WO2018130193A1 - Composite de caoutchouc, procédé de traitement, applications, et élément d'étanchéité de condensateur comprenant un composite - Google Patents
Composite de caoutchouc, procédé de traitement, applications, et élément d'étanchéité de condensateur comprenant un composite Download PDFInfo
- Publication number
- WO2018130193A1 WO2018130193A1 PCT/CN2018/072363 CN2018072363W WO2018130193A1 WO 2018130193 A1 WO2018130193 A1 WO 2018130193A1 CN 2018072363 W CN2018072363 W CN 2018072363W WO 2018130193 A1 WO2018130193 A1 WO 2018130193A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- rubber
- parts
- ethylene
- rubber composition
- crosslinking agent
- Prior art date
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- 229920001971 elastomer Polymers 0.000 title claims abstract description 99
- 239000005060 rubber Substances 0.000 title claims abstract description 99
- 239000003990 capacitor Substances 0.000 title claims abstract description 15
- 238000003672 processing method Methods 0.000 title claims abstract description 7
- 238000007789 sealing Methods 0.000 title abstract description 7
- 239000002131 composite material Substances 0.000 title abstract 7
- -1 polyethylene, ethylene propylene Polymers 0.000 claims abstract description 82
- 239000004698 Polyethylene Substances 0.000 claims abstract description 73
- 229920000573 polyethylene Polymers 0.000 claims abstract description 72
- 239000003431 cross linking reagent Substances 0.000 claims abstract description 51
- 229920002943 EPDM rubber Polymers 0.000 claims abstract description 32
- 239000006229 carbon black Substances 0.000 claims abstract description 22
- 239000012763 reinforcing filler Substances 0.000 claims abstract description 11
- 239000000203 mixture Substances 0.000 claims description 48
- 238000004132 cross linking Methods 0.000 claims description 44
- 238000002156 mixing Methods 0.000 claims description 42
- 229920000181 Ethylene propylene rubber Polymers 0.000 claims description 40
- VGGSQFUCUMXWEO-UHFFFAOYSA-N Ethene Chemical compound C=C VGGSQFUCUMXWEO-UHFFFAOYSA-N 0.000 claims description 36
- 239000005977 Ethylene Substances 0.000 claims description 36
- 238000004073 vulcanization Methods 0.000 claims description 35
- XMNIXWIUMCBBBL-UHFFFAOYSA-N 2-(2-phenylpropan-2-ylperoxy)propan-2-ylbenzene Chemical compound C=1C=CC=CC=1C(C)(C)OOC(C)(C)C1=CC=CC=C1 XMNIXWIUMCBBBL-UHFFFAOYSA-N 0.000 claims description 30
- KOMNUTZXSVSERR-UHFFFAOYSA-N 1,3,5-tris(prop-2-enyl)-1,3,5-triazinane-2,4,6-trione Chemical compound C=CCN1C(=O)N(CC=C)C(=O)N(CC=C)C1=O KOMNUTZXSVSERR-UHFFFAOYSA-N 0.000 claims description 28
- XLOMVQKBTHCTTD-UHFFFAOYSA-N Zinc monoxide Chemical compound [Zn]=O XLOMVQKBTHCTTD-UHFFFAOYSA-N 0.000 claims description 24
- 238000012545 processing Methods 0.000 claims description 19
- 239000004927 clay Substances 0.000 claims description 17
- 239000011159 matrix material Substances 0.000 claims description 17
- 229910052799 carbon Inorganic materials 0.000 claims description 16
- 235000021355 Stearic acid Nutrition 0.000 claims description 14
- QIQXTHQIDYTFRH-UHFFFAOYSA-N octadecanoic acid Chemical compound CCCCCCCCCCCCCCCCCC(O)=O QIQXTHQIDYTFRH-UHFFFAOYSA-N 0.000 claims description 14
- OQCDKBAXFALNLD-UHFFFAOYSA-N octadecanoic acid Natural products CCCCCCCC(C)CCCCCCCCC(O)=O OQCDKBAXFALNLD-UHFFFAOYSA-N 0.000 claims description 14
- 239000008117 stearic acid Substances 0.000 claims description 14
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 claims description 12
- 229920001519 homopolymer Polymers 0.000 claims description 12
- 239000012188 paraffin wax Substances 0.000 claims description 12
- 239000011787 zinc oxide Substances 0.000 claims description 12
- 238000000034 method Methods 0.000 claims description 11
- 150000002978 peroxides Chemical class 0.000 claims description 10
- IANQTJSKSUMEQM-UHFFFAOYSA-N 1-benzofuran Chemical compound C1=CC=C2OC=CC2=C1 IANQTJSKSUMEQM-UHFFFAOYSA-N 0.000 claims description 8
- NINIDFKCEFEMDL-UHFFFAOYSA-N Sulfur Chemical compound [S] NINIDFKCEFEMDL-UHFFFAOYSA-N 0.000 claims description 8
- 229910052717 sulfur Inorganic materials 0.000 claims description 8
- 239000011593 sulfur Substances 0.000 claims description 8
- 239000004636 vulcanized rubber Substances 0.000 claims description 7
- VTYYLEPIZMXCLO-UHFFFAOYSA-L Calcium carbonate Chemical compound [Ca+2].[O-]C([O-])=O VTYYLEPIZMXCLO-UHFFFAOYSA-L 0.000 claims description 6
- IOJUPLGTWVMSFF-UHFFFAOYSA-N benzothiazole Chemical compound C1=CC=C2SC=NC2=C1 IOJUPLGTWVMSFF-UHFFFAOYSA-N 0.000 claims description 6
- 150000001875 compounds Chemical class 0.000 claims description 6
- 238000004898 kneading Methods 0.000 claims description 6
- 229910044991 metal oxide Inorganic materials 0.000 claims description 6
- 150000004706 metal oxides Chemical class 0.000 claims description 6
- 239000004014 plasticizer Substances 0.000 claims description 6
- 150000001732 carboxylic acid derivatives Chemical class 0.000 claims description 5
- 229910052751 metal Inorganic materials 0.000 claims description 5
- 239000002184 metal Substances 0.000 claims description 5
- 150000003839 salts Chemical class 0.000 claims description 5
