GB2412366A - Closure with integral gas barrier - Google Patents

Closure with integral gas barrier Download PDF

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Publication number
GB2412366A
GB2412366A GB0406630A GB0406630A GB2412366A GB 2412366 A GB2412366 A GB 2412366A GB 0406630 A GB0406630 A GB 0406630A GB 0406630 A GB0406630 A GB 0406630A GB 2412366 A GB2412366 A GB 2412366A
Authority
GB
United Kingdom
Prior art keywords
cap
foil
top panel
wall
plastics
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.)
Granted
Application number
GB0406630A
Other versions
GB2412366B (en
GB0406630D0 (en
Inventor
Peter Michael Mcgeough
Spreckelsen Henning Von
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.)
Bapco Closures Research Ltd
Original Assignee
Spreckelsen McGeough Ltd
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 Spreckelsen McGeough Ltd filed Critical Spreckelsen McGeough Ltd
Priority to GB0406630A priority Critical patent/GB2412366B/en
Publication of GB0406630D0 publication Critical patent/GB0406630D0/en
Priority to CN2005800092271A priority patent/CN1934006B/en
Priority to US10/599,249 priority patent/US20080035600A1/en
Priority to MXPA06010858A priority patent/MXPA06010858A/en
Priority to ZA200607585A priority patent/ZA200607585B/en
Priority to EP05729047A priority patent/EP1730045A1/en
Priority to PCT/GB2005/001109 priority patent/WO2005092728A1/en
Priority to NZ550125A priority patent/NZ550125A/en
Priority to GB0506128A priority patent/GB2412368B/en
Priority to AU2005225604A priority patent/AU2005225604B2/en
Publication of GB2412366A publication Critical patent/GB2412366A/en
Application granted granted Critical
Publication of GB2412366B publication Critical patent/GB2412366B/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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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
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/02Caps or cap-like covers without lines of weakness, tearing strips, tags, or like opening or removal devices
    • B65D41/04Threaded or like caps or cap-like covers secured by rotation
    • B65D41/0407Threaded or like caps or cap-like covers secured by rotation with integral sealing means
    • B65D41/0414Threaded or like caps or cap-like covers secured by rotation with integral sealing means formed by a plug, collar, flange, rib or the like contacting the internal surface of a container neck
    • 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
    • B65D51/00Closures not otherwise provided for
    • 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
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/02Caps or cap-like covers without lines of weakness, tearing strips, tags, or like opening or removal devices
    • B65D41/04Threaded or like caps or cap-like covers secured by rotation
    • B65D41/0407Threaded or like caps or cap-like covers secured by rotation with integral sealing means
    • 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
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/02Caps or cap-like covers without lines of weakness, tearing strips, tags, or like opening or removal devices
    • B65D41/04Threaded or like caps or cap-like covers secured by rotation
    • B65D41/0435Threaded or like caps or cap-like covers secured by rotation with separate sealing elements
    • B65D41/045Discs
    • 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
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/32Caps or cap-like covers with lines of weakness, tearing-strips, tags, or like opening or removal devices, e.g. to facilitate formation of pouring openings
    • B65D41/325Caps or cap-like covers with lines of weakness, tearing-strips, tags, or like opening or removal devices, e.g. to facilitate formation of pouring openings with integral internal sealing means
    • 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
    • B65D53/00Sealing or packing elements; Sealings formed by liquid or plastics material
    • B65D53/04Discs

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)

Abstract

A cap (2) suitable for use with a PET beverage bottle has an integral gas barrier provided by a plastics-coated aluminium foil disc (30) having its peripheral edge (32) embedded into the plastics internal or external surface (40) of a top panel (4) of the cap or of a valve (20). A plastics component (28) from which the cap (2) can be produced is described. The component (28) has a recess (48) defined by a sacrificial wall (50) formed inwardly of a resealing valve (20).

