US20060032866A1 - Plastic dispensing container having reduced moisture penetration and method for same - Google Patents

Plastic dispensing container having reduced moisture penetration and method for same Download PDF

Info

Publication number
US20060032866A1
US20060032866A1 US10/918,224 US91822404A US2006032866A1 US 20060032866 A1 US20060032866 A1 US 20060032866A1 US 91822404 A US91822404 A US 91822404A US 2006032866 A1 US2006032866 A1 US 2006032866A1
Authority
US
United States
Prior art keywords
head
container
layer
dessicant
sleeve
Prior art date
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.)
Abandoned
Application number
US10/918,224
Inventor
Cliff Labbe
Robert Miskevich
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Pechiney Plastic Packaging Inc
Original Assignee
Pechiney Plastic Packaging Inc
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Pechiney Plastic Packaging Inc filed Critical Pechiney Plastic Packaging Inc
Priority to US10/918,224 priority Critical patent/US20060032866A1/en
Assigned to PECHINEY PLASTIC PACKAGING, INC. reassignment PECHINEY PLASTIC PACKAGING, INC. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: LABBE, CLIFF, MISKEVICH, ROBERT
Priority to EP05782978A priority patent/EP1776285A2/en
Priority to CNA2005800275446A priority patent/CN101102882A/en
Priority to PCT/US2005/027648 priority patent/WO2006020479A2/en
Priority to MX2007001537A priority patent/MX2007001537A/en
Priority to CA002578357A priority patent/CA2578357A1/en
Priority to BRPI0514249-0A priority patent/BRPI0514249A/en
Publication of US20060032866A1 publication Critical patent/US20060032866A1/en
Priority to US11/541,030 priority patent/US20070026174A1/en
Abandoned legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS 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
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/24Adaptations for preventing deterioration or decay of contents; Applications to the container or packaging material of food preservatives, fungicides, pesticides or animal repellants
    • B65D81/26Adaptations for preventing deterioration or decay of contents; Applications to the container or packaging material of food preservatives, fungicides, pesticides or animal repellants with provision for draining away, or absorbing, or removing by ventilation, fluids, e.g. exuded by contents; Applications of corrosion inhibitors or desiccators
    • B65D81/266Adaptations for preventing deterioration or decay of contents; Applications to the container or packaging material of food preservatives, fungicides, pesticides or animal repellants with provision for draining away, or absorbing, or removing by ventilation, fluids, e.g. exuded by contents; Applications of corrosion inhibitors or desiccators for absorbing gases, e.g. oxygen absorbers or desiccants
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS 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
    • B65D35/00Pliable 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
    • B65D35/14Pliable 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 linings or inserts
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/13Hollow or container type article [e.g., tube, vase, etc.]
    • Y10T428/1352Polymer or resin containing [i.e., natural or synthetic]