- DBCAQXHNJOFNGC-UHFFFAOYSA-N 4-bromo-1,1,1-trifluorobutane Chemical compound FC(F)(F)CCCBr DBCAQXHNJOFNGC-UHFFFAOYSA-N 0.000 claims description 4
- 229920002367 Polyisobutene Polymers 0.000 claims description 4
- AUZONCFQVSMFAP-UHFFFAOYSA-N disulfiram Chemical compound CCN(CC)C(=S)SSC(=S)N(CC)CC AUZONCFQVSMFAP-UHFFFAOYSA-N 0.000 claims description 4
- STVZJERGLQHEKB-UHFFFAOYSA-N ethylene glycol dimethacrylate Substances CC(=C)C(=O)OCCOC(=O)C(C)=C STVZJERGLQHEKB-UHFFFAOYSA-N 0.000 claims description 4
- 239000007788 liquid Substances 0.000 claims description 4
- DEQZTKGFXNUBJL-UHFFFAOYSA-N n-(1,3-benzothiazol-2-ylsulfanyl)cyclohexanamine Chemical compound C1CCCCC1NSC1=NC2=CC=CC=C2S1 DEQZTKGFXNUBJL-UHFFFAOYSA-N 0.000 claims description 4
- 239000011297 pine tar Substances 0.000 claims description 4
- 229940068124 pine tar Drugs 0.000 claims description 4
- 229920002589 poly(vinylethylene) polymer Polymers 0.000 claims description 4
- 125000000999 tert-butyl group Chemical group [H]C([H])([H])C(*)(C([H])([H])[H])C([H])([H])[H] 0.000 claims description 4
- IPJGAEWUPXWFPL-UHFFFAOYSA-N 1-[3-(2,5-dioxopyrrol-1-yl)phenyl]pyrrole-2,5-dione Chemical compound O=C1C=CC(=O)N1C1=CC=CC(N2C(C=CC2=O)=O)=C1 IPJGAEWUPXWFPL-UHFFFAOYSA-N 0.000 claims description 3
- BJELTSYBAHKXRW-UHFFFAOYSA-N 2,4,6-triallyloxy-1,3,5-triazine Chemical compound C=CCOC1=NC(OCC=C)=NC(OCC=C)=N1 BJELTSYBAHKXRW-UHFFFAOYSA-N 0.000 claims description 3
- ODBCKCWTWALFKM-UHFFFAOYSA-N 2,5-bis(tert-butylperoxy)-2,5-dimethylhex-3-yne Chemical compound CC(C)(C)OOC(C)(C)C#CC(C)(C)OOC(C)(C)C ODBCKCWTWALFKM-UHFFFAOYSA-N 0.000 claims description 3
- KRDXTHSSNCTAGY-UHFFFAOYSA-N 2-cyclohexylpyrrolidine Chemical compound C1CCNC1C1CCCCC1 KRDXTHSSNCTAGY-UHFFFAOYSA-N 0.000 claims description 3
- BUZICZZQJDLXJN-UHFFFAOYSA-N 3-azaniumyl-4-hydroxybutanoate Chemical compound OCC(N)CC(O)=O BUZICZZQJDLXJN-UHFFFAOYSA-N 0.000 claims description 3
- PDQAZBWRQCGBEV-UHFFFAOYSA-N Ethylenethiourea Chemical compound S=C1NCCN1 PDQAZBWRQCGBEV-UHFFFAOYSA-N 0.000 claims description 3
- 239000005662 Paraffin oil Substances 0.000 claims description 3
- OKKRPWIIYQTPQF-UHFFFAOYSA-N Trimethylolpropane trimethacrylate Chemical compound CC(=C)C(=O)OCC(CC)(COC(=O)C(C)=C)COC(=O)C(C)=C OKKRPWIIYQTPQF-UHFFFAOYSA-N 0.000 claims description 3
- 229910000019 calcium carbonate Inorganic materials 0.000 claims description 3
- BRPQOXSCLDDYGP-UHFFFAOYSA-N calcium oxide Chemical compound [O-2].[Ca+2] BRPQOXSCLDDYGP-UHFFFAOYSA-N 0.000 claims description 3
- 239000000292 calcium oxide Substances 0.000 claims description 3
- ODINCKMPIJJUCX-UHFFFAOYSA-N calcium oxide Inorganic materials [Ca]=O ODINCKMPIJJUCX-UHFFFAOYSA-N 0.000 claims description 3
- 229910052570 clay Inorganic materials 0.000 claims description 3
- LSXWFXONGKSEMY-UHFFFAOYSA-N di-tert-butyl peroxide Chemical group CC(C)(C)OOC(C)(C)C LSXWFXONGKSEMY-UHFFFAOYSA-N 0.000 claims description 3
- AFZSMODLJJCVPP-UHFFFAOYSA-N dibenzothiazol-2-yl disulfide Chemical compound C1=CC=C2SC(SSC=3SC4=CC=CC=C4N=3)=NC2=C1 AFZSMODLJJCVPP-UHFFFAOYSA-N 0.000 claims description 3
- ZLNQQNXFFQJAID-UHFFFAOYSA-L magnesium carbonate Chemical compound [Mg+2].[O-]C([O-])=O ZLNQQNXFFQJAID-UHFFFAOYSA-L 0.000 claims description 3
- 239000001095 magnesium carbonate Substances 0.000 claims description 3
- 229910000021 magnesium carbonate Inorganic materials 0.000 claims description 3
- HCWCAKKEBCNQJP-UHFFFAOYSA-N magnesium orthosilicate Chemical compound [Mg+2].[Mg+2].[O-][Si]([O-])([O-])[O-] HCWCAKKEBCNQJP-UHFFFAOYSA-N 0.000 claims description 3
- 239000000395 magnesium oxide Substances 0.000 claims description 3
- CPLXHLVBOLITMK-UHFFFAOYSA-N magnesium oxide Inorganic materials [Mg]=O CPLXHLVBOLITMK-UHFFFAOYSA-N 0.000 claims description 3
- 239000000391 magnesium silicate Substances 0.000 claims description 3
- 229910052919 magnesium silicate Inorganic materials 0.000 claims description 3
- 235000019792 magnesium silicate Nutrition 0.000 claims description 3
- AXZKOIWUVFPNLO-UHFFFAOYSA-N magnesium;oxygen(2-) Chemical compound [O-2].[Mg+2] AXZKOIWUVFPNLO-UHFFFAOYSA-N 0.000 claims description 3
- 239000010705 motor oil Substances 0.000 claims description 3
- 239000003921 oil Substances 0.000 claims description 3
- 239000000454 talc Substances 0.000 claims description 3
- 229910052623 talc Inorganic materials 0.000 claims description 3
- GJBRNHKUVLOCEB-UHFFFAOYSA-N tert-butyl benzenecarboperoxoate Chemical compound CC(C)(C)OOC(=O)C1=CC=CC=C1 GJBRNHKUVLOCEB-UHFFFAOYSA-N 0.000 claims description 3
- DLSMLZRPNPCXGY-UHFFFAOYSA-N tert-butylperoxy 2-ethylhexyl carbonate Chemical compound CCCCC(CC)COC(=O)OOOC(C)(C)C DLSMLZRPNPCXGY-UHFFFAOYSA-N 0.000 claims description 3
- GRPURDFRFHUDSP-UHFFFAOYSA-N tris(prop-2-enyl) benzene-1,2,4-tricarboxylate Chemical compound C=CCOC(=O)C1=CC=C(C(=O)OCC=C)C(C(=O)OCC=C)=C1 GRPURDFRFHUDSP-UHFFFAOYSA-N 0.000 claims description 3
- DMWVYCCGCQPJEA-UHFFFAOYSA-N 2,5-bis(tert-butylperoxy)-2,5-dimethylhexane Chemical compound CC(C)(C)OOC(C)(C)CCC(C)(C)OOC(C)(C)C DMWVYCCGCQPJEA-UHFFFAOYSA-N 0.000 claims description 2
- HWSSEYVMGDIFMH-UHFFFAOYSA-N 2-[2-[2-(2-methylprop-2-enoyloxy)ethoxy]ethoxy]ethyl 2-methylprop-2-enoate Chemical compound CC(=C)C(=O)OCCOCCOCCOC(=O)C(C)=C HWSSEYVMGDIFMH-UHFFFAOYSA-N 0.000 claims description 2
