente: SBR und Naturkautschuk, Terpenharz und Alkylphenolharz in Toluol). Die Folie wurde unmittelbar nach dem Trockner mit einem Messerbalken mit scharfen Klingen in 25 mm Abstand in einem Automaten zu Rollen geschnitten.On the one hand, the primer Y01 was applied by Four Pillars Enterprise / Taiwan (analytically acrylate-modified SBR rubber in toluene) and thereon 23 g / m 2 the adhesive IV9 from Four Pillars Enterprise / Taiwan (analytically detectable major component: SBR and natural rubber, terpene resin and alkylphenol resin in toluene). The film was cut into rolls immediately after the dryer with a knife bar with sharp blades at a distance of 25 mm in an automatic machine.
Vergleichsbeispiel 5Comparative Example 5
Analog Beispiel 2 wurden ein TPU-Polymer, eine Folie und ein Wickelband hergestellt, wobei jedoch die Additive wie folgt geändert wurden. Irganox™ 1010 und Fyrolflex™ RDP wurden weggelassen und der Gehalt an NORD-MIN™ MC-25J dafür auf 27 phr erhöht. A TPU polymer, a film and a winding tape were prepared analogously to Example 2, but the additives were changed as follows. Irganox ™ 1010 and Fyrolflex ™ RDP were omitted and the NORD-MIN ™ MC-25J content increased to 27 phr.
ND= not determined (nicht bestimmt), P = passed (erfüllt), NP = not passed (nicht erfüllt)ND = not determined, P = passed, NP = not passed
* an mit Klingen geschnittenen Mustern * on blade-cut patterns
# die Reißkraft liegt unter der Höchstkraft # The tear strength is below the maximum force
Zusammenfassung der Ergebnissesummary of results
Bei Vergleichsbeispiel 2 verschlechtert der Phosphatweichmacher die Fogging-Werte und die Klebkräfte. Vergleichsbeispiel 3 verhält sich ähnlich, vermutlich enthält das sehr weiche TPU (Shore A = 75) einen migrationsfähigen Weichmacher. Am schlechtesten in Bezug auf Fogging ist das Beispiel 4 (mit DOP-Weichmacher).In Comparative Example 2, the phosphate plasticizer deteriorates the fogging values and the bond strengths. Comparative Example 3 behaves similarly, presumably the very soft TPU (Shore A = 75) contains a migratory plasticizer. Worst in fogging is Example 4 (with DOP softener).
Die Reißfestigkeiten sind in allen Fällen akzeptabel. Die Bruchdehnungen der Vergleichsbeispiele liegen relativ hoch, sodass die Handeinreißbarkeit zum Teil verschlechtert wird.The tear strengths are acceptable in all cases. The elongations at break of the comparative examples are relatively high, so that the hand tearability is partly deteriorated.
Die Vergleichsbeispiele sind in zwei Fällen für Anwendungen als Wickelband zu weich.The Comparative Examples are too soft in two cases for wrapping applications.
Die Wärmebeständigkeit bei 140 0C ist bei allen Vergleichsbeispielen schlecht, vermutlich liegt es an fehlendem Antioxidant oder an einer Hydrolyseanfälligkeit. Die nicht gegebene Kurzzeithitzebeständigkeit bei 170 °C liegt neben vermutlich mangelnder oxidativer Beständigkeit (zum Teil Rissbildung) an zu geringem Schmelzpunkt (Proben 1 bis 3 sind zumindest an den Kanten angeschmolzen). Vergleichsbeispiel 4 versagt wegen Weichmacherverdampfung, und Vergleichsbeispiel 5 ist ebenfalls versprödet.The heat resistance at 140 ° C. is poor in all comparative examples, presumably because of the lack of antioxidant or susceptibility to hydrolysis. The lack of short-term heat resistance at 170 ° C is probably presumed lack of oxidative resistance (in part cracking) at too low melting point (samples 1 to 3 are at least melted at the edges). Comparative Example 4 fails because of plasticizer evaporation, and Comparative Example 5 is also embrittled.
Die Hydrolysebeständigkeit ist bei den Vergleichsbeispielen 1 bis 3 unzureichend, was den Fachmann bei einem TPU mit Polyesterpolyol nicht überrascht.The hydrolysis resistance is insufficient in Comparative Examples 1 to 3, which is not surprising to those skilled in a TPU with polyester polyol.