Definitions

  • the present invention relates to a plastic dispensing tube container exhibiting reduced moisture penetration or infiltration.
  • the present invention further relates to a method for reducing moisture permeation into a plastic dispensing tube container.
  • Plastic tube containers are employed commercially to store and dispense a variety of products, including those in the form of creams, ointments, pastes, liquids, semi-solids, lotions and the like. Products include personal care products, consumer products, and industrial products.
  • Dispensing tube containers typically comprise a tube sleeve, a head, and a closure.
  • the head is heat welded or otherwise affixed to or mated with an end of the tube sleeve.
  • the head defines a shoulder and a neck extending from the shoulder with a passageway therethrough.
  • the neck is adapted to receive and engage with a closure.
  • the neck and the closure may engage by known means such as mating threads or snap beads.
  • the end of the tube sleeve opposite the head is sealed after the chamber within the sleeve is filled with product.
  • Moisture-sensitive products include RTV (room-temperature vulcanized) silicone adhesives and cyanoacrylates.
  • One means of addressing the problem of storing and dispensing moisture-sensitive products is to employ tube sleeves having one or more barrier layers to reduce the permeation rate of moisture, i.e., water vapor, into the dispensing tube container.
  • the barrier layer(s) are typically comprised of known barrier materials, such as polyolefins, e.g. high density polyethylene and polypropylene, and metal foils.
  • Plastic dispensing containers having tube sleeves with barrier layers are shown in U.S. Pat. Nos. 4,471,268; 4,698,247 and 4,986,053.
  • a plastic dispensing tube container there is a plastic dispensing tube container.
  • the container has a head and a tube sleeve.
  • the head also has a shoulder and a neck.
  • the sleeve has two ends with one end thereof attached to the shoulder.
  • the head also has a dessicant therein in an amount sufficient to reduce the permeation of moisture, i.e., water vapor, through a portion of or the entirety of the head.
  • the container has a head and a tube sleeve.
  • the head has a shoulder and a neck.
  • the tube sleeve has two ends with one end thereof attached to the shoulder.
  • the method has the step of adding a dessicant to the head in an amount sufficient to reduce the permeation of moisture through a portion of or the entirety of the head.
  • FIG. 1 is a perspective view of a dispensing tube container in accordance with the present invention.
  • FIG. 2 is a perspective view of the container of FIG. 1 with a cap screwed on.
  • FIG. 3 is a cross-section view of the container of FIG. 1 along a line 3 - 3 .
  • FIG. 4 is a close-up, enlarged, cross-section view of the tube sleeve of the container of FIG. 1 as shown in FIG. 3 .
  • the head of the dispensing tube container of the present invention has a dessicant therein in an amount sufficient to reduce the rate of permeation of moisture through the head relative to the rate without the dessicant.
  • the dessicant is preferably present in the head in an amount about 0.1 to about 25 wt %, more preferably about 0.5 to about 10 wt %, and most preferably 0.5 to about 5 wt % based upon the total weight of the head.
  • the dessicant may be present in a portion of or the entirety of the head.
  • the dessicant may be present in either or both of the shoulder and the neck.
  • the dessicant is admixed substantially homogeneously throughout the entirety of the head.
  • the dessicant may be present in one or more film layers at the interior or exterior surfaces of the head.
  • the dessicant may be any substance which reduces the rate of permeation of moisture (water vapor) when dispersed in the head.
  • the dessicant may reduce the rate of permeation by any means, such as by absorption, reaction, and physical absorption.
  • Dessicants that function via absorption include anhydrous salts that absorb water to form more stable salts.
  • Dessicants that function via reaction e.g., hydrolysis
  • Dessicants that function via physical absorption water physically entrain water via capillary action.
  • dessicants which operate primarily via absorption include, but are not limited to, ammonium chloride, calcium chloride, calcium carbonate, calcium oxide, potassium chloride, potassium carbonate, sodium chloride, sodium phosphate di-basic, sodium pyrophosphate, and sodium nitrate.
  • dessicants which operate primarily through physical absorption include, but are not limited to, molecular sieves, silica gels, clays, and starches. Additional teachings regarding dessicants are shown at columns 6 and 7 of U.S. Pat. No. 6,080,350, the columns of which are incorporated herein by reference.
  • Dispensing tubes may be produced by any method known in the art such as extrusion or lamination.
  • extrusion a plastic tube sleeve is extruded continuously then cut into discrete lengths that form the body wall of the tube.
  • a tube head is then heat welded or adhered to one end of a tube sleeve, the top of the neck snipped or removed to open it (if necessary), and a closure in the nature of a cap, top, or lid applied to the neck.
  • the other open end of the tube sleeve is typically filled with product to be dispensed and then sealed by heat, adhesive, or mechanical means.
  • Laminates In lamination, a sheet of plastic material or composite such as plastic/metal foil is rolled to a tubular shape and sealed along the sheet edges to form a continuous tube sleeve.
  • the tube sleeve is cut into discrete lengths, head and closure applied, filled with product at the open end, and the end sealed in the same manner as an extruded tube.
  • Laminates may have both extruded and non-extruded layers.
  • Useful extrusion techniques include, but are not limited to, cast extrusion and blown extrusion.
  • the dessicant may be admixed or blended into the plastic material making up the head by any means known in the art.
  • the dessicant may be introduced into a melt of the plastic material in a mixer or extruder.
  • the dessicant may also be dry-blended with granules or powders of the plastic material and fed to an extruder or mixer.
  • the dessicant may also be pre-compounded in a plastic material and granules or powders of the material subsequently fed along with additional plastic to an extruder or mixer.
  • a dessicant may be incorporated into the sleeve of the tube container.
  • the dessicant can be dispersed substantially throughout the sleeve or any part thereof.
  • the dessicant may also be incorporated into the sleeve in the form of an extruded or laminated sublayer or film layer.
  • FIGS. 1 to 4 A dispensing tube container is shown in FIGS. 1 to 4 , and is generally referenced by the numeral 10 .
  • Container 10 has a head 12 heat welded to one end of a tube sleeve 20 .
  • Head 12 has a shoulder 14 and a neck 16 .
  • sleeve 20 defines a chamber 22 therein for retaining a dispensable product 24 .
  • Neck 16 has an orifice 26 therein and a passageway 28 therethrough in communication with chamber 22 so that product 24 is conveyed through orifice 26 and passageway 28 upon squeezing or mechanical manipulation of sleeve 20 .
  • the end of sleeve 20 opposite head 12 terminates at seal 30 , which takes the form of a heat seal at an end portion of sleeve 20 .
  • Neck 16 has threads 32 adapted to receive screw cap 34 (the closure).
  • the closure and head may be manufactured according to any method known in the art such as injection molding or stamping with a plastic material. Injection molding is preferred.
  • the tube dispenser including the tube sleeve, head, and closure, may be manufactured from any plastic material known in the art.
  • Representative plastic materials include, but are not limited to, ethylene polymers, propylene polymers, polyesters, and polyamides.
  • Useful ethylene polymers include low density polyethylene, medium density polyethylene, high density polyethylene and linear low density polyethylene.
  • a useful propylene polymer is polypropylene.
  • Useful polyesters include polyethylene terephthalate.
  • Preferred plastic materials for the head and the closure are high density polyethylene and polypropylene.
  • a preferred plastic material for an extruded tube sleeve is low density polyethylene, or, in the case of a barrier sleeve, high density polyethylene.
  • Preferred plastic materials for laminate tube sleeves include low density polyethylene and linear low density polyethylene.
  • the head and closure are of a plastic material more rigid than the tube sleeve.
  • Adhesive or tie layers may be employed as necessary.
  • Plastic materials useful in adhesive layers include, but are not limited to, ethylene/vinyl acetate copolymers, ethylene/acrylic acid copolymers, and ionomers.
  • Containers of the present invention are particularly useful in dispensing moisture-sensitive products, such as RTV silicone adhesives and cyanoacrylates.
  • the tube sleeve is multilayer and has one or more barrier layers.
  • Useful materials for barrier layers include metal foils, an ethylene/vinyl alcohol copolymers, and combinations of the foregoing.
  • An embodiment for a multilayer structure has the following: a) a first layer (inner layer) of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a layer of an ethylene/vinyl alcohol copolymer, d) a second adhesive layer, e) a layer of a metal foil, f) a third adhesive layer, and g) a second layer (outer layer) of a thermoplastic polymer.
  • FIG. 4 illustrates this embodiment.
  • Sleeve 20 has an inner layer 42 of a heat sealable, thermoplastic polymer, a first adhesive layer 44 , a ethylene/vinyl alcohol copolymer layer 46 , a second adhesive layer 48 , a metal foil layer 50 , a third adhesive layer 52 , an outer layer 54 of a thermoplastic material.
  • Layers of ethylene/vinyl alcohol copolymers are useful in preventing delamination of subsequent layers due to attack by aggressive products or contents within the tube container. Otherwise, the layer of ethylene/vinyl alcohol copolymers and their attendant adhesive layers are optional.
  • a multilayer structure is the following: a) a first layer of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a barrier layer, d) a second adhesive layer, and e) a second layer of a thermoplastic polymer, wherein the ordering of the layers is from inside to outside.
  • Plastic dispensing containers having tube sleeves with barrier layers are shown in U.S. Pat. Nos. 4,471,268; 4,698,247 and 4,986,053, which are incorporated herein by reference.