- DELMEMQAGVCRRF-UHFFFAOYSA-N C1(C=CC2=CC=CC=C12)C(C([CH2-])=O)C1C=CC2=CC=CC=C12 Chemical compound C1(C=CC2=CC=CC=C12)C(C([CH2-])=O)C1C=CC2=CC=CC=C12 DELMEMQAGVCRRF-UHFFFAOYSA-N 0.000 claims description 2
- BWGNESOTFCXPMA-UHFFFAOYSA-N Dihydrogen disulfide Chemical compound SS BWGNESOTFCXPMA-UHFFFAOYSA-N 0.000 claims description 2
- JSLLEIZIMMTIEM-UHFFFAOYSA-N N-cyclohexyl-N-[(2-phenyl-1,3-thiazol-4-yl)sulfanyl]cyclohexanamine Chemical compound C1(CCCCC1)N(SC=1N=C(SC=1)C1=CC=CC=C1)C1CCCCC1 JSLLEIZIMMTIEM-UHFFFAOYSA-N 0.000 claims description 2
- 238000007599 discharging Methods 0.000 claims description 2
- RIPYNJLMMFGZSX-UHFFFAOYSA-N (5-benzoylperoxy-2,5-dimethylhexan-2-yl) benzenecarboperoxoate Chemical compound C=1C=CC=CC=1C(=O)OOC(C)(C)CCC(C)(C)OOC(=O)C1=CC=CC=C1 RIPYNJLMMFGZSX-UHFFFAOYSA-N 0.000 claims 1
- VHSBTBDMKDUVKG-UHFFFAOYSA-N (dimethylcarbamothioyltrisulfanyl) n,n-dimethylcarbamodithioate Chemical compound CN(C)C(=S)SSSSC(=S)N(C)C VHSBTBDMKDUVKG-UHFFFAOYSA-N 0.000 claims 1
- 239000003795 chemical substances by application Substances 0.000 claims 1
- 150000002466 imines Chemical class 0.000 claims 1
- 125000001997 phenyl group Chemical group [H]C1=C([H])C([H])=C(*)C([H])=C1[H] 0.000 claims 1
- 238000007906 compression Methods 0.000 abstract description 13
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- 238000004519 manufacturing process Methods 0.000 abstract description 5
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- HQQADJVZYDDRJT-UHFFFAOYSA-N ethene;prop-1-ene Chemical group C=C.CC=C HQQADJVZYDDRJT-UHFFFAOYSA-N 0.000 abstract 1
- 238000012360 testing method Methods 0.000 description 34
- 239000004711 α-olefin Substances 0.000 description 16
- 230000032683 aging Effects 0.000 description 15
- KWKAKUADMBZCLK-UHFFFAOYSA-N 1-octene Chemical compound CCCCCCC=C KWKAKUADMBZCLK-UHFFFAOYSA-N 0.000 description 10
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- 229920001577 copolymer Polymers 0.000 description 9
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- 125000004805 propylene group Chemical group [H]C([H])([H])C([H])([*:1])C([H])([H])[*:2] 0.000 description 4
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- 238000010516 chain-walking reaction Methods 0.000 description 3
- 238000009826 distribution Methods 0.000 description 3
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- 238000002844 melting Methods 0.000 description 3
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- XQUPVDVFXZDTLT-UHFFFAOYSA-N 1-[4-[[4-(2,5-dioxopyrrol-1-yl)phenyl]methyl]phenyl]pyrrole-2,5-dione Chemical compound O=C1C=CC(=O)N1C(C=C1)=CC=C1CC1=CC=C(N2C(C=CC2=O)=O)C=C1 XQUPVDVFXZDTLT-UHFFFAOYSA-N 0.000 description 2
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- AXWJKQDGIVWVEW-UHFFFAOYSA-N 2-(dimethylamino)butanedioic acid Chemical compound CN(C)C(C(O)=O)CC(O)=O AXWJKQDGIVWVEW-UHFFFAOYSA-N 0.000 description 2
- BMFMTNROJASFBW-UHFFFAOYSA-N 2-(furan-2-ylmethylsulfinyl)acetic acid Chemical compound OC(=O)CS(=O)CC1=CC=CO1 BMFMTNROJASFBW-UHFFFAOYSA-N 0.000 description 2
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- CAQZZDUSUDAUGQ-UHFFFAOYSA-N 5-benzoylperoxyheptan-2-yl benzenecarboperoxoate Chemical compound C=1C=CC=CC=1C(=O)OOC(CC)CCC(C)OOC(=O)C1=CC=CC=C1 CAQZZDUSUDAUGQ-UHFFFAOYSA-N 0.000 description 1
- WNEYWVBECXCQRT-UHFFFAOYSA-N 5-methylhept-1-ene Chemical compound CCC(C)CCC=C WNEYWVBECXCQRT-UHFFFAOYSA-N 0.000 description 1
- WTQBISBWKRKLIJ-UHFFFAOYSA-N 5-methylidenebicyclo[2.2.1]hept-2-ene Chemical compound C1C2C(=C)CC1C=C2 WTQBISBWKRKLIJ-UHFFFAOYSA-N 0.000 description 1
- 239000004342 Benzoyl peroxide Substances 0.000 description 1
- OMPJBNCRMGITSC-UHFFFAOYSA-N Benzoylperoxide Chemical compound C=1C=CC=CC=1C(=O)OOC(=O)C1=CC=CC=C1 OMPJBNCRMGITSC-UHFFFAOYSA-N 0.000 description 1
- 239000004215 Carbon black (E152) Substances 0.000 description 1
- UFHFLCQGNIYNRP-UHFFFAOYSA-N Hydrogen Chemical compound [H][H] UFHFLCQGNIYNRP-UHFFFAOYSA-N 0.000 description 1
- VQTUBCCKSQIDNK-UHFFFAOYSA-N Isobutene Chemical group CC(C)=C VQTUBCCKSQIDNK-UHFFFAOYSA-N 0.000 description 1
- 235000019687 Lamb Nutrition 0.000 description 1
- 238000005481 NMR spectroscopy Methods 0.000 description 1
- 229920000034 Plastomer Polymers 0.000 description 1
- 239000005062 Polybutadiene Substances 0.000 description 1
- 230000009471 action Effects 0.000 description 1
- 239000002318 adhesion promoter Substances 0.000 description 1
- 150000001336 alkenes Chemical class 0.000 description 1
- 235000019400 benzoyl peroxide Nutrition 0.000 description 1
- CREMABGTGYGIQB-UHFFFAOYSA-N carbon carbon Chemical compound C.C CREMABGTGYGIQB-UHFFFAOYSA-N 0.000 description 1
- 239000011203 carbon fibre reinforced carbon Substances 0.000 description 1
- 150000001723 carbon free-radicals Chemical group 0.000 description 1
- 238000007405 data analysis Methods 0.000 description 1
- NLDGJRWPPOSWLC-UHFFFAOYSA-N deca-1,9-diene Chemical compound C=CCCCCCCC=C NLDGJRWPPOSWLC-UHFFFAOYSA-N 0.000 description 1
- 230000006866 deterioration Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 239000003792 electrolyte Substances 0.000 description 1
