US20080093378A1 - Mechanical dispenser and method for dispensing a fluent material - Google Patents
Mechanical dispenser and method for dispensing a fluent material Download PDFInfo
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- US20080093378A1 US20080093378A1 US11/584,893 US58489306A US2008093378A1 US 20080093378 A1 US20080093378 A1 US 20080093378A1 US 58489306 A US58489306 A US 58489306A US 2008093378 A1 US2008093378 A1 US 2008093378A1
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- Prior art keywords
- rack
- housing
- extruder
- tube
- mechanical dispenser
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D35/00—Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
- B65D35/24—Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices
- B65D35/28—Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices for expelling contents
Definitions
- This invention relates generally to a mechanical dispenser, and method for dispensing a fluent material.
- the invention is applicable for use in combination with a squeezable tube of toothpaste.
- the invention is also applicable for dispensing other fluent material including soft soap, food condiments, shampoo and other haircare products, and the like.
- the fluent material may be separately contained in squeezable packaging (as with toothpaste), or may be inserted directly into the mechanical dispenser and stored for subsequent dispensing.
- a mechanical dispenser comprising an elongated housing, first and second longitudinal racks, and an extruder.
- the housing is adapted for receiving and storing a fluent material.
- the fluent material may be removed from its container and inserted directly into the housing, or may be contained in a squeezable tube or other appropriate packaging which is inserted into the housing.
- housing is defined broadly herein to mean any framework or other structure which substantially surrounds or supports one or more internal components of the dispenser.
- fluent material refers broadly to any material capable of flowing without regard to its particular level of viscosity.
- extruder refers broadly to any structure operable to thrust out, force or press out, or expel the fluent material from the dispenser.
- the first rack resides in the housing and incorporates a first series of spaced teeth.
- the second rack is located adjacent to the first rack in the housing, and incorporates a second series of spaced teeth.
- the second rack is slidably movable relative to the first rack.
- the extruder is located within the housing, and is adapted for rectilinear movement along the first rack.
- the extruder has first and second hinged pawls for engaging respective first and second racks.
- the term “pawl” refers to any hinged, pivoted, or adjustable structure adapted to temporarily and/or selectively engage an interfering structure, such as the teeth of a rack.
- the first pawl of the extruder Upon movement of the second rack relative to the first rack from a first position to a second position, the first pawl of the extruder operatively engages a selected tooth of the first rack while the second pawl slides over a tooth of the second rack, thereby maintaining a first position of the extruder on the first rack.
- the second pawl Upon return movement of the second rack to the first position, the second pawl operatively engages the tooth of the second rack while the first pawl slides over and engages an adjacent tooth of the first rack, thereby advancing the extruder on the first rack to a second position such that fluent material stored in the housing is urged towards one end of the housing and dispensed.
- the first and second hinged pawls comprise resilient springs.
- means are provided for biasing the second rack in the first position.
- the biasing means comprises a resilient spring.
- a pivotable handle operatively engages the second rack to move the second rack from the first position to the second position.
- the first rack and the housing are integrally formed together as a single unit.
- the extruder defines a tube-receiving slot adapted for receiving a closed end of a squeezable tube containing the fluent material.
- the first and second racks comprise respective sets of spaced teeth, each set comprising four lines of teeth extending respectively from one end of the housing to the other.
- the extruder comprises first and second sets of hinged pawls, each set comprising four pawls operatively engaging respective lines of teeth formed with each of the first and second racks.
- a removable spout is located at one end of the housing.
- the invention is a mechanical dispenser in combination with a squeezable tube containing a fluent material.
- the invention is a method for dispensing a fluent material contained in a squeezable tube.
- the method includes the steps of inserting the squeezable tube into a housing of a mechanical dispenser, and then locating an extruder of the mechanical dispenser at a closed end of the squeezable tube.
- the mechanical dispenser is then actuated to urge the extruder in a direction towards an open end of the squeezable tube.
- the fluent material contained in the squeezable tube is dispensed.
- FIG. 1 is a perspective view of a mechanical dispenser according to one exemplary embodiment of the present invention
- FIG. 2 is a further perspective view of the mechanical dispenser
- FIG. 3 is an exploded view of the mechanical dispenser
- FIG. 4 is a cross-sectional view of the mechanical dispenser
- FIGS. 5 and 6 are enlarged perspective views of the traveling extruder
- FIGS. 7-11 are enlarged fragmentary views demonstrating sequential operation of the mechanical dispenser
- FIG. 12 is a perspective view of a mechanical dispenser according to a further exemplary embodiment of the present invention.
- FIG. 13 is another perspective view of the mechanical dispenser shown in FIG. 12 ;
- FIG. 14 is an exploded view of the mechanical dispenser shown in FIGS. 12 and 13 .
- FIGS. 1 and 2 a mechanical dispenser according to one exemplary embodiment of the invention is shown in FIGS. 1 and 2 , and indicated generally at reference numeral 10 .