Abstract

Disclosed is a plastic dispensing tube container. The container has a head and a tube sleeve. The head also has a dessicant therein in an amount sufficient to reduce the permeation of moisture through a portion of or the entirety thereof.

Description

    BACKGROUND OF THE INVENTION
  • 1. Field of the Invention
  • The present invention relates to a plastic dispensing tube container exhibiting reduced moisture penetration or infiltration. The present invention further relates to a method for reducing moisture permeation into a plastic dispensing tube container.
  • 2. Description of the Prior Art
  • Plastic tube containers are employed commercially to store and dispense a variety of products, including those in the form of creams, ointments, pastes, liquids, semi-solids, lotions and the like. Products include personal care products, consumer products, and industrial products. Dispensing tube containers typically comprise a tube sleeve, a head, and a closure. The head is heat welded or otherwise affixed to or mated with an end of the tube sleeve. The head defines a shoulder and a neck extending from the shoulder with a passageway therethrough. The neck is adapted to receive and engage with a closure. The neck and the closure may engage by known means such as mating threads or snap beads. The end of the tube sleeve opposite the head is sealed after the chamber within the sleeve is filled with product.
  • Some products are particularly sensitive to pre-mature moisture penetration or infiltration. Pre-mature moisture penetration or infiltration may result in product spoilage or pre-mature curing. Moisture-sensitive products include RTV (room-temperature vulcanized) silicone adhesives and cyanoacrylates.
  • One means of addressing the problem of storing and dispensing moisture-sensitive products is to employ tube sleeves having one or more barrier layers to reduce the permeation rate of moisture, i.e., water vapor, into the dispensing tube container. The barrier layer(s) are typically comprised of known barrier materials, such as polyolefins, e.g. high density polyethylene and polypropylene, and metal foils. Plastic dispensing containers having tube sleeves with barrier layers are shown in U.S. Pat. Nos. 4,471,268; 4,698,247 and 4,986,053.
  • Even when employing tube sleeves having barrier layers, prior art dispensing tube containers frequently do not prevent moisture penetration to a sufficient degree. Accordingly, it would be desirable to have a plastic dispensing tube container that provides a lower rate of moisture penetration or infiltration. Further, it would be desirable to have a method for reducing rate of moisture penetration into plastic dispensing tube containers. Still further, it would be desirable to have a method for extending the shelf life of products within plastic dispensing tube containers.
  • SUMMARY OF THE INVENTION
  • According to the present invention, there is a plastic dispensing tube container. The container has a head and a tube sleeve. The head also has a shoulder and a neck. The sleeve has two ends with one end thereof attached to the shoulder. The head also has a dessicant therein in an amount sufficient to reduce the permeation of moisture, i.e., water vapor, through a portion of or the entirety of the head.
  • Further according to the present invention, there is a method for reducing the permeation of moisture into a dispensing tube container. The container has a head and a tube sleeve. The head has a shoulder and a neck. The tube sleeve has two ends with one end thereof attached to the shoulder. The method has the step of adding a dessicant to the head in an amount sufficient to reduce the permeation of moisture through a portion of or the entirety of the head.
  • DESCRIPTION OF THE FIGURES
  • FIG. 1 is a perspective view of a dispensing tube container in accordance with the present invention.
  • FIG. 2 is a perspective view of the container of FIG. 1 with a cap screwed on.
  • FIG. 3 is a cross-section view of the container of FIG. 1 along a line 3-3.
  • FIG. 4 is a close-up, enlarged, cross-section view of the tube sleeve of the container of FIG. 1 as shown in FIG. 3.
  • DETAILED DESCRIPTION OF THE INVENTION
  • The head of the dispensing tube container of the present invention has a dessicant therein in an amount sufficient to reduce the rate of permeation of moisture through the head relative to the rate without the dessicant. The dessicant is preferably present in the head in an amount about 0.1 to about 25 wt %, more preferably about 0.5 to about 10 wt %, and most preferably 0.5 to about 5 wt % based upon the total weight of the head. The dessicant may be present in a portion of or the entirety of the head. The dessicant may be present in either or both of the shoulder and the neck. Preferably, the dessicant is admixed substantially homogeneously throughout the entirety of the head. Alternately, the dessicant may be present in one or more film layers at the interior or exterior surfaces of the head.
  • The dessicant may be any substance which reduces the rate of permeation of moisture (water vapor) when dispersed in the head. The dessicant may reduce the rate of permeation by any means, such as by absorption, reaction, and physical absorption. Dessicants that function via absorption include anhydrous salts that absorb water to form more stable salts. Dessicants that function via reaction (e.g., hydrolysis) react with water to form new compounds. Dessicants that function via physical absorption water physically entrain water via capillary action. Examples of dessicants which operate primarily via absorption include, but are not limited to, ammonium chloride, calcium chloride, calcium carbonate, calcium oxide, potassium chloride, potassium carbonate, sodium chloride, sodium phosphate di-basic, sodium pyrophosphate, and sodium nitrate. Examples of dessicants which operate primarily through physical absorption include, but are not limited to, molecular sieves, silica gels, clays, and starches. Additional teachings regarding dessicants are shown at columns 6 and 7 of U.S. Pat. No. 6,080,350, the columns of which are incorporated herein by reference.