- 238000003379 elimination reaction Methods 0.000 description 1
- 125000001495 ethyl group Chemical group [H]C([H])([H])C([H])([H])* 0.000 description 1
- 230000002431 foraging effect Effects 0.000 description 1
- 238000009472 formulation Methods 0.000 description 1
- 125000000524 functional group Chemical group 0.000 description 1
- PYGSKMBEVAICCR-UHFFFAOYSA-N hexa-1,5-diene Chemical compound C=CCCC=C PYGSKMBEVAICCR-UHFFFAOYSA-N 0.000 description 1
- 229930195733 hydrocarbon Natural products 0.000 description 1
- 150000002430 hydrocarbons Chemical class 0.000 description 1
- 125000004435 hydrogen atom Chemical group [H]* 0.000 description 1
- 238000006713 insertion reaction Methods 0.000 description 1
- 238000009413 insulation Methods 0.000 description 1
- CMAUJSNXENPPOF-UHFFFAOYSA-N n-(1,3-benzothiazol-2-ylsulfanyl)-n-cyclohexylcyclohexanamine Chemical compound C1CCCCC1N(C1CCCCC1)SC1=NC2=CC=CC=C2S1 CMAUJSNXENPPOF-UHFFFAOYSA-N 0.000 description 1
- RBMMKPRWKSVIRU-UHFFFAOYSA-N n-(1,3-benzothiazol-2-ylsulfanyl)hexan-1-amine Chemical compound C1=CC=C2SC(SNCCCCCC)=NC2=C1 RBMMKPRWKSVIRU-UHFFFAOYSA-N 0.000 description 1
- JRZJOMJEPLMPRA-UHFFFAOYSA-N olefin Natural products CCCCCCCC=C JRZJOMJEPLMPRA-UHFFFAOYSA-N 0.000 description 1
- QYZLKGVUSQXAMU-UHFFFAOYSA-N penta-1,4-diene Chemical compound C=CCC=C QYZLKGVUSQXAMU-UHFFFAOYSA-N 0.000 description 1
- 229920002857 polybutadiene Polymers 0.000 description 1
- 238000011112 process operation Methods 0.000 description 1
- 238000007348 radical reaction Methods 0.000 description 1
- 150000003254 radicals Chemical class 0.000 description 1
- 239000002994 raw material Substances 0.000 description 1
- 229930195734 saturated hydrocarbon Natural products 0.000 description 1
- 238000004611 spectroscopical analysis Methods 0.000 description 1
- 229920003051 synthetic elastomer Polymers 0.000 description 1
- 239000005061 synthetic rubber Substances 0.000 description 1
- 125000000391 vinyl group Chemical group [H]C([*])=C([H])[H] 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
- C08K3/00—Use of inorganic substances as compounding ingredients
- C08K3/02—Elements
- C08K3/04—Carbon
-
- 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
- C08K5/04—Oxygen-containing compounds
- C08K5/14—Peroxides
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L23/00—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers
- C08L23/02—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers not modified by chemical after-treatment
- C08L23/04—Homopolymers or copolymers of ethene
- C08L23/06—Polyethene
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L23/00—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers
- C08L23/02—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers not modified by chemical after-treatment
- C08L23/16—Ethene-propene or ethene-propene-diene copolymers
Definitions
- the present invention relates to the field of rubber, and in particular to a rubber composition and a processing method thereof, and to a sealing member for a capacitor to which the rubber composition is applied.
- Ethylene-propylene rubber is widely used in the manufacture of capacitor seals due to its good electrical insulation, heat aging resistance, medium resistance and low compression set.
- Sulfur vulcanization and peroxide vulcanization are two conventional vulcanization methods for ethylene-propylene rubber.
- the peroxide crosslinking system is gradually becoming more and more, but the capacitor is sealed.
- the requirements for tear resistance are higher, and the tear strength of peroxide-cured ethylene-propylene rubber is lower than that of sulfur-vulcanized ethylene-propylene rubber, which may lead to an increased risk of damage to the capacitor seal during actual use. It is not good for security, so this is a contradiction that needs to be resolved urgently. How to further balance the improvement of electrical insulation, aging resistance and mechanical strength of ethylene propylene rubber is a problem.
- Ethylene-propylene rubber is a synthetic rubber with saturated molecular chain. It can be divided into two major categories: ethylene-propylene rubber and EPDM rubber. Both of them have good aging resistance. They are commonly used in ethylene-propylene rubber products. It is EPDM rubber, but because EPDM rubber contains a third monomer, the molecular chain contains double bonds, and the ethylene-propylene rubber molecular chain is completely saturated, so the ethylene-propylene rubber has more excellent resistance to aging. Sex, therefore, in the case of high requirements for aging resistance, it is a common technical solution to improve the aging resistance of EPDM by using ethylene propylene diene rubber together. However, the mechanical strength of the binary ethylene propylene rubber is low, which will affect the overall physical and mechanical properties.
- Diethylene propylene rubber is a copolymer of ethylene and propylene and belongs to the copolymer of ethylene and ⁇ -olefin.
- Ethylene and ⁇ -olefin copolymers are polymers containing only hydrocarbon elements and saturated molecular chains.