Description

Closure with Integral Gas Barrier
Technical Field
The present invention relates to closures with integral gas barriers. More specifically the invention relates to the field of closures for packaging for liquids that require a gas or humidity barrier. The invention is relevant in particular to the field of glass, plastics, including thermoformed plastics, or metal bottles or jars and unpressurized cartons.
Gas barriers are required to prevent both the escape of carbon dioxide from carbonated drinks packed under pressure and the ingress of oxygen. The gas barrier is ] O essential in aseptic and extended shelf life (ESL) packaging to prevent spoilage, tainting and discolouration due to the entry of oxygen.
Certain liquids, such as beer, are particularly susceptible to oxygen levels.
Background Art
Crown cork caps that are crimped onto a glass bottleneck provide an effective packaging solution with excellent gas barrier characteristics. Aluminium screw caps are also used with glass bottles. These have a postapplied liner material fitted to provide a seal. Another closure that relies on the gas barrier that metal provides is a ring-pull closure consisting of a metal cap moulded over the mouth and neck and provided at one edge with a ring-pull to enable removal. This closure is not reclosable.
WO 03/022705 (Technocaps Limited - Mestriner) teaches the use of a plain metal sealing disk that is retained on a bead at the bottle rim by a plastics ring that can be removed by means of a tab. Again the Technocaps closure is not reclosable.
These screw-on metal closures are less suitable for use with plastics bottles as their use requires high axial loading that would damage a plastics bottleneck.
Another option is to use a moulded closure with a loose multi-layered foil liner, which is inserted into the closure body. This assembly is applied after filling. The assembled closure is exposed to an induction energy field thus sealing the foil to the bottleneck.
This foil seal provides a gas barrier. However, such loose foil seals are typically very difficult to remove and the closure system provides poor reseal performance once the foil element is removed. This solution is also not suitable for aseptic applications as microbes and contamination get trapped behind the loose foil liner. The cap sterilization systems employed are unable to eradicate such contamination.
Developments in gas barriers for bottles, including scavenging agents added to PET polymers, mean that it is now practicable to use plastics bottles for products such as beer and other oxygen-sensitive beverages. However there is a need for a closure suitable for use with a plastics bottle that offers a high integrity gas barrier and is preferably reclosable.
Prior Art Solutions
A typical screw closure for use with a bottle is described in US4658976 (Aluminum Company of America - Pohlenz). A top seal is provided by means of a plastics liner in the top of the cap to seal against a rim of the bottle mouth. This type of cap is commonly used for mineral water and carbonated soft drinks.
The presence of a valve that seats inside a bottle mouth is a preferred solution for resealability in a reclosable plastics closure. A good seal is essential for plastics containers that have been processed in an in-line pasteuriser as this can result in heat- induced deformations of the bottleneck. A long valve is preferable to eliminate the leakage risk arising from this deformation.
Although Aluminum Company of America does not specifically address the gas barrier problem; others have used the same plastics liner or wad approach to address this problem. EVOH (ethylene vinyl alcohol) or rubber materials have been tried, but although these provide a gas barrier, they do not form good humidity barriers.
Owens-Illinois Closure Inc have, for example, announced a moulded-in liner seal that uses multiple thin layers of barrier material as described in US6399170 (Hock). This material tends to be expensive and brittle and is not well suited to function as a seal.
Accordingly various designs have been suggested for use of such a barrier with other sealing structures. See EP-A- 1081 058 (Riffer) and US 2003/0057175 A1 (Willingham et al).
The problems of providing an oxygen barrier with a plastic or metal/plastic or metal closure are also discussed in WO 02/14171 (White Cap, Inc). An oil-free, single layer plastics liner is proposed as a liner to provide a gas barrier and also to act as a sealing gasket. Such a solution results in a closure that requires a high torque for removal if a good seal is to be achieved. Closures made of composite materials are also relatively expensive to produce. Sealing against a rim of the bottle mouth also requires the rim to be level and smooth. These conditions are not always possible after heat treatment.
Technical Problem l O To provide a complete solution for gas-tight packaging in plastics containers that may have distorted necks, it is necessary to solve the technical problem of providing a reclosable, resealable closure with an integral gas barrier that can be fitted with minimal bottle top loading pressures during capping whilst being asepticcompatible.
Solution of the Invention Instead of plastics liners and wads, the present invention provides a solution in which the advantages of a metal gas barrier are provided within a plastics cap.
The present invention provides a plastics cap having a top panel and a skirt, wherein a plastics-coated foil liner has a peripheral edge that is embedded into a surface of the cap.
Aluminium foil has excellent gas and humidity barrier properties. It is undesirable to allow exposed metal to come into contact with many products due to their propensity to cause corrosion under conditions of prolonged contact. By using a plastics-coated liner with an embedded edge this contamination risk is avoided.
This type of cap may be used together with a valve to provide resealability. It can also be used with threaded or snap-on caps. The edge is preferably embedded into the internal surface of the top panel or of a valve of the cap, but may also be embedded into the external surface of the top panel or wrapped over the top of the cap and embedded into the skirt.
The invention also provides a plastics component for use in manufacturing such a cap, wherein an annular wall extends from the top panel in order to define a recess to receive the foil liner. The recess can be beneath or on top of the top panel. Preferably the annular wall has an intermediate, reduced cross-section portion in order to enable a lower part of the wall to be folded back towards the top panel in order to retain the peripheral edge of the foil liner during production.
The present invention also provides a method of producing a cap from a plastics component comprising a top panel surrounded by a skirt, a receiving recess for a barrier foil, and a sacrificial wall, the method comprising the steps of placing a barrier foil into the recess and heating the wall to melt the plastic material of the wall in order to embed an edge of the foil into the cap.
The heating is preferably carried out by induction heating the foil to melt the wall, as this avoids contact with the cap and promotes clean and quick production.
Such a method is aseptic-friendly as the resulting cap has smooth surfaces and no additional crevices in which bacteria may escape when the cap is being rinsed and flushed.
Other features of the invention are defined in the appended claims.
Brief Description of the Drawings
In order that the invention may be well understood, four embodiments thereof will now be described, by way of example only, with reference to the accompanying diagrammatic drawings, in which: Figure 1 shows a longitudinal half-section through a first embodiment of a cap component; Figure 2 shows a detail of the component of Figure 1 during a first production step; Figure 3 shows the same detail as Figure 2 in a finished cap after a second production step; Figure 4 shows a longitudinal section through a second embodiment of a cap component; Figure 5 shows the same section as Figure 4 during a first production step; Figure 6 shows the same section as Figure 4 and 5 in a finished cap after a second production step; Figure 7 shows a longitudinal, exploded section through a third embodiment of a cap component; Figure 8 shows the same section as Figure 7 after the cap has been fully assembled; Figure 9 shows a longitudinal, exploded section through a fourth embodiment of a cap component; and Figure 10 shows the same section as Figure 9 after the cap has been fully 1 5 assembled.
Detailed Description of Preferred Embodiments
A plastics cap 2 has a top panel 4 and a skirt 6. The cap 2 is intended for use with a PET container with a standard PCOi or BPF2 (or any other standard) neck finish with typically a 28, 33, 38, 43 or 45mm neck diameter. It will be appreciated that the principle of the invention can be applied to other closures and diameters. However the embodiments being described are examples only.
Four embodiments are described and in each similar parts are identified by like reference numerals.
I Plastics Closures Only - definition of a standard neck finish as used in the USA 2 British Plastics Federation - dcfintlon of a standard neck finish as used In the United Kingdom Referring first to the embodiment of Figures 1 to 3, an inner wall 8 of the skirt 6 has thread formations 10. A lower edge of the skirt is connected by means of a tear-off tamper band 12 to a collar 14 that engages with and is retained on an external formation of the bottleneck in order to provide tamper evidence.
An annular sealing valve 20 depends from the top panel 4 inwardly of the skirt 6. The valve is positioned so that its outer surface 22 will seal against an inner surface of the bottleneck when the cap 2 is installed.
The plastics cap 2 as described thus far is conventional and readily available on the market.
The cap 2 of the invention is an assembly of the above described plastics component 28 with a metal foil barrier liner 30.
The foil liner 30 is positioned inside the valve 20. The liner 30 is a disc of foil having a peripheral edge 32. The disc 30 is cut from a sheet of plastics coated aluminium foil and therefore its peripheral edge 32 has exposed aluminium between two thin plastics layers or membranes. The liner 30 is made of double-sided induction heat sealing (IHS) foil.
In order to enable the edge 32 to be embedded into an internal surface 40 of the top panel 4, the cap is produced from an injection-moulded, plastics component that initially has a receiving recess 48 for the foil disc 30 formed by an annular sacrificial wall 50 depending from the internal surface 40 just inwardly of the valve 20. The wall 50 has an upper part 52 and a lower part 54 separated by an intermediate, reduced cross-section portion 56 that runs round the entire circumference of the annular wall 50. The lower part 54 terminates in an outwardly projecting flanged foot 58. The lower part 54 is designed so as to be able to be bent back up about a hinge provided by the reduced cross-section portion 56 so that it sits inside the upper part 52 with the foot 58 extending parallel to the internal surface 40 of the top panel 4 as shown in Figure 2. In this configuration the foot 58 retains the foil disc 30 in position.
During production, the plastics components 28 are inverted and a foil disc 30 is dropped into each plastics component 28 inside the wall 50. A tool is then brought down towards the panel 4. The tool face is shaped to engage with the lower part 54 of the wall 50 and fold it down over the edge 32 of the disc and then to further press down and heat (by way of induction) the assembly so that the plastics material of the wall 50 softens and flows over the edge 32 to embed it into the internal surface 40 of the top panel 4 as shown in Figure 3. This results in the foil liner 30 being welded on both sides to the plastics cap 2. The retaining of the disc step and the embedding step may be carried out as separate operations. The use of ITS foil allows the wall 50 to be melted indirectly by contact with the heated foil.
The foil discs 30 can be slightly dished to facilitate handling and aid accurate location.
The foil discs 30 may be sterilised prior to insertion in the recesses 48.
When the discs 30 are dropped into the recesses 48, they may be oversized and have the peripheral edge pressed down the inner surface of the sacrificial wall 50 in order to ensure that the gas barrier extends over the largest possible area of the top panel 4. If the portion of foil that extends down the wall is long, then the excess foil will need to be folded to fit. In this case the foil 30 and the component 28 must be passed through an aseptic sterilising rinser prior to assembly in order to maintain aseptic conditions.
It is also possible to heat the foil sufficiently to enable the folded and wrinkled portions to be wholly embedded within the surface of the plastics component. A slightly oversized margin of a thin foil 30 can be smoothly sealed to the interior of the recess 48.
The caps 2 produced in this way can then be sterilised and passed to an aseptic filling line. It will be appreciated that due to the production process there are no remaining crevices in the internal surface 40 of the top panel such as may exist when a separate wad or liner is adhered to the internal surface 40.
It should be noted that the foil liner 30 is not welded to a spout or neck of the container or bottle.
It will be appreciated that the term "embedding" refers to the position of the peripheral edge 32 relative to the final configuration of the top panel 4. In practice the foil may have one surface welded to the original surface 40 of the top panel of the component 28 and the other surface welded to the remnants of the sacrificial wall 50. In the second embodiment described below, the edge 32 is embedded into the internal surface of the valve, whereas in the third embodiment the edge 32 and the whole foil is welded into the top panel 4. In the fourth embodiment, the whole foil is welded to the external surface of the top panel 4. In addition it would be possible to wrap the foil over the cap and embed the edge in the skirt 6. However this is not a preferred option as foil on the side wall of the cap may be accidentally stripped if the caps are applied by means of a tool that grips the side wall. Foil in this position would also cover the knurling typically provided on the external surface of the skirt 6 to facilitate gripping of the cap 2 when it is opened and closed.
Variations Caps 2 may also be produced without a valve 20, or with valves that can be as long as necessary to provide resealability against distorted bottlenecks.
The sacrificial wall 50 may have other configurations that will nevertheless allow it, in conjunction with a suitably shaped tool, to sacrifice the material from which it is formed into an embedment for the edge 32 of the foil disc 30. A tapered wall, L shaped wall 50 or a thin wall bent over at the base may be possible.
Second Embodiment In the second embodiment as illustrated in Figures 4 and 5, the sacrificial wall 50 is formed as an extension part 54 of the valve 20 itself. The annular part 54 is separated from an end of the valve by a reduced cross-section portion 56. In this embodiment the recess 48 is the whole of the space within the valve 20. During production the part 54 is folded inwardly against an inner wall of the valve 20 as shown in Figure 5.
After heating through the IHS foil 30 the edge 32 of the foil disc 30 becomes embedded in the cap and more specifically into the wall of the valve 20.
Third Embodiment In the third embodiment the cap 2 is made of a component 28 and a second component 60 formed in the shape of a circular plate 62 that carries the valve 20.
The component 28 has a top panel 4 that is thinner than normal in order to define the barrier-foil receiving recess 48 that also receives the plate 62 of the second component 60. The recess 48 is defined by a wall 64 inside the top panel. A central part 66 of the top panel 4 need not be present in order to reduce overall weight in applications where the foil itself has sufficient pressure- retaining capability to maintain the structural integrity of the cap 2. A central hole or opening 66 that exposes the foil 30 and corresponds to a hole 68 in the plate 62 can be used to allow the consumer to puncture the cap with a straw for consumption of the contents without opening of the cap.
Where only weight saving is required the plate 62 can have a solid top. The central hole 66 may be larger than shown provided there is a sufficient recess 48 to hold the foil disc 30 during assembly. The plate 62 may also have a central opening 68 when there is no corresponding opening in the top panel.
In order to assemble the third embodiment, the disc 30 is placed in the recess 48 and trapped in position by the plate 62. When the foil is heated by induction heating the plastic material of the plate 62 and wall 64 acts in the same way as the sacrificial wall and embeds the foil in the cap.
Fourth Embodiment In the embodiment of Figures 9 and 10 the recess 48 is located on an external surface of the top panel 4 and is surrounded by a protruding sacrificial wall 50. The foil disc 30 is dropped into the recess and then heated by induction. The contact between the edge 32 of the foil and the sacrificial wall 50 causes the material of the wall to flow over the edge sealing the disc securely to the top 70 of the cap so that it cannot be removed. The use of a gas barrier on top of the cap allows the foil 30 to cover an even larger portion of the surface. This means that any gas that is to pass through the cap must pass along a tortuous and long path within the plastic of the cap to avoid the foil. This results in very low levels of gas transmission.
While embedment of the edge 32 is not essential for avoiding contamination of the contents, it is necessary in order to prevent the foil being removed during transport.
Scavenger chemicals may be added to the material of which the cap is moulded or added to the foil membrane or a scavenger coating may be applied to the inner surface of the cap 2.
It will be appreciated that the constructions described allow the production of a cap with an effective gas barrier that also has a functional long valve 20 suitable for sealing carbonated beverages. :y

Claims (22)

  1. Claims 1. A plastics cap (2) having a top panel (4) and a skirt (6),
    wherein a plastics coated foil liner (30) has a peripheral edge (32) that is embedded into a surface (40, 70) of the cap (2).
  2. 2. A cap (2) as claimed in claim 1, wherein the foil edge (32) is embedded into an internal surface (40) of the top panel (4).
  3. 3. A cap (2) as claimed in claim I or 2, wherein a valve (20) adapted to fit inside and seal against an inner wall of a neck of a container to which the cap is fitted depends from the top panel (4).
  4. 4. A cap (2) as claimed in claim 3, wherein the valve (20) is provided on a plate (62), which traps the foil (30) to an internal surface of the top panel (4).
  5. 5. A cap (2) as claimed in claim 4, wherein the plate (62) has an opening (68).
  6. 6. A cap (2) as claimed in claim 3, wherein the foil edge (32) is embedded into an internal surface of the valve (20).
  7. 7. A cap (2) as claimed in claim 1, wherein the foil edge (32) is embedded into an external surface (70) of the top panel (4) of the cap (2) .
  8. 8. A cap (2) as claimed in claim 1, wherein the foil edge (32) is embedded into an external surface of the skirt (6).
  9. 9. A cap (2) as claimed in any one of the preceding claims, wherein an opening (66) is formed in the top panel (4).
  10. 10. A cap (2) as claimed in any one of the preceding claims, wherein the skirt (6) is threaded (10).
  11. An assembly of a cap as claimed in any one of the preceding claims and a glass, plastics, steel or aluminium bottle, jar or any other container.
  12. 12. An assembly of a cap as claimed in any one of claims I to 10 and a container made of paperboard or composite material.
  13. 13. An assembly of a cap as claimed in any of claims 1 to l O and a thermoformed container.
  14. 14. A plastics component (28) for use in manufacturing a cap (2) as claimed in any one of claims 1 to 10, wherein an annular wall (20,50) extends from the top panel (4) in order to define a recess (48) to receive the foil liner (30).
  15. 15. A plastics component as claimed in claim 14, wherein the wall (20, 50) has an intermediate, reduced cross-section portion (56) in order to enable a lower part (54) of the wall to be folded back towards the top panel in order to retain the peripheral edge (32) of the foil liner during production.
  16. 16. A method of producing a cap (2) from a plastics component (28) comprising a top panel (4) surrounded by a skirt (6), a receiving recess (48) for a barrier foil, and a sacrificial wall (50), the method comprising the steps of placing a barrier foil (30) into the recess (48) and heating the wall (50) to melt the plastic material of the wall in order to embed an edge (32) of the foil (30) into the cap (2)
  17. 17. A method as claimed in claim 16, wherein the heating step comprises induction heating the foil (30) to melt the wall (50).
  18. 18. A method as claimed in claim 16 or 17, wherein the foil (30) is oversized and when placed into the recess (48) has its peripheral edge (32) pressed against an inner surface of the recess (48).
  19. 19. A cap substantially as herein described with reference to the accompanying drawings.
  20. 20. A plastics component substantially as herein described with reference to the accompanying drawings.
  21. 21. A method of producing a cap from a plastics component substantially as herein described with reference to the accompanying drawings.
  22. 22. An assembly of a cap and container substantially as herein described with reference to the accompanying drawings.
    22. An assembly of a cap and container substantially as herein described with reference to the accompanying drawings.
    Amendments to the claims have been filed as follows 1) Claims 1. A reclosable plastics cap (2) having a top panel (4) and a skirt (6), wherein a plastics coated aluminium foil liner (30) has a peripheral edge (32) that is embedded into a surface (4O, 70) of the cap (2).
    2. A cap (2) as claimed in claim 1, wherein the foil edge (32) is embedded into an internal surface (40) of the top panel (4).
    3. A cap (2) as claimed in claim 1 or 2, wherein a valve (20) adapted to fit inside and seal against an inner wall of a neck of a container to which the cap is fitted depends from the top panel (4).
    4. A cap (2) as claimed in claim 3, wherein the valve (20) is provided on a plate (62), which traps the foil (30) to an internal surface of the top panel (4).
    5. A cap (2) as claimed in claim 4, wherein the plate (62) has an opening (68).
    6. A cap (2) as claimed in claim 3, wherein the foil edge (32) is embedded into an internal surface of the valve (20).
    7. A cap (2) as claimed in claim 1, wherein the foil edge (32) is embedded into an external surface (70) of the top panel (4) of the cap (2) .
    8. A cap (2) as claimed in claim 1, wherein the foil edge (32) is embedded into an external surface of the skirt (6).
    9. A cap (2) as claimed in any one of the preceding claims, wherein an opening (66) is formed in the top panel (4).
    10. A cap (2) as claimed in any one of the preceding claims, wherein the skirt (6) is threaded (10).
    1 1. An assembly of a cap as claimed in any one of the preceding claims and a glass, plastics, steel or alumirlium bottle, jar or any other container.
    s3623/0002ln727s3l vS t5 12. An assembly of a cap as claimed in any one of claims 1 to 10 and a container made of paperboard or composite material.
    13. An assembly of a cap as claimed in any of claims I to 10 and a thermoformed container.
    14. A plastics component (28) for use in manufacturing a cap (2) as claimed in any one of claims 1 to 10, wherein an annular wall (20,50) extends from the top panel (4) in order to define a recess (48) to receive the foil liner (30).
    15. A plastics component as claimed in claim 14, wherein the wall (20, 50) has an intermediate, reduced cross-section portion (56) in order to enable a lower part l O (54) of the wall to be folded back towards the top panel in order to retain the peripheral edge (32) of the foil liner during production.
    16. A method of producing a cap (2) from a plastics component (28) comprising a top panel (4) surrounded by a skirt (6), a receiving recess (48) for a barrier foil, and a sacrificial wall (50), the method comprising the steps of placing a barrier foil (30) into the recess (48) and heating the wall (50) to melt the plastic material of the wall in order to embed an edge (32) of the foil (30) into the cap (2) 17. A method as claimed in claim 16, wherein the heating step comprises induction heating the foil (30) to melt the wall (50).
    18. A method as claimed in claim 16 or 17, wherein the foil (30) is oversized and when placed into the recess (48) has its peripheral edge (32) pressed against an inner surface of the recess (48).
    l 9. A cap substantially as herein described with reference to the accompanying drawings.
    20. A plastics component substantially as herem described with reference to the accompanying drawings. Al
    21. A method of producing a cap from a plastics component substantially as herein described with reference to the accompanying drawings.
GB0406630A 2004-03-24 2004-03-24 Closure with integral gas barrier Expired - Fee Related GB2412366B (en)

Priority Applications (10)

Application Number Priority Date Filing Date Title
GB0406630A GB2412366B (en) 2004-03-24 2004-03-24 Closure with integral gas barrier
GB0506128A GB2412368B (en) 2004-03-24 2005-03-24 Closure with integral gas barrier
CN2005800092271A CN1934006B (en) 2004-03-24 2005-03-24 Closure with integral gas barrier
MXPA06010858A MXPA06010858A (en) 2004-03-24 2005-03-24 Closure with integral gas barrier.
ZA200607585A ZA200607585B (en) 2004-03-24 2005-03-24 Closure with integral gas barrier
EP05729047A EP1730045A1 (en) 2004-03-24 2005-03-24 Closure with integral gas barrier
PCT/GB2005/001109 WO2005092728A1 (en) 2004-03-24 2005-03-24 Closure with integral gas barrier
NZ550125A NZ550125A (en) 2004-03-24 2005-03-24 Closure with integral gas barrier
US10/599,249 US20080035600A1 (en) 2004-03-24 2005-03-24 Closure with Integral Gas Barrier
AU2005225604A AU2005225604B2 (en) 2004-03-24 2005-03-24 Closure with integral gas barrier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB0406630A GB2412366B (en) 2004-03-24 2004-03-24 Closure with integral gas barrier

Publications (3)

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GB0406630D0 GB0406630D0 (en) 2004-04-28
GB2412366A true GB2412366A (en) 2005-09-28
GB2412366B GB2412366B (en) 2006-09-06

Family

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GB0406630A Expired - Fee Related GB2412366B (en) 2004-03-24 2004-03-24 Closure with integral gas barrier
GB0506128A Expired - Fee Related GB2412368B (en) 2004-03-24 2005-03-24 Closure with integral gas barrier

Family Applications After (1)

Application Number Title Priority Date Filing Date
GB0506128A Expired - Fee Related GB2412368B (en) 2004-03-24 2005-03-24 Closure with integral gas barrier

Country Status (9)

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US (1) US20080035600A1 (en)
EP (1) EP1730045A1 (en)
CN (1) CN1934006B (en)
AU (1) AU2005225604B2 (en)
GB (2) GB2412366B (en)
MX (1) MXPA06010858A (en)
NZ (1) NZ550125A (en)
WO (1) WO2005092728A1 (en)
ZA (1) ZA200607585B (en)

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Also Published As

Publication number Publication date
US20080035600A1 (en) 2008-02-14
GB2412368B (en) 2006-08-30
WO2005092728A1 (en) 2005-10-06
ZA200607585B (en) 2007-12-27
EP1730045A1 (en) 2006-12-13
AU2005225604A1 (en) 2005-10-06
CN1934006B (en) 2010-05-12
AU2005225604B2 (en) 2010-07-29
GB0506128D0 (en) 2005-05-04
GB2412368A (en) 2005-09-28
NZ550125A (en) 2009-08-28
MXPA06010858A (en) 2007-07-25
CN1934006A (en) 2007-03-21
GB2412366B (en) 2006-09-06
GB0406630D0 (en) 2004-04-28

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Effective date: 20110324