- the mechanical dispenser 10 is applicable for dispensing fluent material, such as toothpaste contained in a conventional squeezable tube 11 .
- the mechanical dispenser 10 and its constituent parts are preferably formed of a rigid durable plastic, such as PVC or ABS.
- the mechanical dispenser 10 incorporates a removable spout 12 , a hollow exterior housing 14 , inner and outer racks 16 and 18 located within the housing 14 , and a traveling extruder 20 .
- the housing 14 has an outwardly-flanged open bottom 22 , opposing longitudinal keyways 23 and 24 , and a nozzle opening 25 .
- the squeezable tube 11 is stored inside the housing 14 , and has a standard externally-threaded nozzle 26 at one end and a sealed lateral edge 28 at an opposite end.
- the threaded nozzle 26 mates with a complementary-threaded internal opening (not shown) formed with the removable spout 12 to operatively join the spout 12 and tube 11 together.
- the inner and outer racks 16 , 18 reside adjacent the squeezable tube 11 inside the housing 14 , and comprise respective spaced-apart teeth “T” arranged longitudinally in eight individual lines 31 A, 31 B, 31 C, 31 D and 32 A, 32 B, 32 C, 32 D—four lines of teeth per rack.
- Each rack 16 , 18 has a substantially flat planar base 34 , 35 .
- the bases 34 , 35 define respective aligned center openings 36 and 37 .
- the inside and outside racks 16 , 18 form a generally tubular cavity, and nest together such that their respective teeth “T” align in four cooperating pairs 31 A, 32 A; 31 B, 32 B; 31 C, 32 C; and 31 D, 32 D.
- the teeth “T” in lines 31 A, 32 A and 31 B, 32 B are illustrated in FIG. 4 (lines 32 A and 32 B shown in cross-section). In this position, the teeth “T” are arranged in substantially co-linear rows of two; each row being equally spaced from an adjacent row. The teeth in lines 31 C, 32 C; and 31 D, 32 D align in an identical manner.
- the base 34 of the inside rack 16 is adapted to fit inside a vertical wall 41 formed with the base 35 of outside rack 18 .
- the base 35 has resilient leaf-type springs 42 and 43 which engage the base 34 , and cooperate to urge the inside rack 16 in a normal elevated position relative to the outside rack 18 .
- the springs 42 , 43 may comprise one or more curved narrow metal strips which are attached to the base 35 by respective retainers 44 and 45 .
- the flanged bottom 22 of the housing 14 resides adjacent the base 34 inside the vertical wall 41 .
- the housing 14 has opposing engagement pins 47 , 48 which cooperate with a pivoted handle 49 , as described below, to depress the housing 14 and inside rack 16 against the biasing force of the springs 42 , 43 , thereby effecting sliding linear movement of the inside rack 16 relative to the outside rack 18 .
- the handle 49 is pivotably attached to the vertical wall 41 of base 35 through openings 51 , 52 .
- longitudinal alignment keys 54 and 55 are formed with respective walls of the outside rack 18 and extend through the keyways 23 , 24 of the housing 14 to maintain proper alignment of the housing 14 and outside rack 18 during operation of the dispenser 10 .
- the traveling extruder 20 comprises a tapered through-slot 61 , opposing arcuate side walls 62 , 63 , substantially planar end walls 64 , 65 , and 4 pairs of resilient hinged pawls 66 A, 66 B; 67 A, 67 B; 68 A, 68 B; and 69 A, 69 B (i.e., 8 total).
- the pawls may comprise respective springs or other suitable biasing means.
- the side walls 62 , 63 are formed between respective pairs of pawls 66 A, 66 B; 67 A, 67 B; and 68 A, 68 B; 69 A, 69 B, and are shaped to reside closely adjacent complementary curved surfaces of the inner rack 16 .
- the end walls 64 , 65 reside closely adjacent respective inside surfaces of the outer rack 18 .
- FIGS. 7-11 demonstrate sequential operation of the mechanical dispenser 10 .
- squeezable tube 11 and portions of the housing 14 and inner and outer racks 16 , 18 are removed.
- the extruder 20 resides inside the housing 14 with hinged pawls 66 A, 66 B and 69 A, 69 B operatively engaging respective teeth in lines 32 A, 31 A and 32 D, 31 D of the outer and inner racks 18 , 16 .
- the handle 49 When the handle 49 is manually depressed, it engages the pins 47 , 48 (only 47 shown) to urge the housing 14 and inside rack 16 downward against the biasing force of the leaf-type springs 42 , 43 (only 43 shown).
- FIG. 10 shows the leaf-type springs 42 , 43 urge against the base 34 of the inner rack 16 causing the inner rack 16 and housing 14 to return upward to their original elevated positions relative to the outer rack 18 , as demonstrated in FIG. 10 .
- pawls 66 B and 69 B remain locked in position adjacent teeth of the inner rack 16 while pawls 66 A and 69 A slide over adjacent teeth of the outer rack 18 (See FIG. 10 ).