- the common types of carbon atoms in such polymers are generally classified into primary, secondary and tertiary carbons, while tertiary carbons are the most It is easy to be trapped by hydrogen to form free radicals, so the ratio of tertiary carbon atoms to all carbon atoms is generally considered to be a major factor affecting the aging resistance of ethylene and ⁇ -olefin copolymers. The lower the ratio, the better the aging resistance.
- the ratio can be expressed by the degree of branching.
- a diethylene propylene rubber having a propylene content of 60% by weight can be calculated to contain 200 propylene units per 1000 carbon atoms, that is, 200 tertiary carbon atoms or 200.
- One methyl branch so its degree of branching is 200 branches / 1000 carbons.
- Ethylene ethylene propylene rubber generally has a weight percentage of 40% to 65% or 40% to 60%, so its branching degree is generally 117 to 200 branches/1000 carbons or 133 to 200 branches/ This degree of branching can be considered to be higher than other common ethylene and alpha-olefin copolymers in the 1000 carbon range.
- the ⁇ -olefin in the common ethylene and ⁇ -olefin copolymer may be an ⁇ -olefin having a carbon number of not less than 4 in addition to propylene, and may be selected from a C 4 - C 20 ⁇ -olefin. It is usually selected from the group consisting of 1-butene, 1-hexene and 1-octene. If the degree of branching of the copolymer of ethylene and ⁇ -olefin is too low, the melting point and crystallinity are too high, and it is not suitable for use as a rubber component.
- a polyolefin obtained by copolymerizing ethylene with 1-butene or ethylene and 1-octene may be referred to as a polyolefin plastomer or a polyolefin elastomer according to the degree of crystallinity and melting point, and a part of the polyolefin is elastic. Due to its proper crystallinity and melting point, it can be used well with ethylene propylene rubber and has a low degree of branching. It is considered to be an ideal material for improving the aging resistance of ethylene propylene rubber.
- the polyolefin elastomer commonly used in rubber products is generally ethylene.
- the octene weight percentage is generally not higher than 45%, more commonly not higher than 40%, the corresponding degree of branching is generally not higher than 56 branches / 1000 carbon, The more commonly used degree of branching is not higher than 50 branches/1000 carbons, which is much lower than the degree of branching of ethylene dipropylene rubber, so it has excellent aging resistance and good physical and mechanical properties.
- the copolymer of ethylene and ⁇ -olefin may be peroxide cross-linking or irradiation cross-linking, both of which are mainly obtained by capturing tertiary carbon.
- a hydrogen atom forms a tertiary carbon radical, and then forms a carbon-carbon crosslink by radical bonding, but a copolymer of ethylene and 1-octene (hereinafter referred to as POE) has fewer tertiary carbon atoms and is attached to a tertiary carbon atom.
- Chain length, large steric hindrance, difficulty in radical reaction, resulting in difficulty in crosslinking, affecting processing efficiency and product performance, such as compression set resistance is unsatisfactory.
- the present invention provides a novel rubber composition and processing method, and a capacitor sealing member comprising the rubber composition to improve the performance of the capacitor sealing member.
- a rubber composition comprising: a rubber matrix and a necessary component, the rubber matrix comprising: the content of branched polyethylene is a: 0 by weight ⁇ a ⁇ 100 parts, the content of the binary ethylene propylene rubber and the ethylene propylene diene rubber b: 0 ⁇ b ⁇ 100 parts;
- the necessary components include: 1.5 to 10 parts of the crosslinking agent based on 100 parts by weight of the rubber matrix Reinforcing filler 45 to 150 parts, wherein the reinforcing filler comprises carbon black, and the weight fraction of the carbon black is 0 ⁇ a ⁇ 30 parts, wherein the branching degree of the branched polyethylene is not less than 50 Branched / 1000 carbon, weight average molecular weight of not less than 50,000, Mooney viscosity ML (1 + 4) 125 ° C not less than 2.
- Branched polyethylene in the prior art means, in addition to a branched ethylene homopolymer, a branched saturated vinyl copolymer, such as an ethylene- ⁇ -olefin copolymer, which may be POE, although POE performs well in physical and mechanical properties and aging resistance, but cross-linking performance is not good, although the branched polyethylene of the present invention can contain both branched ethylene homopolymer and POE, but a better choice It is a branched polyethylene having a high proportion of branched polyethylene or a branched ethylene homopolymer. In a preferred embodiment of the invention, the branched polyethylene contains only branched ethylene homopolymer.
- the branched polyethylene used is a branched ethylene homopolymer unless otherwise specified.
- the branched polyethylene used in the present invention is a kind of ethylene homopolymer having a branching degree of not less than 50 branches/1000 carbons, and can be called Branched Polyethylene or Branched PE.
- the synthesis method is mainly composed of a late transition metal catalyst.
- the homopolymerization of ethylene is catalyzed by a "chain walking mechanism", and the preferred late transition metal catalyst may be one of ( ⁇ -diimine) nickel/palladium catalysts.
- the nature of the chain walking mechanism refers to the late transition metal catalyst.
- the ( ⁇ -diimine) nickel/palladium catalyst is more likely to undergo ⁇ -hydrogen elimination reaction and re-insertion reaction in the process of catalyzing olefin polymerization, thereby causing branching.
- Branched chains of such branched polyethylenes may have different numbers of carbon atoms, specifically 1 to 6, or more carbon atoms.
- the production cost of the ( ⁇ -diimine) nickel catalyst is significantly lower than that of the ( ⁇ -diimine) palladium catalyst, and the ( ⁇ -diimine) nickel catalyst catalyzes the high rate of ethylene polymerization and high activity, and is more suitable for industrial applications. Therefore, the branched polyethylene prepared by the ethylene polymerization of the ( ⁇ -diimine) nickel catalyst is preferred in the present invention.
- the degree of branching of the branched polyethylene used in the present invention is preferably 50 to 130 branches/1000 carbons, further preferably 60 to 130 branches/1000 carbons, further preferably 60 to 116 branches/1000.
- a carbon, the degree of branching between POE and ethylene-propylene rubber, is a new technical solution that is different from the prior art, and can have excellent aging resistance and good cross-linking performance.
- Cross-linking performance includes factors such as crosslink density and cross-linking rate, which is the specific performance of the cross-linking ability of the rubber matrix during processing.
- the branched polyethylene used in the present invention preferably has a methyl branch content of 40% or more or 50% or more, and has a certain similarity with the structure of the ethylene propylene diene rubber.
- the degree of branching (tertiary carbon atom content) and the steric hindrance around the tertiary carbon atom are the two main factors affecting the cross-linking ability of the saturated polyolefin.
- the branched polyethylene used in the present invention is low in degree of branching relative to the ethylene propylene rubber, and since the branched polyethylene has a branch having a carbon number of not less than 2, the branched polycondensation used in the present invention
- the steric hindrance around the tertiary carbon atom of ethylene is theoretically larger than that of ethylene propylene rubber. It can be judged by combining two factors that the crosslinking ability of the branched polyethylene used in the present invention should be weaker than that of the ethylene propylene rubber.
- EPDM rubber In EPDM rubber. However, the actual cross-linking ability of the partially branched polyethylene used in the present invention is close to that of EPDM rubber, and may even be equal to or better than EPDM rubber. This means that the rubber composition of the present invention can obtain a good aging resistance, can also not weaken the crosslinking ability, and can even have excellent crosslinking performance to achieve an unexpected beneficial effect.
- secondary branched structure refers to a structure in which branches are further branched. This is also known as "branch-on-branch" during chain walking. Because of the low steric hindrance around the tertiary carbon atoms of the secondary branches, cross-linking reactions are more likely to occur. Having a secondary branched structure is a distinct distinction between the branched polyethylene used in the preferred embodiment of the invention and the prior art ethylene dipropylene rubber or the conventional ethylene- ⁇ -olefin copolymer.
- the vinyl copolymer refers to a copolymer of ethylene and a branched ⁇ -olefin, and has a secondary branched structure, wherein the branched ⁇ -olefin may be selected from the group consisting of isobutylene and 3-methyl-1- Butylene, 4-methyl-1-pentene, 3-methyl-1-pentene, 2-methyl-1-heptene, 3-methyl-1-heptene, 4-methyl-1- The heptene, 5-methyl-1-heptene, 6-methyl-1-heptene, and the like, the comonomer may also contain a common linear alpha-olefin.
- branched polyethylene prepared by the ( ⁇ -diimine) nickel catalyst is difficult to exist in the secondary branched structure, and at least it is difficult to sufficiently distinguish it.
- the technical solution of the present invention is also to analyze the branched polycondensation.
- the structure of ethylene provides a new idea.
- the cross-linking point of the branched polyethylene can be generated on the tertiary chain of the main chain during the peroxide crosslinking process. It can also be produced on the branched tertiary carbon of the secondary structure, so the rubber network formed by the cross-linking of the branched polyethylene has a richer CC connecting segment between the main chains than the ethylene-propylene rubber. The length can effectively avoid stress concentration and help to obtain better mechanical properties, including tear strength.
- the selected ethylene-propylene rubber and ethylene propylene diene rubber have a Mooney viscosity ML (1+4) of preferably 40 to 80 at 125 ° C and an ethylene content of preferably 45% to 70%.
- the content of the branched polyethylene in the 100 parts by weight of the rubber matrix is a: 10 ⁇ a ⁇ 100 parts; the content of the binary ethylene propylene rubber and the ethylene propylene diene rubber is b: 0 ⁇ b ⁇ 90
- the branched polyethylene is characterized by being an ethylene homopolymer having a degree of branching of 60 to 130 branches/1000 carbons, a weight average molecular weight of 66,000 to 518,000, and a Mooney viscosity ML (1+). 4) 125 ° C is 6 to 102.
- the content of the branched polyethylene in the 100 parts by weight of the rubber matrix is a: 10 ⁇ a ⁇ 100 parts; the content of the binary ethylene propylene rubber and the ethylene propylene diene rubber is b: 0 ⁇ b ⁇ 90
- the branched polyethylene is an ethylene homopolymer having a degree of branching of 70 to 116 branches/1000 carbons, a weight average molecular weight of 201,000 to 436,000, and a Mooney viscosity of ML (1+4) 125.
- °C is 23-101;
- the content of the branched polyethylene in the 100 parts by weight of the rubber matrix is a: 10 ⁇ a ⁇ 100 parts; the content of the binary ethylene propylene rubber and the ethylene propylene diene rubber is b: 0 ⁇ b ⁇ 90
- the branched polyethylene is an ethylene homopolymer having a degree of branching of 80 to 105 branches/1000 carbons, a weight average molecular weight of 250,000 to 400,000, and a Mooney viscosity of ML (1+4) 125. °C is 40 to 95.
- the content of the branched polyethylene in the 100 parts by weight of the rubber matrix is a: 10 ⁇ a ⁇ 100 parts; the content of the binary ethylene propylene rubber and the ethylene propylene diene rubber is b: 0 ⁇ b ⁇ 90
- the branched polyethylene is an ethylene homopolymer having a degree of branching of 80 to 105 branches/1000 carbons, a weight average molecular weight of 268,000 to 356,000, and a Mooney viscosity of ML (1+4) 125. °C is 42-80.
- the third monomer of the ethylene propylene diene monomer is preferably a diene monomer, specifically selected from the group consisting of 5-ethylidene-2-norbornene and 5-vinyl-2-nor Borneene, dicyclopentadiene, 1,4-hexadiene, 1,5-hexadiene, 1,4-pentadiene, 2-methyl-1,4-pentadiene, 3-methyl- 1,4-Hexadiene, 4-methyl-1,4-hexadiene, 1,9-decadiene, 5-methylene-2-norbornene, 5-pentylene-2-nor Borbornene, 1,5-cyclooctadiene, 1,4-cyclooctadiene, and the like.
- a diene monomer specifically selected from the group consisting of 5-ethylidene-2-norbornene and 5-vinyl-2-nor Borneene, dicyclopentadiene, 1,4-hexadiene
- the ethylene propylene rubber may contain two or more kinds of diene monomers at the same time, such as 5-ethylidene-2-norbornene and 5-vinyl-2-norbornene.
- the functional group of the diene monomer can play the same role as the intrinsic co-crosslinking agent in the peroxide vulcanization, thereby improving the crosslinking efficiency. This helps to reduce the amount and residual amount of crosslinker and co-crosslinker required and the cost of adding them.
- the weight specific gravity of the diene monomer to the ethylene propylene rubber is preferably from 1% to 14%, more preferably from 3% to 10%, still more preferably from 4% to 7%.
- the reinforcing filler further includes at least one of calcium carbonate, talc, calcined clay, magnesium silicate, and magnesium carbonate.
- the crosslinking agent comprises at least one of a peroxide crosslinking agent and a sulfur
- the peroxide crosslinking agent is di-tert-butyl peroxide, dicumyl peroxide, Tert-butyl cumyl peroxide, 1,1-di-tert-butyl peroxide-3,3,5-trimethylcyclohexane, 2,5-dimethyl-2,5-di(tert-butyl) Base oxidized) hexane, 2,5-dimethyl-2,5-di(tert-butylperoxy)hexyne-3, bis(tert-butylperoxyisopropyl)benzene, 2,5-di At least one of methyl-2,5-bis(benzoyl peroxy)hexane, tert-butyl peroxybenzoate, and t-butylperoxy-2-ethylhexyl carbonate.
- the rubber composition further comprises an auxiliary component, which comprises: 0.2 to 12 parts of a co-crosslinking agent, 1 to 5 parts of a plasticizer, and a metal oxide, based on 100 parts by weight of the rubber matrix. 2 to 10 parts, vulcanization accelerator 0 to 3 parts.
- the co-crosslinking agent comprises triallyl cyanurate, triallyl isocyanurate, ethylene glycol dimethacrylate, and triethylene glycol dimethacrylate.
- triallyl trimellitate trimethylolpropane trimethacrylate, N,N'-m-phenylene bismaleimide, N,N'-bis-indenylacetone, 1,2
- the unsaturated carboxylic acid metal salt contains at least one of zinc acrylate, zinc methacrylate, magnesium methacrylate, calcium methacrylate, and aluminum methacrylate.
- the plasticizer is at least one of pine tar, engine oil, naphthenic oil, paraffin oil, coumarone, RX-80, stearic acid, paraffin wax, and liquid polyisobutylene.
- the rational use of plasticizers can increase the flexibility of the compound and the plasticity suitable for process operation.
- an adhesion promoter such as pine tar, coumarone, RX-80, liquid polyisobutylene or the like.
- the metal oxide is at least one of zinc oxide, magnesium oxide, and calcium oxide.
- the vulcanization accelerator comprises 2-thiol benzothiazole, dibenzothiazyl disulfide, tetramethyl thiuram monosulfide, tetramethyl thiuram disulfide, tetrazyl disulfide Kethiram, N-cyclohexyl-2-benzothiazolyl sulfenamide, N,N-dicyclohexyl-2-benzothiazolyl sulfenamide, bismaleimide, ethylene thiourea At least one of them.
- the rubber composition of the present invention may be present in the form of an uncrosslinked rubber compound, and may be present in the form of a vulcanized rubber after further crosslinking reaction.
- Vulcanized rubber can also be referred to simply as vulcanizate.
- the present invention also provides a method of processing the above rubber composition, the processing method comprising the steps of:
- Rubber kneading setting the temperature of the internal mixer and the rotation speed of the rotor, firstly adding the rubber composition other than the crosslinking system to the internal mixer for mixing by weight, and then adding the crosslinking system to be kneaded. After uniformly discharging, the rubber mixture is obtained, and the rubber compound is thinned on the open mill, and then the film is left to be vulcanized, wherein the crosslinking system contains a crosslinking agent, and may further include a crosslinking agent and a vulcanization accelerator. ;
- Vulcanization The rubber compound is filled into the cavity of the mold, and after being vulcanized by vulcanization on a flat vulcanizer, the vulcanized rubber is obtained by demolding. In order to improve the compression set resistance of the vulcanizate, it is further possible to carry out vulcanization using a two-stage vulcanization process.
- the present invention also provides a seal for a capacitor comprising the above rubber composition.
- the invention has the beneficial effects that the partial or complete replacement of the ethylene-propylene rubber in the rubber composition with the branched polyethylene adopts a peroxide vulcanization system, the principle is that the branched polyethylene has more branches in its molecular structure. And the length of the branch has a certain length and length distribution.
- the cross-linking point of the branched polyethylene can be generated on the tertiary carbon of the main chain during the peroxide crosslinking process.
- the rubber network formed by the cross-linking of the branched polyethylene has a richer CC chain between the main chains than the ethylene-propylene rubber.
- the length of the segment can effectively avoid stress concentration and help to obtain better mechanical properties, including tear strength.
- the rubber composition of the present invention has a lower compression set after vulcanization.
- the vulcanized rubber has improved tensile strength, tear strength and volume resistivity, and can simultaneously obtain better mechanical properties, electrical insulation properties and compression set resistance properties. Therefore, the novel rubber composition provided by the present invention is more suitable for the manufacture of capacitor seals.
- the Mooney viscosity ML (1+4) of the ethylene-propylene rubber used is preferably 20 to 50, more preferably 40 to 50, and preferably 4 to 60%.
- the Mooney viscosity ML (1+4) of the ethylene propylene diene rubber used is preferably 20 to 100, more preferably 40 to 80, the ethylene content is preferably 50% to 75%, and the third monomer is 5-ethylene-2. - norbornene, 5-vinyl-2-norbornene or dicyclopentadiene, the third monomer content being from 1% to 7%.
- the branched polyethylene used can be obtained by catalyzing the homopolymerization of ethylene by a ( ⁇ -diimine) nickel catalyst under the action of a cocatalyst.
- the structure, synthesis method and method for preparing branched polyethylene by using the ( ⁇ -diimine) nickel catalyst are disclosed in the prior art, and can be used but are not limited to the following documents: CN102827312A, CN101812145A, CN101531725A, CN104926962A, US6103658, US6660677.
- the branched polyethylenes involved in the examples are characterized by a branching degree of 60 to 130 branches/1000 carbons, a weight average molecular weight of 66,000 to 518,000, and a Mooney viscosity of ML (1+4) of 125 ° C of 6 ⁇ 102.
- a formulation of a rubber composition comprising: a rubber matrix and a necessary component, the rubber matrix comprising: a branched polyethylene content of a: 0 ⁇ a ⁇ 100 parts, a binary ethylene propylene rubber And the content of ethylene propylene diene monomer b: 0 ⁇ b ⁇ 100 parts; based on 100 parts by weight of the rubber matrix, the necessary components include: 1.5 to 10 parts of a crosslinking agent, 45 to 150 parts of a reinforcing filler, wherein The reinforcing filler contains carbon black and contains 0 ⁇ a ⁇ 30 parts by weight of carbon black.
- the reinforcing filler further includes at least one of calcium carbonate, talc, calcined clay, magnesium silicate, and magnesium carbonate.
- the crosslinking agent includes at least one of a peroxide crosslinking agent and a sulfur crosslinking agent, and the peroxide crosslinking agent is di-tert-butyl peroxide, dicumyl peroxide, and tert-butyl cumyl peroxide.
- the rubber composition may further include an auxiliary component comprising 0.2 to 12 parts of a co-crosslinking agent, 1 to 5 parts of a plasticizer, 2 to 10 parts of a metal oxide, and 0 to 3 parts of a vulcanization accelerator.
- the co-crosslinking agent comprises triallyl cyanurate, triallyl isocyanurate, ethylene glycol dimethacrylate, ethyl dimethacrylate, triethylene dimethacrylate Ester, triallyl trimellitate, trimethylolpropane trimethacrylate, ethylene glycol dimethacrylate, N,N'-m-phenylene bismaleimide, N,N' - at least one of bis-indenyl acetonide, 1,2-polybutadiene, a metal salt of an unsaturated carboxylic acid, and sulfur.