  • Dispensing tubes may be produced by any method known in the art such as extrusion or lamination. In extrusion, a plastic tube sleeve is extruded continuously then cut into discrete lengths that form the body wall of the tube. A tube head is then heat welded or adhered to one end of a tube sleeve, the top of the neck snipped or removed to open it (if necessary), and a closure in the nature of a cap, top, or lid applied to the neck. The other open end of the tube sleeve is typically filled with product to be dispensed and then sealed by heat, adhesive, or mechanical means. In lamination, a sheet of plastic material or composite such as plastic/metal foil is rolled to a tubular shape and sealed along the sheet edges to form a continuous tube sleeve. The tube sleeve is cut into discrete lengths, head and closure applied, filled with product at the open end, and the end sealed in the same manner as an extruded tube. Laminates may have both extruded and non-extruded layers. Useful extrusion techniques include, but are not limited to, cast extrusion and blown extrusion.
  • The dessicant may be admixed or blended into the plastic material making up the head by any means known in the art. The dessicant may be introduced into a melt of the plastic material in a mixer or extruder. The dessicant may also be dry-blended with granules or powders of the plastic material and fed to an extruder or mixer. The dessicant may also be pre-compounded in a plastic material and granules or powders of the material subsequently fed along with additional plastic to an extruder or mixer.
  • If desired for additional protection against moisture vapor infiltration, a dessicant may be incorporated into the sleeve of the tube container. The dessicant can be dispersed substantially throughout the sleeve or any part thereof. Alternately, the dessicant may also be incorporated into the sleeve in the form of an extruded or laminated sublayer or film layer.
  • A dispensing tube container is shown in FIGS. 1 to 4, and is generally referenced by the numeral 10. Container 10 has a head 12 heat welded to one end of a tube sleeve 20. Head 12 has a shoulder 14 and a neck 16. As also seen in FIG. 3, sleeve 20 defines a chamber 22 therein for retaining a dispensable product 24. Neck 16 has an orifice 26 therein and a passageway 28 therethrough in communication with chamber 22 so that product 24 is conveyed through orifice 26 and passageway 28 upon squeezing or mechanical manipulation of sleeve 20. The end of sleeve 20 opposite head 12 terminates at seal 30, which takes the form of a heat seal at an end portion of sleeve 20. Neck 16 has threads 32 adapted to receive screw cap 34 (the closure).
  • The closure and head may be manufactured according to any method known in the art such as injection molding or stamping with a plastic material. Injection molding is preferred.
  • The tube dispenser, including the tube sleeve, head, and closure, may be manufactured from any plastic material known in the art. Representative plastic materials include, but are not limited to, ethylene polymers, propylene polymers, polyesters, and polyamides. Useful ethylene polymers include low density polyethylene, medium density polyethylene, high density polyethylene and linear low density polyethylene. A useful propylene polymer is polypropylene. Useful polyesters include polyethylene terephthalate. Preferred plastic materials for the head and the closure are high density polyethylene and polypropylene. A preferred plastic material for an extruded tube sleeve is low density polyethylene, or, in the case of a barrier sleeve, high density polyethylene. Preferred plastic materials for laminate tube sleeves include low density polyethylene and linear low density polyethylene. Preferably, the head and closure are of a plastic material more rigid than the tube sleeve. Adhesive or tie layers may be employed as necessary. Plastic materials useful in adhesive layers include, but are not limited to, ethylene/vinyl acetate copolymers, ethylene/acrylic acid copolymers, and ionomers.
  • Containers of the present invention are particularly useful in dispensing moisture-sensitive products, such as RTV silicone adhesives and cyanoacrylates.
  • In a preferred embodiment of the dispensing tube container, the tube sleeve is multilayer and has one or more barrier layers. Useful materials for barrier layers include metal foils, an ethylene/vinyl alcohol copolymers, and combinations of the foregoing. An embodiment for a multilayer structure has the following: a) a first layer (inner layer) of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a layer of an ethylene/vinyl alcohol copolymer, d) a second adhesive layer, e) a layer of a metal foil, f) a third adhesive layer, and g) a second layer (outer layer) of a thermoplastic polymer. FIG. 4 illustrates this embodiment. Sleeve 20 has an inner layer 42 of a heat sealable, thermoplastic polymer, a first adhesive layer 44, a ethylene/vinyl alcohol copolymer layer 46, a second adhesive layer 48, a metal foil layer 50, a third adhesive layer 52, an outer layer 54 of a thermoplastic material. Layers of ethylene/vinyl alcohol copolymers are useful in preventing delamination of subsequent layers due to attack by aggressive products or contents within the tube container. Otherwise, the layer of ethylene/vinyl alcohol copolymers and their attendant adhesive layers are optional. Another embodiment of a multilayer structure is the following: a) a first layer of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a barrier layer, d) a second adhesive layer, and e) a second layer of a thermoplastic polymer, wherein the ordering of the layers is from inside to outside. Plastic dispensing containers having tube sleeves with barrier layers are shown in U.S. Pat. Nos. 4,471,268; 4,698,247 and 4,986,053, which are incorporated herein by reference.
  • It should be understood that the foregoing description is only illustrative of the present invention. Various alternatives and modifications can be devised by those skilled in the art without departing from the invention. Accordingly, the present invention is intended to embrace all such alternatives, modifications and variances that fall within the scope of the appended claims.