- FIG. 11 shows the inner rack 16 in its original elevated position relative to the outer rack 18 , and with the extruder 20 now moved up one tooth of the inner rack 16 and advanced towards the top of the dispenser 10 .
- This movement causes the squeezable tube 11 to flatten out in an area of the extruder 20 , thereby forcing a precise quantity of fluent material outwardly through the nozzle 26 and spout 12 at each upward movement of the extruder 20 .
- This process is repeated until the extruder 20 has traveled upwardly the entire length of the inside and outside racks 16 , 18 , and the fluent material is substantially emptied from the tube 11 .
- the spout 12 is first removed from the threaded nozzle 26 and the pivoted handle 49 rotated upwardly towards the housing 14 .
- the engagement pins 47 , 48 clear the handle 49 and the housing 14 is free to separate from the nested inner and outer racks 16 , 18 .
- the empty tube 11 and extruder 20 are pulled from the dispenser 10 .
- a fresh tube is then placed inside the racks 16 , 18 , and the housing 14 , spout 12 , and extruder 20 are re-assembled as previously described.
- the mechanical dispenser 80 comprises a removable top 81 , an open-ended exterior housing 82 , a pivoted handle 84 , a toothed rack 86 , and a traveling extruder 90 .
- the housing 82 is designed to receive and store a squeezable tube 91 of fluent material, such as toothpaste.
- the squeezable tube 91 has a standard externally-threaded nozzle 92 and a sealed lateral end edge 94 .
- a separately formed cover 95 closes one end of the housing 82 , and defines a small opening 96 adapted to receive the threaded nozzle 92 of the tube 91 .
- the removable top 81 has a complementary-threaded internal opening (not shown) which mates with the nozzle 92 , and a pivoted lid which serves to selectively open and close squeezable tube 91 . When assembled, the removable top 81 joins the cover 95 and tube 91 together.
- the toothed rack 86 extends inside the housing 82 , and has a spring-loaded base 101 which resides adjacent a rim 82 A of the housing 82 .
- the rack 86 comprises 4 lines of longitudinally arranged teeth 102 A, 102 B, 102 C, and 102 D.
- a second rack 104 is integrally formed with an inside surface of the housing 82 , and comprises 4 corresponding lines of teeth 106 A, 106 B, 106 C, and 106 D extending substantially from one end of the housing 82 to the other.
- the respective teeth of the first and second racks 86 and 104 align in four cooperating pairs of substantially parallel lines 102 A, 106 A; 102 B, 106 B; 102 C, 106 C; and 102 D, 106 D.
- the teeth in each pair are arranged in substantially co-linear rows of two; each row being equally spaced from an adjacent row.
- the end cover 95 is positioned over the spring-loaded base 101 of the first rack 86 , and has opposing pins 108 and 109 which cooperate with a pivoted handle 110 attached to the housing 82 .
- the handle 110 engages the pins 108 , 109 and depresses the toothed rack 86 against the biasing force of the base springs 111 , thereby effecting sliding linear movement of the first rack 86 relative to the second rack 104 and housing 82 .
- the handle 110 is pivotably attached to the housing 82 through openings 112 .
- the traveling extruder 90 comprises a tapered through-slot, opposing arcuate side walls, substantially planar end walls, and 4 pairs of resilient hinged pawls 121 A, 121 B; 122 A, 122 B; 123 A, 123 B; and 124 A, 124 B (i.e., 8 total).
- the sidewalls are formed between respective pairs of pawls 121 A, 121 B; 122 A, 122 B; and 123 A, 123 B; 124 A, 124 B, and are shaped to reside closely adjacent complementary curved inside surfaces of the first rack 86 .
- the end walls reside closely adjacent respective inside surfaces of the housing 82 .
- the extruder 90 is manually inserted through an open end 125 of the housing 82 .
- the sealed bottom edge 94 of the squeezable tube 91 passes through the tapered slot, while the 4 pairs of hinged pawls 121 A, 121 B; 122 A, 122 B; 123 A, 123 B; 124 A, 124 B operatively engage respective lines of teeth 102 A, 106 A; 102 B, 106 B; 102 C, 106 C; 102 D, 106 D formed with the inside and outside racks 86 and 104 .
- the first rack 86 slides linearly in one direction relative to the second rack 104 , and then slides back in an opposite direction to its original position by operation of the base springs 111 A and 111 B.
- This reciprocal shifting causes rectilinear movement of the extruder 90 along the racks 86 and 104 in a manner identical to that previously described.
- a precise quantity of fluent material is dispensed through the nozzle 92 and opened lid of the removable top 81 .
- the tube 91 is empty, the top 81 is removed from the threaded nozzle 92 and the pivoted handle 110 rotated substantially 120 degrees or more to clear the engagement pins 108 , 109 .