Die Vergleichsbeispiele weisen zum Teil geringe Flammfestigkeit auf (Proben vollständig abgebrannt). Das Vergleichsbeispiel 5 hat überrascht, da die Probe trotz hohen Gehaltes an Flammschutz vollständig abbrennt, wenn auch mit geringer Geschwindigkeit. Bei den Beispielen 1 bis 3 brannten die Proben ebenfalls langsam, aber unter brennendem Abtropfen. Weitere hier nicht dargestellten Vergleichsversuche zeigen, dass, um die Teste zu erfüllen, ein Gehalt Phosphor unbedingt notwendig ist. Mit steigendem Gehalt an Melamin oder Melamincyanurat nimmt zwar die Brandgeschwindigkeit ab, gleichzeitig verringert sich auch das Abtropfen der Schmelze und ab ca. 30 phr nimmt die Brandgeschwindigkeit sogar wieder zu, bis die Proben ab einer kritischen Konzentration vollständig abbrennen. Das Beispiel 4 zeigt, dass wie das Vergleichsbeispiel 2 durch Zugabe von Antioxidant und Hydrolyseschutzmittel gut stabilisiert werden kann. Some of the comparative examples have low flame resistance (samples completely burned off). Comparative Example 5 was surprising since the sample completely burns off, despite the high content of flame retardant, albeit at a low speed. In Examples 1 to 3, the samples also burned slowly but with burning dripping. Further comparative experiments not shown here show that, in order to fulfill the tests, a phosphorus content is absolutely necessary. As the content of melamine or melamine cyanurate increases, the rate of burning decreases, but at the same time the dripping of the melt decreases, and the burning rate even increases again from about 30 phr until the samples completely burn off at a critical concentration. Example 4 shows that like Comparative Example 2 can be well stabilized by adding antioxidant and hydrolysis stabilizer.
Claims
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP06830218A EP1966316A2 (en) | 2005-12-14 | 2006-11-30 | Rolled strip made from tpu film |
JP2008544941A JP2009519366A (en) | 2005-12-14 | 2006-11-30 | Winding tape made of thermoplastic polyurethane (TPU) film |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102005060215.0 | 2005-12-14 | ||
DE102005060215A DE102005060215A1 (en) | 2005-12-14 | 2005-12-14 | Wrap tape made of a TPU film |
Publications (2)
Publication Number | Publication Date |
---|---|
WO2007068598A2 true WO2007068598A2 (en) | 2007-06-21 |
WO2007068598A3 WO2007068598A3 (en) | 2007-11-22 |
Family
ID=37762670
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/EP2006/069114 WO2007068598A2 (en) | 2005-12-14 | 2006-11-30 | Wrapping tape made from tpu film |
Country Status (5)
Country | Link |
---|---|
EP (1) | EP1966316A2 (en) |
JP (1) | JP2009519366A (en) |
CN (1) | CN101331200A (en) |
DE (1) | DE102005060215A1 (en) |
WO (1) | WO2007068598A2 (en) |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2008151892A1 (en) * | 2007-06-13 | 2008-12-18 | Tesa Se | Wrapping tape having a film made of tpu |
WO2012027530A3 (en) * | 2010-08-25 | 2013-05-10 | Bostik, Inc. | Fire extinguishing core |
US10243233B2 (en) | 2012-11-16 | 2019-03-26 | Lg Chem, Ltd. | Swelling tape for filling gap |
CN115746730A (en) * | 2022-12-06 | 2023-03-07 | 海安元京电子科技有限公司 | TPU adhesive tape and application thereof in electronic equipment |
EP3714020B1 (en) * | 2017-11-24 | 2023-09-06 | Tesa Se | Producing a pressure-sensitive adhesive mass on the basis of acrylonitrile-butadiene rubber |
EP3143063B1 (en) | 2014-05-13 | 2024-07-10 | Basf Se | Preparations having thermoplastic polyurethane and a low base number |
Families Citing this family (8)