Claims (26)

1. A plastic dispensing tube container, comprising:
a) a head, the head having a shoulder and a neck, the head having a dessicant therein in an amount sufficient to reduce the permeation of moisture through a portion of or the entirety of the head; and
b) a tube sleeve, the sleeve having two ends, one end of the sleeve being attached to the shoulder.
2. The container of claim 1, wherein the dessicant is present in the head in an amount about 0.1 to about 25 wt % based upon the total weight of the head.
3. The container of claim 1, wherein the dessicant is present in the head in an amount about 0.5 to about 10 wt % based upon the total weight of the head.
4. The container of claim 1, wherein the dessicant is present in the head in an amount about 0.5 to about 5 wt % based upon the total weight of the head.
5. The container of claim 1, wherein the dessicant is present in both the shoulder and the neck.
6. The container of claim 1, wherein the dessicant is dispersed substantially homogeneously throughout the entirety of the head.
7. The container of claim 1, wherein the tube sleeve has one or more barrier layers of one or more materials selected from the group consisting of a metal foil, high density polyethylene, polypropylene, and combinations of the foregoing.
8. The container of claim 1, wherein the tube sleeve is a laminate having a) a first layer of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a layer of an ethylene/vinyl alcohol copolymer, d) a second adhesive layer, e) a layer of a metal foil, f) a third adhesive layer, and g) a second layer of a thermoplastic polymer, wherein the ordering of the layers is from inside to outside.
9. The container of claim 1, wherein the tube sleeve is a laminate having a) a first layer of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a barrier layer, d) a second adhesive layer, and e) a second layer of a thermoplastic polymer, wherein the ordering of the layers is from inside to outside.
10. The container of claim 1, wherein the dessicant is selected from the group consisting of ammonium chloride, calcium chloride, calcium carbonate, calcium oxide potassium chloride, potassium carbonate, sodium chloride, sodium phosphate di-basic, sodium pyrophosphate, sodium nitrate, molecular sieves, silica gels, clays, and starches.
11. The container of claim 1, further comprising a product within the tube sleeve and a seal end opposite the shoulder.
12. The container of claim 11, further comprising a closure engaged with the neck.
13. The container of claim 1, wherein the product is an RTV silicone adhesive.
14. A method for reducing the permeation of moisture into a dispensing tube container having a head and a tube sleeve, wherein the head has a shoulder and a neck, and wherein the tube sleeve has two ends and one of those ends is attached to the shoulder; comprising:
adding a dessicant to the head in an amount sufficient to reduce the rate of permeation of moisture therethrough.
15. The method of claim 14, wherein the dessicant is added to the head in an amount about 0.1 to about 25 wt % based upon the total weight of the head.
16. The method of claim 14, wherein the dessicant is added to the head in an amount about 0.5 to about 10 wt % based upon the total weight of the head.
17. The method of claim 14, wherein the dessicant is added to the head in an amount about 0.5 to about 5 wt % based upon the total weight of the head.
18. The method of claim 14, wherein the dessicant is added to both the shoulder and the neck.
19. The method of claim 14, wherein the dessicant is dispersed substantially homogeneously throughout the entirety of the head.
20. The method of claim 14, wherein the tube sleeve has one or more barrier layers of one or more materials selected from the group consisting of a metal foil, high density polyethylene, polypropylene, and combinations of the foregoing.
21. The method of claim 14, wherein the tube sleeve is a laminate having a) a first layer of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a layer of an ethylene/vinyl alcohol copolymer, d) a second adhesive layer, e) a layer of a metal foil, f) a third adhesive layer, and g) a second layer of a thermoplastic polymer, wherein the ordering of the layers is from inside to outside.
22. The method of claim 14, wherein the tube sleeve is a laminate having a) a first layer of a heat sealable, thermoplastic polymer, b) a first adhesive layer, c) a barrier layer, d) a second adhesive layer, and e) a second layer of a thermoplastic polymer, wherein the ordering of the layers is from inside to outside.
23. The method of claim 14, wherein the dessicant is selected from the group consisting of ammonium chloride, calcium chloride, calcium carbonate, potassium chloride, potassium carbonate, sodium chloride, sodium phosphate di-basic, sodium pyrophosphate, sodium nitrate, molecular sieves, silica gels, clays, and starches.
24. The method of claim 14, wherein the dispensing tube container has a product within the tube sleeve and a seal at the end of the sleeve opposite the shoulder.
25. The method of claim 24, wherein the dispensing tube container has a closure engaged with the neck.
26. The method of claim 24, wherein the product is an RTV silicone adhesive.
US10/918,224 2004-08-13 2004-08-13 Plastic dispensing container having reduced moisture penetration and method for same Abandoned US20060032866A1 (en)