- the cover 95 is then free to separate from the housing 82 . With the cover 95 removed, the empty tube 91 and extruder 90 are pulled from the dispenser 80 . A fresh tube is then placed inside the racks 86 and 104 , and the cover 95 , top 81 , and extruder 90 are re-assembled as previously described.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Extrusion Moulding Of Plastics Or The Like (AREA)
- Tubes (AREA)
- Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
Abstract
A mechanical dispenser includes an elongated housing, first and second longitudinal racks, and an extruder. The housing is adapted for receiving and storing a fluent material. The first rack resides in the housing and incorporates a first series of spaced teeth. The second rack is located adjacent to the first rack in the housing, and incorporates a second series of spaced teeth. The second rack is slidably movable relative to the first rack. The extruder is located within the housing, and is adapted for rectilinear movement along the first rack. The extruder has first and second hinged pawls for engaging respective first and second racks. Upon movement of the second rack relative to the first rack from a first position to a second position, the first pawl of the extruder operatively engages a selected tooth of the first rack while the second pawl slides over a tooth of the second rack, thereby maintaining a first position of the extruder on the first rack. Upon return movement of the second rack to the first position, the second pawl operatively engages the tooth of the second rack while the first pawl slides over and engages an adjacent tooth of the first rack, thereby advancing the extruder on the first rack to a second position such that fluent material stored in the housing is urged towards one end of the housing and dispensed.
Description
- This invention relates generally to a mechanical dispenser, and method for dispensing a fluent material. In one exemplary implementation, the invention is applicable for use in combination with a squeezable tube of toothpaste. The invention is also applicable for dispensing other fluent material including soft soap, food condiments, shampoo and other haircare products, and the like. The fluent material may be separately contained in squeezable packaging (as with toothpaste), or may be inserted directly into the mechanical dispenser and stored for subsequent dispensing.
- Therefore, it is an object of the invention to provide a mechanical dispenser applicable for dispensing fluent materials.
- It is another object of the invention to provide a method for dispensing fluent materials.
- These and other objects of the present invention are achieved in the exemplary embodiments disclosed below by providing a mechanical dispenser comprising an elongated housing, first and second longitudinal racks, and an extruder. The housing is adapted for receiving and storing a fluent material. The fluent material may be removed from its container and inserted directly into the housing, or may be contained in a squeezable tube or other appropriate packaging which is inserted into the housing. The term “housing” is defined broadly herein to mean any framework or other structure which substantially surrounds or supports one or more internal components of the dispenser. The term “fluent material” refers broadly to any material capable of flowing without regard to its particular level of viscosity. The term “extruder” refers broadly to any structure operable to thrust out, force or press out, or expel the fluent material from the dispenser.
- The first rack resides in the housing and incorporates a first series of spaced teeth. The second rack is located adjacent to the first rack in the housing, and incorporates a second series of spaced teeth. The second rack is slidably movable relative to the first rack. The extruder is located within the housing, and is adapted for rectilinear movement along the first rack. The extruder has first and second hinged pawls for engaging respective first and second racks. The term “pawl” refers to any hinged, pivoted, or adjustable structure adapted to temporarily and/or selectively engage an interfering structure, such as the teeth of a rack.
- Upon movement of the second rack relative to the first rack from a first position to a second position, the first pawl of the extruder operatively engages a selected tooth of the first rack while the second pawl slides over a tooth of the second rack, thereby maintaining a first position of the extruder on the first rack. Upon return movement of the second rack to the first position, the second pawl operatively engages the tooth of the second rack while the first pawl slides over and engages an adjacent tooth of the first rack, thereby advancing the extruder on the first rack to a second position such that fluent material stored in the housing is urged towards one end of the housing and dispensed.
- According to another exemplary embodiment of the invention, the first and second hinged pawls comprise resilient springs.
- According to yet another exemplary embodiment of the invention, means are provided for biasing the second rack in the first position.
- According to yet another exemplary embodiment of the invention, the biasing means comprises a resilient spring.
- According to yet another exemplary embodiment of the invention, a pivotable handle operatively engages the second rack to move the second rack from the first position to the second position.
- According to yet another exemplary embodiment of the invention, the first rack and the housing are integrally formed together as a single unit.
- According to yet another exemplary embodiment of the invention, the extruder defines a tube-receiving slot adapted for receiving a closed end of a squeezable tube containing the fluent material.
- According to yet another exemplary embodiment of the invention, the first and second racks comprise respective sets of spaced teeth, each set comprising four lines of teeth extending respectively from one end of the housing to the other.
- According to yet another exemplary embodiment of the invention, the extruder comprises first and second sets of hinged pawls, each set comprising four pawls operatively engaging respective lines of teeth formed with each of the first and second racks.
- According to yet another exemplary embodiment of the invention, a removable spout is located at one end of the housing.
- In a further exemplary embodiment, the invention is a mechanical dispenser in combination with a squeezable tube containing a fluent material.