Publication number | Priority date | Publication date | Assignee | Title |
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DE102008037223A1 (en) * | 2008-08-11 | 2010-02-18 | Tesa Se | Wrap tape made of a TPU film with coextruded release |
CN102507437B (en) * | 2011-10-13 | 2013-10-09 | 宁波大榭开发区综研化学有限公司 | Method for detecting pollution of adhered surface by protection film adhesive tape |
CN106488940A (en) * | 2014-05-13 | 2017-03-08 | 巴斯夫欧洲公司 | The product with low phenol content based on thermoplastic polyurethane |
CN106010395A (en) * | 2016-07-08 | 2016-10-12 | 姚华鹏 | High-temperature-resistant and corrosion-resistant adhesive |
CN106147639A (en) * | 2016-07-08 | 2016-11-23 | 姚华鹏 | Flame retardant type adhesive |
CN106085311A (en) * | 2016-07-08 | 2016-11-09 | 姚华鹏 | high-adhesive adhesive |
CN111234506A (en) * | 2020-03-19 | 2020-06-05 | 保士特(东莞)塑胶制品有限公司 | A kind of degradable plastic fastening glue needle and preparation method thereof |
CN115717038B (en) * | 2022-11-30 | 2024-05-28 | 东莞澳中新材料科技股份有限公司 | High-temperature-resistant swellable adhesive tape |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6726971B1 (en) * | 1999-12-13 | 2004-04-27 | Tyco Adhesives Lp | Thermally stable clear polyurethane adhesive tape |
DE10216078A1 (en) * | 2002-04-11 | 2003-10-23 | Tesa Ag | Soft flame-retardant wrapping film |
DE50305548D1 (en) * | 2002-08-21 | 2006-12-14 | Bayer Materialscience Ag | Thermoplastically processable polyurethanes (TPU) with self-extinguishing properties, a process for their preparation and their use |
DE20306801U1 (en) * | 2003-04-30 | 2003-07-17 | Certoplast Vorwerk & Sohn GmbH, 42285 Wuppertal | Adhesive tape useful in the automobile industry comprises an adhesive coating on a polyurethane film support |
DE10348483A1 (en) * | 2003-10-14 | 2005-06-02 | Tesa Ag | Aging resistant soft wrapping film made of polyolefin |
-
2005
- 2005-12-14 DE DE102005060215A patent/DE102005060215A1/en not_active Withdrawn
-
2006
- 2006-11-30 EP EP06830218A patent/EP1966316A2/en not_active Withdrawn
- 2006-11-30 JP JP2008544941A patent/JP2009519366A/en not_active Withdrawn
- 2006-11-30 WO PCT/EP2006/069114 patent/WO2007068598A2/en active Application Filing
- 2006-11-30 CN CNA2006800471465A patent/CN101331200A/en active Pending
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2008151892A1 (en) * | 2007-06-13 | 2008-12-18 | Tesa Se | Wrapping tape having a film made of tpu |
WO2012027530A3 (en) * | 2010-08-25 | 2013-05-10 | Bostik, Inc. | Fire extinguishing core |
CN103270123A (en) * | 2010-08-25 | 2013-08-28 | 波士胶公司 | Fire extinguishing core |
CN103270123B (en) * | 2010-08-25 | 2015-09-02 | 波士胶公司 | Fire extinguishing core |
AU2011293308B2 (en) * | 2010-08-25 | 2015-11-19 | Bostik, Inc. | Fire extinguishing core |
US10243233B2 (en) | 2012-11-16 | 2019-03-26 | Lg Chem, Ltd. | Swelling tape for filling gap |
EP3143063B1 (en) | 2014-05-13 | 2024-07-10 | Basf Se | Preparations having thermoplastic polyurethane and a low base number |
EP3714020B1 (en) * | 2017-11-24 | 2023-09-06 | Tesa Se | Producing a pressure-sensitive adhesive mass on the basis of acrylonitrile-butadiene rubber |
CN115746730A (en) * | 2022-12-06 | 2023-03-07 | 海安元京电子科技有限公司 | TPU adhesive tape and application thereof in electronic equipment |
Also Published As
Publication number | Publication date |
---|---|
WO2007068598A3 (en) | 2007-11-22 |
JP2009519366A (en) | 2009-05-14 |
EP1966316A2 (en) | 2008-09-10 |
DE102005060215A1 (en) | 2007-06-21 |
CN101331200A (en) | 2008-12-24 |
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