Priority Applications (8)

Application Number Priority Date Filing Date Title
US10/918,224 US20060032866A1 (en) 2004-08-13 2004-08-13 Plastic dispensing container having reduced moisture penetration and method for same
EP05782978A EP1776285A2 (en) 2004-08-13 2005-08-04 A plastic dispensing container having reduced moisture penetration and method for same
CNA2005800275446A CN101102882A (en) 2004-08-13 2005-08-04 A plastic dispensing container having reduced moisture penetration and method for same
PCT/US2005/027648 WO2006020479A2 (en) 2004-08-13 2005-08-04 A plastic dispensing container having reduced moisture penetration and method for same
MX2007001537A MX2007001537A (en) 2004-08-13 2005-08-04 A plastic dispensing container having reduced moisture penetration and method for same.
CA002578357A CA2578357A1 (en) 2004-08-13 2005-08-04 A plastic dispensing container having reduced moisture penetration and method for same
BRPI0514249-0A BRPI0514249A (en) 2004-08-13 2005-08-04 plastic dispensing tube container, and method for reducing moisture permeation into a dispensing tube container
US11/541,030 US20070026174A1 (en) 2004-08-13 2006-09-29 Plastic dispensing container having reduced moisture penetration and method for same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US10/918,224 US20060032866A1 (en) 2004-08-13 2004-08-13 Plastic dispensing container having reduced moisture penetration and method for same

Related Child Applications (1)

Application Number Title Priority Date Filing Date
US11/541,030 Division US20070026174A1 (en) 2004-08-13 2006-09-29 Plastic dispensing container having reduced moisture penetration and method for same

Publications (1)

Publication Number Publication Date
US20060032866A1 true US20060032866A1 (en) 2006-02-16

Family

ID=35799021

Family Applications (2)

Application Number Title Priority Date Filing Date
US10/918,224 Abandoned US20060032866A1 (en) 2004-08-13 2004-08-13 Plastic dispensing container having reduced moisture penetration and method for same
US11/541,030 Abandoned US20070026174A1 (en) 2004-08-13 2006-09-29 Plastic dispensing container having reduced moisture penetration and method for same

Family Applications After (1)

Application Number Title Priority Date Filing Date
US11/541,030 Abandoned US20070026174A1 (en) 2004-08-13 2006-09-29 Plastic dispensing container having reduced moisture penetration and method for same

Country Status (7)