- In yet another exemplary embodiment, the invention is a method for dispensing a fluent material contained in a squeezable tube. The method includes the steps of inserting the squeezable tube into a housing of a mechanical dispenser, and then locating an extruder of the mechanical dispenser at a closed end of the squeezable tube. The mechanical dispenser is then actuated to urge the extruder in a direction towards an open end of the squeezable tube. As the extruder advances towards the open end of the squeezable tube, the fluent material contained in the squeezable tube is dispensed.
- Some of the objects of the invention have been set forth above. Other objects and advantages of the invention will appear as the description proceeds when taken in conjunction with the following drawings, in which:
-
FIG. 1 is a perspective view of a mechanical dispenser according to one exemplary embodiment of the present invention; -
FIG. 2 is a further perspective view of the mechanical dispenser; -
FIG. 3 is an exploded view of the mechanical dispenser; -
FIG. 4 is a cross-sectional view of the mechanical dispenser; -
FIGS. 5 and 6 are enlarged perspective views of the traveling extruder; -
FIGS. 7-11 are enlarged fragmentary views demonstrating sequential operation of the mechanical dispenser; -
FIG. 12 is a perspective view of a mechanical dispenser according to a further exemplary embodiment of the present invention; -
FIG. 13 is another perspective view of the mechanical dispenser shown inFIG. 12 ; and -
FIG. 14 is an exploded view of the mechanical dispenser shown inFIGS. 12 and 13 . - The present invention is described more fully hereinafter with reference to the accompanying drawings, in which one or more exemplary embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be operative, enabling, and complete. Like numbers refer to like elements throughout. As used herein, the article “a” is intended to include one or more items. Where only one item is intended, the term “one” or similar language is used. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation. Unless otherwise expressly defined herein, such terms are intended to be given their broad ordinary and customary meaning not inconsistent with that applicable in the relevant industry and without restriction to any specific embodiment hereinafter described. Any references to advantages, benefits, unexpected results, or operability of the present invention are not intended as an affirmation that the invention has been previously reduced to practice or that any testing has been performed.
- Referring now specifically to the drawings, a mechanical dispenser according to one exemplary embodiment of the invention is shown in
FIGS. 1 and 2 , and indicated generally atreference numeral 10. Themechanical dispenser 10 is applicable for dispensing fluent material, such as toothpaste contained in a conventionalsqueezable tube 11. Themechanical dispenser 10 and its constituent parts are preferably formed of a rigid durable plastic, such as PVC or ABS. - As best shown in
FIG. 3 , themechanical dispenser 10 incorporates aremovable spout 12, a hollowexterior housing 14, inner andouter racks housing 14, and atraveling extruder 20. Thehousing 14 has an outwardly-flangedopen bottom 22, opposinglongitudinal keyways squeezable tube 11 is stored inside thehousing 14, and has a standard externally-threadednozzle 26 at one end and a sealedlateral edge 28 at an opposite end. The threadednozzle 26 mates with a complementary-threaded internal opening (not shown) formed with theremovable spout 12 to operatively join thespout 12 andtube 11 together. - The inner and
outer racks squeezable tube 11 inside thehousing 14, and comprise respective spaced-apart teeth “T” arranged longitudinally in eightindividual lines rack planar base bases center openings pairs lines FIG. 4 (lines lines - As shown in
FIG. 4 , thebase 34 of theinside rack 16 is adapted to fit inside avertical wall 41 formed with thebase 35 ofoutside rack 18. Thebase 35 has resilient leaf-type springs 42 and 43 which engage thebase 34, and cooperate to urge theinside rack 16 in a normal elevated position relative to theoutside rack 18. Thesprings base 35 byrespective retainers flanged bottom 22 of thehousing 14 resides adjacent thebase 34 inside thevertical wall 41. Thehousing 14 has opposing engagement pins 47, 48 which cooperate with a pivotedhandle 49, as described below, to depress thehousing 14 and insiderack 16 against the biasing force of thesprings inside rack 16 relative to theoutside rack 18. In one exemplary embodiment, thehandle 49 is pivotably attached to thevertical wall 41 ofbase 35 throughopenings 51, 52. Preferably,longitudinal alignment keys outside rack 18 and extend through thekeyways housing 14 to maintain proper alignment of thehousing 14 and outsiderack 18 during operation of thedispenser 10. - Referring to
FIGS. 3-6 , the travelingextruder 20 comprises a tapered through-slot 61, opposingarcuate side walls planar end walls pawls side walls pawls inner rack 16. Theend walls outer rack 18. To complete assembly of themechanical dispenser 10, theextruder 20 is manually inserted through respective alignedopenings bases extruder 20 enters thedispenser 10, the sealedbottom edge 28 of thesqueezable tube 11 passes through the tapered slot 61 (SeeFIG. 4 ), while the 4 pairs of pivotedpawls teeth Pawls lines outside rack 18, whilepawls lines inside rack 14.) -
FIGS. 7-11 demonstrate sequential operation of themechanical dispenser 10. For purposes of illustration,squeezable tube 11 and portions of thehousing 14 and inner andouter racks FIG. 7 , theextruder 20 resides inside thehousing 14 with hingedpawls lines inner racks handle 49 is manually depressed, it engages thepins 47, 48 (only 47 shown) to urge thehousing 14 and insiderack 16 downward against the biasing force of the leaf-type springs 42, 43 (only 43 shown). As theinner rack 16 slides downward relative to theouter rack 18, as demonstrated inFIGS. 8 and 8A , theresilient pawls extruder 20 pass over the teeth of theinner rack 16 whilepawls outer rack 18. When theinner rack 16 reaches thebase 35 of theouter rack 18, as shown inFIG. 9 , thepawls extruder 20 advance to adjacent teeth of theinner rack 16. At this point, the pivotedhandle 49 is released. The leaf-type springs 42, 43 urge against thebase 34 of theinner rack 16 causing theinner rack 16 andhousing 14 to return upward to their original elevated positions relative to theouter rack 18, as demonstrated inFIG. 10 . As theinner rack 16 moves upward, pawls 66B and 69B remain locked in position adjacent teeth of theinner rack 16 whilepawls FIG. 10 ).FIG. 11 shows theinner rack 16 in its original elevated position relative to theouter rack 18, and with theextruder 20 now moved up one tooth of theinner rack 16 and advanced towards the top of thedispenser 10. This movement causes thesqueezable tube 11 to flatten out in an area of theextruder 20, thereby forcing a precise quantity of fluent material outwardly through thenozzle 26 and spout 12 at each upward movement of theextruder 20. This process is repeated until theextruder 20 has traveled upwardly the entire length of the inside and outside racks 16, 18, and the fluent material is substantially emptied from thetube 11. - In order to replace the
empty tube 11, thespout 12 is first removed from the threadednozzle 26 and the pivotedhandle 49 rotated upwardly towards thehousing 14. With thehandle 49 rotated upwardly, the engagement pins 47, 48 clear thehandle 49 and thehousing 14 is free to separate from the nested inner andouter racks housing 14 is removed, theempty tube 11 andextruder 20 are pulled from thedispenser 10. A fresh tube is then placed inside theracks housing 14,spout 12, andextruder 20 are re-assembled as previously described. - A further exemplary implementation of the present invention is shown in
FIGS. 12 , 13, and 14. In this embodiment, themechanical dispenser 80 comprises a removable top 81, an open-endedexterior housing 82, a pivotedhandle 84, atoothed rack 86, and a travelingextruder 90. Thehousing 82 is designed to receive and store asqueezable tube 91 of fluent material, such as toothpaste. Thesqueezable tube 91 has a standard externally-threadednozzle 92 and a sealedlateral end edge 94. A separately formedcover 95 closes one end of thehousing 82, and defines asmall opening 96 adapted to receive the threadednozzle 92 of thetube 91. The removable top 81 has a complementary-threaded internal opening (not shown) which mates with thenozzle 92, and a pivoted lid which serves to selectively open and closesqueezable tube 91. When assembled, the removable top 81 joins thecover 95 andtube 91 together. - The
toothed rack 86 extends inside thehousing 82, and has a spring-loadedbase 101 which resides adjacent arim 82A of thehousing 82. Therack 86 comprises 4 lines of longitudinally arrangedteeth second rack 104 is integrally formed with an inside surface of thehousing 82, and comprises 4 corresponding lines ofteeth housing 82 to the other. When thefirst rack 86 is assembled inside thehousing 82, the respective teeth of the first andsecond racks parallel lines - The
end cover 95 is positioned over the spring-loadedbase 101 of thefirst rack 86, and has opposingpins housing 82. When manually actuated, the handle 110 engages thepins toothed rack 86 against the biasing force of the base springs 111, thereby effecting sliding linear movement of thefirst rack 86 relative to thesecond rack 104 andhousing 82. In one exemplary embodiment, the handle 110 is pivotably attached to thehousing 82 through openings 112. - As previously described, the traveling
extruder 90 comprises a tapered through-slot, opposing arcuate side walls, substantially planar end walls, and 4 pairs of resilient hingedpawls pawls first rack 86. The end walls reside closely adjacent respective inside surfaces of thehousing 82. To complete assembly of themechanical dispenser 80, theextruder 90 is manually inserted through anopen end 125 of thehousing 82. As the extruder enters thedispenser 80, the sealedbottom edge 94 of thesqueezable tube 91 passes through the tapered slot, while the 4 pairs of hingedpawls teeth racks - By depressing the handle 110, the
first rack 86 slides linearly in one direction relative to thesecond rack 104, and then slides back in an opposite direction to its original position by operation of the base springs 111A and 111B. This reciprocal shifting causes rectilinear movement of theextruder 90 along theracks extruder 90, a precise quantity of fluent material is dispensed through thenozzle 92 and opened lid of the removable top 81. When thetube 91 is empty, the top 81 is removed from the threadednozzle 92 and the pivoted handle 110 rotated substantially 120 degrees or more to clear the engagement pins 108, 109. Thecover 95 is then free to separate from thehousing 82. With thecover 95 removed, theempty tube 91 andextruder 90 are pulled from thedispenser 80. A fresh tube is then placed inside theracks cover 95, top 81, andextruder 90 are re-assembled as previously described. - Exemplary embodiments of the present invention are described above. No element, act, or instruction used in this description should be construed as critical or essential to the invention unless explicitly described as such. Various details of the invention may be changed without departing from its scope. Furthermore, the foregoing description of the exemplary embodiments of the invention and best mode for practicing the invention are provided for the purpose of illustration only and not for the purpose of limitation-the invention being defined by the claims and their equivalents.
Claims (20)
1. A mechanical dispenser, comprising:
an elongated housing adapted for receiving and storing a fluent material;
a first longitudinal rack residing in said housing and comprising a first series of spaced teeth;
a second longitudinal rack located adjacent to said first rack in said housing, and comprising a second series of spaced teeth;
said second rack being slidably movable relative to said first rack;
an extruder located within said housing and adapted for rectilinear movement along said first rack, and said extruder having first and second hinged pawls for engaging respective first and second racks, whereby:
upon movement of said second rack relative to said first rack from a first position to a second position, the first pawl of said extruder operatively engages a selected tooth of said first rack while the second pawl slides over a tooth of said second rack, thereby maintaining a first position of said extruder on said first rack; and
upon return movement of said second rack to the first position, the second pawl operatively engages the tooth of said second rack while the first pawl slides over and engages an adjacent tooth of said first rack, thereby advancing said extruder on said first rack to a second position such that fluent material stored in said housing is urged towards one end of said housing and dispensed.
2. A mechanical dispenser according to claim 1 , wherein said first and second hinged pawls comprise resilient springs.
3. A mechanical dispenser according to claim 1 , and comprising means for biasing said second rack in the first position.
4. A mechanical dispenser according to claim 3 , wherein said biasing means comprises a resilient spring.
5. A mechanical dispenser according to claim 1 , and comprising a pivotable handle operatively engaging said second rack to move said second rack from the first position to the second position.
6. A mechanical dispenser according to claim 1 , wherein said first rack and said housing are integrally formed together as a single unit.
7. A mechanical dispenser according to claim 1 , wherein said extruder defines a tube-receiving slot adapted for receiving a closed end of a squeezable tube containing the fluent material.
8. A mechanical dispenser according to claim 1 , wherein said first and second racks comprise respective sets of spaced teeth, each set comprising four lines of teeth extending respectively from one end of said housing to the other.
9. A mechanical dispenser according to claim 8 , wherein said extruder comprises first and second sets of hinged pawls, each set comprising four pawls operatively engaging respective lines of teeth formed with each of said first and second racks.
10. A mechanical dispenser according to claim 1 , and comprising a removable spout located at one end of said housing.
11. In combination with a squeezable tube containing a fluent material, a mechanical dispenser comprising:
an elongated housing for receiving and storing said tube;
a first longitudinal rack residing in said housing and comprising a first series of spaced teeth;
a second longitudinal rack located adjacent to said first rack in said housing, and comprising a second series of spaced teeth;
said second rack being slidably movable relative to said first rack;
an extruder located within said housing and adapted for rectilinear movement along said first rack, and said extruder defining a tube-receiving slot through which a closed end of said tube is inserted;
said extruder having first and second hinged pawls for engaging respective first and second racks, whereby:
upon movement of said second rack relative to said first rack from a first position to a second position, the first pawl of said extruder operatively engages a selected tooth of said first rack while the second pawl slides over a tooth of said second rack, thereby maintaining a first position of said extruder on said first rack; and
upon return movement of said second rack to the first position, the second pawl operatively engages the tooth of said second rack while the first pawl slides over and engages an adjacent tooth of said first rack, thereby advancing said extruder on said first rack to a second position, and squeezing said tube such that fluent material stored in said tube is urged towards an open end of said tube and dispensed.
12. A combination according to claim 11 , wherein said first and second hinged pawls comprise resilient springs.
13. A combination according to claim 11 , and comprising means for biasing said second rack in the first position.
14. A combination according to claim 13 , wherein said biasing means comprises a resilient spring.
15. A combination according to claim 11 , and comprising a pivotable handle operatively engaging said second rack to move said second rack from the first position to the second position.
16. A combination according to claim 11 , wherein said first rack and said housing are integrally formed together as a single unit.
17. A combination according to claim 11 , wherein said first and second racks comprise respective sets of spaced teeth, each set comprising four lines of teeth extending respectively from one end of said housing to the other.
18. A combination according to claim 17 , wherein said extruder comprises first and second sets of hinged pawls, each set comprising four pawls operatively engaging respective lines of teeth formed with each of said first and second racks.
19. A combination according to claim 11 , and comprising a spout removably attached to the open end of said tube.
20. A method for dispensing a fluent material contained in a squeezable tube, said method comprising the steps of:
inserting the squeezable tube into a housing of a mechanical dispenser;
locating an extruder of the mechanical dispenser at a closed end of the squeezable tube;
actuating the mechanical dispenser to urge the extruder in a direction towards an open end of the squeezable tube; and
as the extruder advances towards the open end of the squeezable tube, dispensing the fluent material contained in the squeezable tube.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US11/584,893 US20080093378A1 (en) | 2006-10-23 | 2006-10-23 | Mechanical dispenser and method for dispensing a fluent material |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US11/584,893 US20080093378A1 (en) | 2006-10-23 | 2006-10-23 | Mechanical dispenser and method for dispensing a fluent material |
Publications (1)
Publication Number | Publication Date |
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US20080093378A1 true US20080093378A1 (en) | 2008-04-24 |
Family
ID=39316962
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US11/584,893 Abandoned US20080093378A1 (en) | 2006-10-23 | 2006-10-23 | Mechanical dispenser and method for dispensing a fluent material |
Country Status (1)
Country | Link |
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US (1) | US20080093378A1 (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR200455576Y1 (en) | 2008-12-16 | 2011-09-15 | (주)연우 | Pumping cosmetic container with tube grip |
WO2012109525A2 (en) * | 2011-02-10 | 2012-08-16 | Stephen Derby | Refillable container with a zero waste dispensing system |
US11084629B1 (en) * | 2021-03-25 | 2021-08-10 | Kletcher, LLC | Reusable pusher for integrated squeezable container |
US11447301B2 (en) * | 2016-06-01 | 2022-09-20 | Klecher, Llc | Integrated squeezable dispensing container |
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US2495464A (en) * | 1946-07-19 | 1950-01-24 | Lingdell Harry | Dispenser for collapsible containers |
US2496004A (en) * | 1945-11-19 | 1950-01-31 | Catherine M Geyer | Paste dispenser |
US2596310A (en) * | 1951-12-27 | 1952-05-13 | Vita Lawrence | Dispensing device for collapsible tubes |
US3257039A (en) * | 1964-06-03 | 1966-06-21 | Steve J Trutza | Tube dispenser |
US3325057A (en) * | 1965-10-22 | 1967-06-13 | Jr Cornelius B Watson | Collapsible tube squeezer |
US4019655A (en) * | 1975-12-17 | 1977-04-26 | Moeller Wolfgang W | Mechanical dispenser |
US4331265A (en) * | 1981-01-07 | 1982-05-25 | Warlick Harley A | Tube squeezer-dispenser with drip prevention |
US4448329A (en) * | 1980-12-09 | 1984-05-15 | Vilaseca Hilario S | Dispenser for tubes of fluent material |
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- 2006-10-23 US US11/584,893 patent/US20080093378A1/en not_active Abandoned
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US2496004A (en) * | 1945-11-19 | 1950-01-31 | Catherine M Geyer | Paste dispenser |
US2495464A (en) * | 1946-07-19 | 1950-01-24 | Lingdell Harry | Dispenser for collapsible containers |
US2596310A (en) * | 1951-12-27 | 1952-05-13 | Vita Lawrence | Dispensing device for collapsible tubes |
US3257039A (en) * | 1964-06-03 | 1966-06-21 | Steve J Trutza | Tube dispenser |
US3325057A (en) * | 1965-10-22 | 1967-06-13 | Jr Cornelius B Watson | Collapsible tube squeezer |
US4019655A (en) * | 1975-12-17 | 1977-04-26 | Moeller Wolfgang W | Mechanical dispenser |
US4448329A (en) * | 1980-12-09 | 1984-05-15 | Vilaseca Hilario S | Dispenser for tubes of fluent material |
US4331265A (en) * | 1981-01-07 | 1982-05-25 | Warlick Harley A | Tube squeezer-dispenser with drip prevention |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR200455576Y1 (en) | 2008-12-16 | 2011-09-15 | (주)연우 | Pumping cosmetic container with tube grip |
WO2012109525A2 (en) * | 2011-02-10 | 2012-08-16 | Stephen Derby | Refillable container with a zero waste dispensing system |
WO2012109525A3 (en) * | 2011-02-10 | 2012-11-15 | Stephen Derby | Refillable container with a zero waste dispensing system |
US20140021221A1 (en) * | 2011-02-10 | 2014-01-23 | Stephen Derby | Refillable container with a zero waste dispensing system |
US11447301B2 (en) * | 2016-06-01 | 2022-09-20 | Klecher, Llc | Integrated squeezable dispensing container |
US11084629B1 (en) * | 2021-03-25 | 2021-08-10 | Kletcher, LLC | Reusable pusher for integrated squeezable container |
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Owner name: MOBIUS INNOVATIONS, LLC, NORTH CAROLINA Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:WOLFE, JACK;REEL/FRAME:018511/0190 Effective date: 20061103 |
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STCB | Information on status: application discontinuation |
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