- the unsaturated carboxylic acid metal salt contains at least one of zinc acrylate, zinc methacrylate, magnesium methacrylate, calcium methacrylate, and aluminum methacrylate.
- the plasticizer is at least one of pine tar, motor oil, naphthenic oil, paraffin oil, coumarone, RX-80, stearic acid, paraffin wax, and liquid polyisobutylene.
- the metal oxide is at least one of zinc oxide, magnesium oxide, and calcium oxide.
- the vulcanization accelerator comprises 2-thiol benzothiazole, dibenzothiazole disulfide, tetramethylthiuram monosulfide, tetramethylthiuram disulfide, tetraethylthiuram disulfide, N-ring At least one of hexyl-2-benzothiazolylsulfenamide, N,N-dicyclohexyl-2-phenylthiazolylsulfenamide, bismaleimide, and ethylenethiourea.
- a method of processing a rubber composition comprising the steps of:
- Rubber kneading setting the temperature of the internal mixer and the rotation speed of the rotor.
- the rubber composition other than the crosslinking system is sequentially added to the internal mixer according to the weight fraction for kneading, and then the crosslinking system is added and kneaded. After uniform discharge, the mixture is obtained.
- the mixture is thinned on the open mill and then discharged, and is parked for vulcanization, wherein the crosslinking system comprises a crosslinking agent, and may further include at least one of a crosslinking agent and a vulcanization accelerator;
- Vulcanization The rubber compound is filled into the cavity of the mold, and after being vulcanized by vulcanization on a flat vulcanizer, the vulcanized rubber is obtained by demolding.
- the above rubber composition can be used to manufacture a seal for a capacitor.
- the degree of branching of the branched polyethylene in the present invention is measured by nuclear magnetic resonance spectroscopy, and the molar percentages of various branches are measured by nuclear magnetic carbon spectroscopy, as shown in the following table:
- Hardness test According to the national standard GB/T 531.1-2008, the test is carried out with a hardness tester, and the test temperature is room temperature;
- tear strength test in accordance with the national standard GB/T529-2008, using an electronic tensile test machine for testing, the tensile speed is 500mm / min, the test temperature is 23 ⁇ 2 ° C, the sample is a rectangular sample;
- compression permanent deformation test in accordance with the national standard GB/T7759-1996, using a compression permanent deformation device for testing, type B, the compression is 25%, the test temperature is 70 ° C;
- Mooney viscosity test in accordance with the national standard GB/T1232.1-2000, with Mooney viscosity meter for testing, the test temperature is 125 ° C, preheat 1 minute, test 4 minutes;
- test conditions are 150 ° C ⁇ 72h;
- the vulcanization conditions of the following Examples 1 to 10 and Comparative Examples 1 and 2 were uniform: temperature: 160 ° C; pressure: 16 MPa; time was Tc90 + 2 min.
- the branched polyethylene used was numbered PER-7.
- the branched polyethylene used was numbered PER-7.
- the branched polyethylene used was numbered PER-7.
- the branched polyethylene used was numbered PER-9.
- the branched polyethylene used was numbered PER-8.
- the branched polyethylene used was numbered PER-5.
- the branched polyethylene used was numbered PER-6.
- Example 2 By comparison of Example 1, Example 2 and Comparative Example 1 and comparison of Examples 3 to 6 and Comparative Example 2, it can be found that the tensile strength of the obtained vulcanized rubber increases as the specific gravity of the branched polyethylene replaces the ethylene-propylene rubber increases. The strength, tear strength and volume resistivity are increased, and the compression set is lowered, indicating that the rubber composition containing the branched polyethylene can simultaneously obtain better mechanical properties, electrical insulation properties and compression set resistance.
- the branched polyethylenes used were numbered PER-1 and PER-7.
- the branched polyethylenes used were numbered PER-4 and PER-7.
- the branched polyethylene used was numbered PER-3.
- the branched polyethylenes used were numbered PER-2 and PER-7.
- the branched polyethylene used was numbered PER-11.
- the branched polyethylene used was numbered PER-12.
- the performance test data is as follows:
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- Compositions Of Macromolecular Compounds (AREA)
Abstract
L'invention concerne un composite de caoutchouc, un procédé de traitement, un élément d'étanchéité de condensateur mettant en application le composite de caoutchouc. Le composite de caoutchouc comprend un substrat en caoutchouc et des composants essentiels. Le substrat en caoutchouc comprend du polyéthylène ramifié, un caoutchouc monomère d'éthylène propylène et un caoutchouc monomère d'éthylène propylène diène. La teneur en polyéthylène ramifié est a : 0 < a ≤ 100 parties; la teneur en caoutchouc monomère d'éthylène propylène et en caoutchouc monomère d'éthylène propylène diène est b : b: 0 ≤ b < 100 parties. Les composants essentiels comprennent : 1,5 à 10 parties d'un agent de réticulation et 45 à 150 parties d'une charge de renforcement, la charge de renforcement comprenant du noir de carbone, et les parties en poids du noir de carbone étant 0 < a ≤ 30 parties. Le composite de caoutchouc est applicable dans la fabrication de l'élément d'étanchéité de condensateur. L'élément d'étanchéité de condensateur fabriqué à l'aide du composite de caoutchouc a une résistivité volumique élevée et une grande performance en matière de résistance à la déformation permanente sous compression.
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CN201810020829.6A CN108359179B (zh) | 2017-01-13 | 2018-01-10 | 橡胶组合物及加工方法与应用,及包含其的电容器用密封件 |
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CN112920517A (zh) * | 2021-03-01 | 2021-06-08 | 深圳市鑫华煦橡胶制品有限公司 | 一种耐电解液的三元乙丙橡胶及其制备方法 |
CN117004142A (zh) * | 2023-08-18 | 2023-11-07 | 东莞市博恩密封技术有限公司 | 一种耐高低温压缩变形epdm橡胶及其制备方法 |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN111393756A (zh) * | 2019-01-03 | 2020-07-10 | 中国石油天然气股份有限公司 | 一种核壳型球状茂金属乙丙橡胶与聚丙烯热塑性硫化胶 |
CN111393756B (zh) * | 2019-01-03 | 2023-01-10 | 中国石油天然气股份有限公司 | 一种核壳型球状茂金属乙丙橡胶与聚丙烯热塑性硫化胶 |
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CN117004142A (zh) * | 2023-08-18 | 2023-11-07 | 东莞市博恩密封技术有限公司 | 一种耐高低温压缩变形epdm橡胶及其制备方法 |
CN117004142B (zh) * | 2023-08-18 | 2024-03-19 | 东莞市博恩密封技术有限公司 | 一种耐高低温压缩变形epdm橡胶及其制备方法 |
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