Country Link
US (2) US20060032866A1 (en)
EP (1) EP1776285A2 (en)
CN (1) CN101102882A (en)
BR (1) BRPI0514249A (en)
CA (1) CA2578357A1 (en)
MX (1) MX2007001537A (en)
WO (1) WO2006020479A2 (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090152294A1 (en) * 2007-12-12 2009-06-18 Mizell Jeffrey W Dual-Tube Product Container and Dispenser
US20090294485A1 (en) * 2006-11-02 2009-12-03 Michael Ernest Garrett Product dispensing system
US20090324864A1 (en) * 2008-06-25 2009-12-31 Colgate-Palmolive Method of Making Shoulder/Nozzles With Film Barrier Liners
US20100279046A1 (en) * 2007-05-02 2010-11-04 Philip Colin Ashman Collapsible tube containers
US20110315923A1 (en) * 2010-03-22 2011-12-29 Saes Getters S.P.A. Composition for the protection of moisture sensitive devices
US20120132204A1 (en) * 2005-10-12 2012-05-31 Innovata Biomed Limited Unit dose dry powder inhaler
US20120180785A1 (en) * 2009-09-29 2012-07-19 Helen Mary Trill Pressurized Metered Dose Inhalers
US20130299512A1 (en) * 2012-05-14 2013-11-14 Naira Gevorkian Collapsible dispensing tube with internal press-to-close sealers to prevent reverse flow of the content towards the closed end
US9138968B2 (en) 2011-03-11 2015-09-22 Colgate-Palmolive Company Packaging and materials for making same
US20170253387A1 (en) * 2016-03-04 2017-09-07 Amisha Patel Bioplastic Collapsible Dispensing Tube
WO2021192473A1 (en) * 2020-03-24 2021-09-30 株式会社スリーボンド Container

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5766725B2 (en) 2010-02-26 2015-08-19 マイクロニック エービー Method and apparatus for performing pattern alignment
CN101862579A (en) * 2010-04-06 2010-10-20 任风芝 Starch-based high-efficiency moisture-absorbing desiccant

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4117184A (en) * 1976-06-07 1978-09-26 The Dow Chemical Company Absorbent films and laminates
US4407897A (en) * 1979-12-10 1983-10-04 American Can Company Drying agent in multi-layer polymeric structure
US4665050A (en) * 1984-08-13 1987-05-12 Pall Corporation Self-supporting structures containing immobilized inorganic sorbent particles and method for forming same
US4770944A (en) * 1979-12-10 1988-09-13 American Can Company Polymeric structure having improved barrier properties and method of making same
US4792484A (en) * 1986-05-15 1988-12-20 Kuraray Co., Ltd. Composition, process for producing the same and multi-layer structure
US4986053A (en) * 1988-11-22 1991-01-22 American National Can Company Methods of making improved packages
US5656346A (en) * 1991-01-21 1997-08-12 Kmk Lizence Ltd. Packaging tube
US6080350A (en) * 1995-04-19 2000-06-27 Capitol Specialty Plastics, Inc. Dessicant entrained polymer
US6110533A (en) * 1998-03-16 2000-08-29 Her Majesty The Queen In Right Of Canada, As Represented By The Minister Of Natural Resources Polymeric desiccant articles and process for their manufacture
US6170705B1 (en) * 1997-03-07 2001-01-09 Cebal Sa Double-walled tube with outer metal shell and inner plastic sheath
US6447860B1 (en) * 2000-05-12 2002-09-10 Pechiney Emballage Flexible Europe Squeezable containers for flowable products having improved barrier and mechanical properties
US6511568B1 (en) * 1993-06-24 2003-01-28 Pechiney Plastic Packaging, Inc. Structures of polymers made from single site catalysts
US6615883B2 (en) * 2001-12-07 2003-09-09 Pechiney Plastic Packagaing, Inc. Container having splines and method for using same

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4117184A (en) * 1976-06-07 1978-09-26 The Dow Chemical Company Absorbent films and laminates
US4407897A (en) * 1979-12-10 1983-10-04 American Can Company Drying agent in multi-layer polymeric structure
US4425410A (en) * 1979-12-10 1984-01-10 American Can Company Drying agent in multi-layer polymeric structure
US4464443A (en) * 1979-12-10 1984-08-07 American Can Company Drying agent in multi-layer polymeric structure
US4770944A (en) * 1979-12-10 1988-09-13 American Can Company Polymeric structure having improved barrier properties and method of making same
US4665050A (en) * 1984-08-13 1987-05-12 Pall Corporation Self-supporting structures containing immobilized inorganic sorbent particles and method for forming same
US4792484A (en) * 1986-05-15 1988-12-20 Kuraray Co., Ltd. Composition, process for producing the same and multi-layer structure
US4986053A (en) * 1988-11-22 1991-01-22 American National Can Company Methods of making improved packages
US5656346A (en) * 1991-01-21 1997-08-12 Kmk Lizence Ltd. Packaging tube
US6511568B1 (en) * 1993-06-24 2003-01-28 Pechiney Plastic Packaging, Inc. Structures of polymers made from single site catalysts
US6080350A (en) * 1995-04-19 2000-06-27 Capitol Specialty Plastics, Inc. Dessicant entrained polymer
US6170705B1 (en) * 1997-03-07 2001-01-09 Cebal Sa Double-walled tube with outer metal shell and inner plastic sheath
US6110533A (en) * 1998-03-16 2000-08-29 Her Majesty The Queen In Right Of Canada, As Represented By The Minister Of Natural Resources Polymeric desiccant articles and process for their manufacture
US6447860B1 (en) * 2000-05-12 2002-09-10 Pechiney Emballage Flexible Europe Squeezable containers for flowable products having improved barrier and mechanical properties
US6615883B2 (en) * 2001-12-07 2003-09-09 Pechiney Plastic Packagaing, Inc. Container having splines and method for using same

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20120132204A1 (en) * 2005-10-12 2012-05-31 Innovata Biomed Limited Unit dose dry powder inhaler
US20090294485A1 (en) * 2006-11-02 2009-12-03 Michael Ernest Garrett Product dispensing system
US20100279046A1 (en) * 2007-05-02 2010-11-04 Philip Colin Ashman Collapsible tube containers
US20090152294A1 (en) * 2007-12-12 2009-06-18 Mizell Jeffrey W Dual-Tube Product Container and Dispenser
US8906187B2 (en) 2008-06-25 2014-12-09 Colgate-Palmolive Company Method of making shoulder/nozzles with film barrier liners
US20090324864A1 (en) * 2008-06-25 2009-12-31 Colgate-Palmolive Method of Making Shoulder/Nozzles With Film Barrier Liners
US20120180785A1 (en) * 2009-09-29 2012-07-19 Helen Mary Trill Pressurized Metered Dose Inhalers
US20110315923A1 (en) * 2010-03-22 2011-12-29 Saes Getters S.P.A. Composition for the protection of moisture sensitive devices
US8383006B2 (en) * 2010-03-22 2013-02-26 Saes Getters S.P.A. Composition for the protection of moisture sensitive devices
US9138968B2 (en) 2011-03-11 2015-09-22 Colgate-Palmolive Company Packaging and materials for making same
US20130299512A1 (en) * 2012-05-14 2013-11-14 Naira Gevorkian Collapsible dispensing tube with internal press-to-close sealers to prevent reverse flow of the content towards the closed end
US20170253387A1 (en) * 2016-03-04 2017-09-07 Amisha Patel Bioplastic Collapsible Dispensing Tube
US11111057B2 (en) * 2016-03-04 2021-09-07 Amisha Patel Bioplastic collapsible dispensing tube
WO2021192473A1 (en) * 2020-03-24 2021-09-30 株式会社スリーボンド Container

Also Published As

Publication number Publication date
BRPI0514249A (en) 2008-06-03
WO2006020479A3 (en) 2007-07-05
EP1776285A2 (en) 2007-04-25
CN101102882A (en) 2008-01-09
CA2578357A1 (en) 2006-02-23
US20070026174A1 (en) 2007-02-01
MX2007001537A (en) 2007-04-24
WO2006020479A2 (en) 2006-02-23

Similar Documents

Publication Publication Date Title
US20070026174A1 (en) Plastic dispensing container having reduced moisture penetration and method for same
JP6573607B2 (en) Easy-cut absorbable laminate and packaging bag using the same
EP3526037B1 (en) Polymer barrier laminate tube for container
KR20170074882A (en) Laminate for blister pack, blister pack using same, blister pack package, and method for manufacturing same
US5407742A (en) Paste dispensing container
JPH0794260B2 (en) Collapsible tube container for dispensing articles having orifices sealed with multilayer sealant sheet material
JP4662444B2 (en) Method of manufacturing upper member used by integrally forming on shoulder and mouth and neck of tube container, and tube container using upper member manufactured by the manufacturing method
WO2013051007A2 (en) Material composition, laminate tube and method for manufacture thereof
EP2790919B1 (en) Device for packaging and dispensing
EP3214006B1 (en) Bioplastic collapsible dispensing tube
EP0494595B1 (en) Packaging material and also use of the material for the manufacture of containers
AU2017101609A4 (en) Multilayer sheet material and packaging made therefrom
US20140203027A1 (en) Multilayer plastic tube
JP5034452B2 (en) Tube with check valve
JP2006001623A (en) Barrier bung and bag-like container with barrier bung
JP2003267431A (en) Multi-layer squeezing container or bottle
JP5440950B2 (en) Oxygen-absorbing film packaging
JP2006082826A (en) Pouch with stopper
JP2018065575A (en) Lid material for blister pack
JP6988190B2 (en) Films for packaging materials, and packaging materials and packaging materials using them.
JP2008001371A (en) Tube container having check valve
JP2006199346A (en) Packaging bag with discharge nozzle
FI85242B (en) HOPTRYCKBAR BEHAOLLARE FRAMSTAELLT AV ETENPROPENKOPOLYMER.
WO2005108222A1 (en) Container having barrier property and method for producing container having barrier property
JP2002002789A (en) Spout assembly

Legal Events

Date Code Title Description
AS Assignment

Owner name: PECHINEY PLASTIC PACKAGING, INC., ILLINOIS

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:LABBE, CLIFF;MISKEVICH, ROBERT;REEL/FRAME:016064/0383

Effective date: 20041123

STCB Information on status: application discontinuation

Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION