WO2005054068A1 - Fitments - Google Patents

Fitments Download PDF

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Publication number
WO2005054068A1
WO2005054068A1 PCT/GB2004/002744 GB2004002744W WO2005054068A1 WO 2005054068 A1 WO2005054068 A1 WO 2005054068A1 GB 2004002744 W GB2004002744 W GB 2004002744W WO 2005054068 A1 WO2005054068 A1 WO 2005054068A1
Authority
WO
WIPO (PCT)
Prior art keywords
foil
fitment
spout
base flange
wall
Prior art date
Application number
PCT/GB2004/002744
Other languages
French (fr)
Inventor
Henning Von Spreckelsen
Peter Michael Mcgeough
Original Assignee
Bapco Closures Research 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
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=29726587&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO2005054068(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Bapco Closures Research Ltd filed Critical Bapco Closures Research Ltd
Priority to US10/595,820 priority Critical patent/US20070095834A1/en
Priority to EP04743095A priority patent/EP1687212B1/en
Priority to CA002546114A priority patent/CA2546114A1/en
Priority to DE602004012441T priority patent/DE602004012441T8/en
Priority to BRPI0416043-6A priority patent/BRPI0416043A/en
Priority to NZ546726A priority patent/NZ546726A/en
Priority to DK04743095T priority patent/DK1687212T3/en
Priority to AU2004295141A priority patent/AU2004295141A1/en
Priority to PL04743095T priority patent/PL1687212T3/en
Publication of WO2005054068A1 publication Critical patent/WO2005054068A1/en

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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
    • B65D5/00Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
    • B65D5/42Details of containers or of foldable or erectable container blanks
    • B65D5/72Contents-dispensing means
    • B65D5/74Spouts
    • B65D5/746Spouts formed separately from the container
    • B65D5/747Spouts formed separately from the container with means for piercing or cutting the container wall or a membrane connected to said wall
    • B65D5/749Spouts formed separately from the container with means for piercing or cutting the container wall or a membrane connected to said wall a major part of the container wall or membrane being removed from the container after the opening

Definitions

  • the present invention relates to closures for aseptic and extended shelf life (ESL) containers and more particularly paperboard cartons.
  • carton fitments that extend through a wall of a paperboard carton. These fitments are constructed to provide a pour spout and provide a resealable closure such as a threaded spout and overcap. They are typically made of injection-moulded plastics. The fitment may also provide tamper evidence such as a severable tamper band connecting a lower edge of the overcap to a body of the fitment. Ring pull removable membranes are often provided within the spout.
  • a typical fitment will have a base flange and a cylindrical spout.
  • fitments are inserted, as fully assembled components with an overcap fitted, through a hole cut in the top of the carton.
  • the fitment is passed through the hole from the inside of the open top during the filling process.
  • the base flange being larger than the diameter of the hole, remains inside the carton.
  • Ultrasound welding is used to weld the base flange to the carton and secure the fitment in place.
  • Fitments of this type are used extensively to enable gable top paperboard cartons to be resealable. They are typically used for fresh milk and fresh juice, which are not packed aseptically.
  • a UHT process is used to process the product prior to filling.
  • the product is subjected to high temperature (140°C) for a very short period (4 seconds) and then cooled to a temperature between ambient and 4 degrees C. Once cooled the product must remain in sterile conditions and cannot be exposed to environmental air or bacteria.
  • the cartons and fitments must also be cleaned and sterilised, typically using Hydrogen Peroxide or peracetic acid, which is later evaporated off the components.
  • the cartons are then filled and sealed in an aseptic environment.
  • the packaging must also be sealed tightly enough to prevent re-infection. This process is effective to provide long shelf- life products. The cost of the filling plant is significant.
  • ESL packaging covers other processes such as microfiltering to ensure minimal microbe presence in the product.
  • a significant feature of both aseptic and ESL cartons is the presence of a continuous barrier layer. This layer is required to prevent bacteria, microbes, yeasts or fungal spores passing into the container and to provide a gas banier.
  • This use of existing carton fitments that require a pre-cut hole in the carton blank is clearly not possible.
  • Cartons for use in aseptic packaging are typically constructed of several layers, hi one example there are seven layers that make up the aseptic package. From the outside in they are - polyethylene, adhesive, paper, adhesive, aluminium foil, adhesive and polyethylene. The aluminium foil provides a barrier layer. The adhesive layers serve to adhere the materials together and the polyethylene layers serve to provide surface coatings. These layered structures are described as composite paperboard.
  • the barrier layer may alternatively be made of EVOH.
  • a hole is cut in the outer paper and plastics layers of the composite paperboard blank before the blank is laminated with a barrier and inner layers.
  • the fitment is then applied to the exterior of the carton and must incorporate a mechanism for cutting, tearing or punching through the barrier and inner layers, i the second method the composite paperboard is scored or weakened without penetrating the banier layer at the position where the carton fitment is to be placed.
  • the cutting, tearing or punching mechanism then has to break through all the layers of the composite paperboard.
  • a great variety of designs have been proposed for this mechanism. These range from pivoting levers; ratchets that drive teeth down through the paperboard, and punch thorough systems which require the user to push a thumb down into the spout.
  • the present invention solves the problem of providing a continuous banier layer with a resealable pour spout closure by providing the barrier layer within the closure itself so that it can be inserted into a pre-cut hole as with non-aseptic cartons.
  • an inner paperboard layer is folded outwardly and overlapped with an outer layer so that the edges of the barrier layer foil are prevented from coming into contact with the contents.
  • the seam is welded by ultrasound or induction heat sealed. This is found to produce acceptable results.
  • the fitment described has a base flange provided with a recess into which a thin film having a property of a gas banier is securely fitted. It is suggested that the film may be of laminated structure comprising polyethylene, aluminium and polyethylene layers.
  • the barrier layer has its peripheral edge concealed by the material of the film. Insert moulding is suggested as a technique for joining the film to the fitment.
  • Kawajiri proposal solves the technical problems discussed above. However the design is not practicable for the following reasons:
  • a fitment comprising a base flange and a hollow spout, a removable part within a base of the spout, and an overcap for resealably closing the spout, and a barrier foil coated on both sides with a plastics layer extending across the base flange, characterised in that the foil has an exposed cut edge prior to assembly in the fitment and that edge of the foil is assembled to the flange in such a manner that the edge is prevented in use from coming into contact with contents of a container to which the fitment is assembled.
  • the edge can be sealed away in various ways such as, for example, by embedding it into the plastic of the flange, folding it underneath prior to sealing to the flange, or wrapping it around a peripheral edge of the flange.
  • the edge of the foil is embedded in the base flange.
  • the edge of the foil By embedding the edge of the foil into the plastic it cannot taint the product. Since the barrier layer in the paperboard carton overlaps with the barrier foil applied to the base flange there is no break in the barrier layer.
  • Such a fitment can be manufactured by a method comprising the steps of placing a foil having a plastics layer on each surface within a receiving wall projecting from a first surface of a base flange of a fitment that has a hollow spout extending from an opposite surface, and securing the foil to the flange such that the wall is sealed over the edge of the foil disc.
  • the fully assembled fitment may be inserted into a pre-cut hole in a composite paperboard carton blank from inside prior to filling and the embedding of the foil edge carried out as part of the same process as welding the flange to the paperboard.
  • the present invention provides a fitment comprising a base flange having a first surface and a hollow spout projecting from a surface opposite the first surface, a removable part within a base of the spout, and an overcap for resealably closing the spout, characterised in that a banier foil coated on both sides with a plastics layer is wrapped over the first surface of the flange such that the foil extends onto the opposite surface sunounding the spout.
  • the cut edge of the foil is prevented from coming into contact with the contents of the container as it is sealed to a paperboard wall during the ultrasound welding of the fitment into the carton.
  • This seal has exactly the same construction and integrity as other seals elsewhere on the paperboard carton.
  • the barrier layer in this construction is virtually continuous as there are only the inner polyethylene layers between the two foils and not even the modest thickness of the base flange as in the earlier variation.
  • fitments as claimed are used in any shape of paperboard carton, but it will be appreciated that this type of fitment could also be applied to a mouth of a gas impervious bottle such as a barrier PET or multi-layer polyolefm bottle; to a coated steel or aluminium can or can lid; or to a mono or multi-layer plastics container which is thermo formed, injection moulded or blow moulded.
  • a gas impervious bottle such as a barrier PET or multi-layer polyolefm bottle
  • a coated steel or aluminium can or can lid or to a mono or multi-layer plastics container which is thermo formed, injection moulded or blow moulded.
  • Figure 1 shows a longitudinal section through a fitment in accordance with a first embodiment of the invention assembled in a carton top;
  • Figure 2 shows a detail of an edge of the base flange of Figure 1 prior to insertion of a foil
  • Figure 3 A shows a detail of an alternative embodiment of the edge of a base flange prior to insertion of a foil
  • Figure 3B shows a detail of an edge of the base flange of Figure 3 A after insertion of the foil and before an induction heat sealing step
  • Figure 4 shows a section through a fitment in accordance with a further embodiment of the invention.
  • Figure 5 shows a section through a fitment in accordance with a yet further embodiment of the invention.
  • a carton fitment 2 is made up of a base flange 4 with an upstanding pour spout 6, which is closed by an overcap 8.
  • the fitment 2 is two injection moulded plastics components.
  • the spout 6 comprises a hollow cylindrical spout in the base of which there is a removable part 10.
  • the removable part 10 is a plastics disc joined to the remainder of the base flange 4 by a weakened section 12.
  • a ring pull 14 is connected to the removable part 10 in order to allow the removable part to be removed.
  • this fitment is substantially similar to carton fitments known in the art for use with standard paperboard cartons. Any of the design features employed on such fitments can be incorporated into the fitment of the present invention.
  • the fitment of the present invention is however intended to be used with a container providing a barrier layer. As illustrated in Figure 1 the fitment is inserted into a pre- cut hole 20 in a composite paperboard carton wall 22.
  • the fitment 2 could also be assembled to an open mouth of a banier PET or polyolefm banier layer bottle; or any other gas tight container, such as a tin can made up of mono or multi layers including aluminium, steel etc coated with a plastics surface layer, or a plastics container, which is thermoformed, injection moulded or blow moulded, whether by an extrusion or injection-stretch blow moulding process.
  • a foil disc 30 is sealed to an underside of the base flange 4 and removable part 10.
  • the removable part 10 could be constructed as an annular frame typically with a central, three-pointed star structure. Such a frame would be joined by weekened bridges to the base flange 4. This reduces the overall weight of the fitment
  • the foil disc 30 is cut from an aluminium foil, which is coated on both sides with a plastics layer, typically polyethylene, polypropylene or PET, which enables it to be bonded to other plastics components.
  • a plastics layer typically polyethylene, polypropylene or PET
  • the base flange 4 is welded in an annular region A to the carton wall 22 by means of induction heat sealing or ultrasonic welding.
  • a receiving wall 32 sunounds a peripheral edge of the base flange 4.
  • Figure 1 the receiving wall 32 is shown as having been deformed inwardly over the peripheral edge of the foil disc 30 in order to prevent the contents of the container being exposed to an edge of the aluminium layer within the double sided coated foil disc 30.
  • the composite paperboard carton 22 is formed from several layers of material including a gas barrier layer 40.
  • This barrier layer may be aluminium foil or EVOH or any other suitable material.
  • the barrier layer is bonded by means of an adhesive layer to a paperboard layer which is coated on each side by a polyethylene coating. Other detailed constructions of the composite paperboard are possible.
  • the overcap 8 is shown as having a plug 42, which is received within an open mouth of the spout 6 in order to ensure effective resealing. Threads 44, 46 are formed on the external wall of the spout of the pour spout 6 and on a facing internal wall of the overcap 8 in order to enable the overcap to be screwed onto the spout of the spout. Sealing the Edge of the Foil
  • An essential feature of the fitment of the present invention is that the metal edge of the foil is prevented from coming into contact with the contents of a container in use when the fitment is assembled.
  • the fitment 2 is preferably pre sealed to the foil 30 before installation in the container.
  • the foil disc 30 is seated within a receiving wall 32 which, prior to assembly of the foil to the spout 6, depends vertically from the base flange 4 as shown in Figure 2.
  • a tool is used to press the receiving wall 32 over the edge of the foil disc during an induction heat sealing process.
  • the receiving wall 32 is therefore a sacrificial part of the spout construction and the plastic making up this material effectively melts over the edge of the foil to seal in the exposed metal edge.
  • FIG. 3 A and 3B An alternative construction of the receiving wall 32 is shown in Figures 3 A and 3B.
  • the wall 32 has a weaked portion 50 in an intermediate annular region.
  • the weakened portion 50 allows a terminal end 52 of the wall to be deformed inwardly over the edge of the foil to retain it in position to ensure that the plastic of this sacrificial receiving wall 52 flows over and covers any exposed metal edge.
  • FIG. 4 An alternative approach to sealing away the metal edge of the foil 30 is shown in Figure 4.
  • the foil 30 is larger than the diameter of the base flange and is wrapped over the entirety of a lower first surface 54 of the base flange 4 around a free edge and onto a second surface 56 of the base flange.
  • the folded edge terminates inwardly of the annular region A at which the base flange 4 is welded to the container 22.
  • the foil disc 30 has its edges folded upwardly and inwardly prior to being welded to the base flange 4. This folding step may be done by means of an appropriate forming tool during placement of the foils on the base flange 4. A periphery of the base flange 4 is provided with a retaining wall 34 to retain the folded foil disc in place prior to sealing.
  • the carton fitments 2 are preassembled to the foil disc 30 and the foil welded in position by an induction heat sealing process before the fitments are assembled to the paperboard carton.
  • the assembly to the paperboard carton is as with standard non- aseptic packaging and will not be described in detail here.
  • induction heat sealing of the foil to the base flange 4 ultrasonic welding maybe employed.
  • the foil may also be secured to the flange by adhesive means. In the embodiment of Figure 4, it is possible to rely on the wrapping over of the outer peripheral edge of the foil around the base flange 4 to secure the foil to the spout 6. Although further bonding steps can be undertaken prior to installation in the carton, these are not essential with this embodiment. If the fitment 2 is induction heat sealed to the carton the foil 30 will weld to the base flange at that time.
  • the barrier layer constituted by the foil 30 creates a continuous banier layer with the layer 40 within the paperboard carton. Therefore, the ease of assembly advantages of the carton fitments used with non-aseptic packaging are combined with the integrity of the barrier layer offered by post applied prior art fitments traditionally used with aseptic packaging.
  • a consumer can open the packaging by removing the overcap 8 by unscrewing it in order to gain access to the ring pull 14.
  • the removable part 10 can then be removed by use of the ring pull 14. Since the foil 30 is welded to the whole of the base flange 4 including the removable part 10, the pulling out of the ring pull will breach the foil and allow access to the container contents. If necessary, teeth may be formed in the lower surface 54 of the base flange 4 in order to facilitate tearing of the foil as described in Spreckelsen McGeough above. If the foil is not severed by removal of the removable part 10, it is relatively easy for this foil layer to be punctured manually.
  • any of the other prior art mechanisms can be used in the spout to remove the removable part and breach the foil to allow access to the contents.

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  • Mechanical Engineering (AREA)
  • Engineering & Computer Science (AREA)
  • Closures For Containers (AREA)
  • Cartons (AREA)
  • Crystals, And After-Treatments Of Crystals (AREA)
  • Saccharide Compounds (AREA)
  • Packages (AREA)
  • Electrically Driven Valve-Operating Means (AREA)
  • Valve Device For Special Equipments (AREA)
  • Telephone Function (AREA)
  • Making Paper Articles (AREA)
  • Closing Of Containers (AREA)
  • Auxiliary Devices For And Details Of Packaging Control (AREA)

Abstract

A carton fitment (2) has a base flange (4) and a pour spout (6) closed by a screw on overcap (8). The base flange (4) has a barrier foil (30) coated on both sides with a plastic layer embedded in a sacrificial receiving wall (32) surrounding the periphery of the base flange (4).

Description

Fitments
Background of the Invention
The present invention relates to closures for aseptic and extended shelf life (ESL) containers and more particularly paperboard cartons.
In non-aseptic containers it is well known to use carton fitments that extend through a wall of a paperboard carton. These fitments are constructed to provide a pour spout and provide a resealable closure such as a threaded spout and overcap. They are typically made of injection-moulded plastics. The fitment may also provide tamper evidence such as a severable tamper band connecting a lower edge of the overcap to a body of the fitment. Ring pull removable membranes are often provided within the spout. A typical fitment will have a base flange and a cylindrical spout.
Such fitments are inserted, as fully assembled components with an overcap fitted, through a hole cut in the top of the carton. The fitment is passed through the hole from the inside of the open top during the filling process. The base flange, being larger than the diameter of the hole, remains inside the carton. Ultrasound welding is used to weld the base flange to the carton and secure the fitment in place. Fitments of this type are used extensively to enable gable top paperboard cartons to be resealable. They are typically used for fresh milk and fresh juice, which are not packed aseptically.
Aseptic packaging
In aseptic filling a UHT process is used to process the product prior to filling. The product is subjected to high temperature (140°C) for a very short period (4 seconds) and then cooled to a temperature between ambient and 4 degrees C. Once cooled the product must remain in sterile conditions and cannot be exposed to environmental air or bacteria. The cartons and fitments must also be cleaned and sterilised, typically using Hydrogen Peroxide or peracetic acid, which is later evaporated off the components. The cartons are then filled and sealed in an aseptic environment. The packaging must also be sealed tightly enough to prevent re-infection. This process is effective to provide long shelf- life products. The cost of the filling plant is significant.
ESL packaging covers other processes such as microfiltering to ensure minimal microbe presence in the product.
A significant feature of both aseptic and ESL cartons is the presence of a continuous barrier layer. This layer is required to prevent bacteria, microbes, yeasts or fungal spores passing into the container and to provide a gas banier. The use of existing carton fitments that require a pre-cut hole in the carton blank is clearly not possible.
Cartons for use in aseptic packaging are typically constructed of several layers, hi one example there are seven layers that make up the aseptic package. From the outside in they are - polyethylene, adhesive, paper, adhesive, aluminium foil, adhesive and polyethylene. The aluminium foil provides a barrier layer. The adhesive layers serve to adhere the materials together and the polyethylene layers serve to provide surface coatings. These layered structures are described as composite paperboard. The barrier layer may alternatively be made of EVOH.
The original aseptic cartons were composite paperboard tetrahedrons and later bricks, which were difficult to open and could not be resealed. Aseptic cartons are now provided with carton fitments that offer reclosable, tamper-evident screw overcap closures as with paperboard cartons, h order to maintain the barrier layer, two methods have been employed.
In the first method a hole is cut in the outer paper and plastics layers of the composite paperboard blank before the blank is laminated with a barrier and inner layers. The fitment is then applied to the exterior of the carton and must incorporate a mechanism for cutting, tearing or punching through the barrier and inner layers, i the second method the composite paperboard is scored or weakened without penetrating the banier layer at the position where the carton fitment is to be placed. The cutting, tearing or punching mechanism then has to break through all the layers of the composite paperboard. A great variety of designs have been proposed for this mechanism. These range from pivoting levers; ratchets that drive teeth down through the paperboard, and punch thorough systems which require the user to push a thumb down into the spout. Examples of such post applied carton fitments are described in EP-A-1, 127 798 (Rexam), which teaches a cam driven mechanism; and WO 98/41452 (Terra Laval), which teaches a ratchet mechanism and provides a tamper indicator. Numerous other post-applied fitments are available on the market from manufacturers such as SIG Combibloc GmbH & Co KG (www.sigcombibloc.com) and Bericap GmbH & Co (www.bericap .com) .
Technical Problems
All of these fitments suffer from technical problems including the amount of force needed to open the package and the relative complexity of manufacture, installation and use, particularly for fitments assembled from multiple parts. Alignment issues are a particular problem in post-applied fitments. Since the fitments need to be glued onto the containers there is a risk that they will become detached in transit. The external application also makes these closures vulnerable to tampering. Use of these closures is frequently not intuitive creating additional problems of consumer education.
Solution of the Invention
Rather than the approach of these prior art fitments, which retain the barrier layer in the composite paperboard carton, the present invention solves the problem of providing a continuous banier layer with a resealable pour spout closure by providing the barrier layer within the closure itself so that it can be inserted into a pre-cut hole as with non-aseptic cartons.
However in an aseptic/ESL context, it is not acceptable to expose bare aluminium to the contents of many aseptically packaged fluids, for example high acid products. This is because such products have a propensity - over the long shelf life of six to nine months- to oxidise the metal. Therefore any bare foil must be prevented from coming into contact with the contents of the aseptic carton. It is therefore not sufficient to apply a foil - even a coated foil - to a base flange of a carton fitment, as any exposed cut edge would be vulnerable to this oxidation over time. It is known to avoid such contact in the structural seams needed to make a carton from a composite paperboard blank. Typically to create such seams, an inner paperboard layer is folded outwardly and overlapped with an outer layer so that the edges of the barrier layer foil are prevented from coming into contact with the contents. The seam is welded by ultrasound or induction heat sealed. This is found to produce acceptable results.
Applying a removable, peelable foil seal across a top of a fitment spout prevents the presence of a plug inside the overcap for satisfactory reseal and leaves a significant breach in the gas barrier through the base flange sunounding the spout within the hole and the spout wall.
It is therefore preferable to continue the barrier layer in the base flange of the fitment and this is a solution described in US4,948,015 (Kawajiri). The fitment described has a base flange provided with a recess into which a thin film having a property of a gas banier is securely fitted. It is suggested that the film may be of laminated structure comprising polyethylene, aluminium and polyethylene layers. The barrier layer has its peripheral edge concealed by the material of the film. Insert moulding is suggested as a technique for joining the film to the fitment. In principle the Kawajiri proposal solves the technical problems discussed above. However the design is not practicable for the following reasons:
• Practical, high volume, low cost manufacture of multilayer films containing an entirely embedded aluminium foil layer (with no exposed aluminium edge) is not known in the art and no method is described by Kawajiri..
• Insert moulding for such lightweight foil discs would be a slow procedure requiring careful placement of discs into the mould.
• In order to place the disc into the recess it is almost inevitable that a crevice would be created within the recess around the disc and this would render the fitment unsuitable for aseptic use as the crevice could not be adequately sterilised prior to use. The inability to kill bacteria hiding in crevices is a major issue that leads to any packaging subject to this problem being non aseptic, leading to a product "shelf life" of a few days, rather than the cunent aseptic norm of many months shelf life under non refridgerated conditions.
In accordance with the present invention the technical problems left unsolved by Kawajiri are solved by providing a fitment comprising a base flange and a hollow spout, a removable part within a base of the spout, and an overcap for resealably closing the spout, and a barrier foil coated on both sides with a plastics layer extending across the base flange, characterised in that the foil has an exposed cut edge prior to assembly in the fitment and that edge of the foil is assembled to the flange in such a manner that the edge is prevented in use from coming into contact with contents of a container to which the fitment is assembled. The edge can be sealed away in various ways such as, for example, by embedding it into the plastic of the flange, folding it underneath prior to sealing to the flange, or wrapping it around a peripheral edge of the flange.
Preferably the edge of the foil is embedded in the base flange. By embedding the edge of the foil into the plastic it cannot taint the product. Since the barrier layer in the paperboard carton overlaps with the barrier foil applied to the base flange there is no break in the barrier layer.
Such a fitment can be manufactured by a method comprising the steps of placing a foil having a plastics layer on each surface within a receiving wall projecting from a first surface of a base flange of a fitment that has a hollow spout extending from an opposite surface, and securing the foil to the flange such that the wall is sealed over the edge of the foil disc.
The fully assembled fitment may be inserted into a pre-cut hole in a composite paperboard carton blank from inside prior to filling and the embedding of the foil edge carried out as part of the same process as welding the flange to the paperboard.
Alternatively the present invention provides a fitment comprising a base flange having a first surface and a hollow spout projecting from a surface opposite the first surface, a removable part within a base of the spout, and an overcap for resealably closing the spout, characterised in that a banier foil coated on both sides with a plastics layer is wrapped over the first surface of the flange such that the foil extends onto the opposite surface sunounding the spout.
hi this alternative construction the cut edge of the foil is prevented from coming into contact with the contents of the container as it is sealed to a paperboard wall during the ultrasound welding of the fitment into the carton. This seal has exactly the same construction and integrity as other seals elsewhere on the paperboard carton. The barrier layer in this construction is virtually continuous as there are only the inner polyethylene layers between the two foils and not even the modest thickness of the base flange as in the earlier variation.
Preferably the fitments as claimed are used in any shape of paperboard carton, but it will be appreciated that this type of fitment could also be applied to a mouth of a gas impervious bottle such as a barrier PET or multi-layer polyolefm bottle; to a coated steel or aluminium can or can lid; or to a mono or multi-layer plastics container which is thermo formed, injection moulded or blow moulded.
Brief Description of the Drawings
In order that the invention may be well understood some 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 section through a fitment in accordance with a first embodiment of the invention assembled in a carton top;
Figure 2 shows a detail of an edge of the base flange of Figure 1 prior to insertion of a foil;
Figure 3 A shows a detail of an alternative embodiment of the edge of a base flange prior to insertion of a foil;
Figure 3B shows a detail of an edge of the base flange of Figure 3 A after insertion of the foil and before an induction heat sealing step; Figure 4 shows a section through a fitment in accordance with a further embodiment of the invention; and
Figure 5 shows a section through a fitment in accordance with a yet further embodiment of the invention.
Overview
A carton fitment 2 is made up of a base flange 4 with an upstanding pour spout 6, which is closed by an overcap 8.
The fitment 2 is two injection moulded plastics components.
The spout 6 comprises a hollow cylindrical spout in the base of which there is a removable part 10. The removable part 10 is a plastics disc joined to the remainder of the base flange 4 by a weakened section 12. A ring pull 14 is connected to the removable part 10 in order to allow the removable part to be removed.
As so far described, this fitment is substantially similar to carton fitments known in the art for use with standard paperboard cartons. Any of the design features employed on such fitments can be incorporated into the fitment of the present invention.
The fitment of the present invention is however intended to be used with a container providing a barrier layer. As illustrated in Figure 1 the fitment is inserted into a pre- cut hole 20 in a composite paperboard carton wall 22. The fitment 2 could also be assembled to an open mouth of a banier PET or polyolefm banier layer bottle; or any other gas tight container, such as a tin can made up of mono or multi layers including aluminium, steel etc coated with a plastics surface layer, or a plastics container, which is thermoformed, injection moulded or blow moulded, whether by an extrusion or injection-stretch blow moulding process.
A foil disc 30 is sealed to an underside of the base flange 4 and removable part 10.
Instead of a solid disc, the removable part 10 could be constructed as an annular frame typically with a central, three-pointed star structure. Such a frame would be joined by weekened bridges to the base flange 4. This reduces the overall weight of the fitment
2.
The foil disc 30 is cut from an aluminium foil, which is coated on both sides with a plastics layer, typically polyethylene, polypropylene or PET, which enables it to be bonded to other plastics components.
The base flange 4 is welded in an annular region A to the carton wall 22 by means of induction heat sealing or ultrasonic welding. A receiving wall 32 sunounds a peripheral edge of the base flange 4. Figure 1 the receiving wall 32 is shown as having been deformed inwardly over the peripheral edge of the foil disc 30 in order to prevent the contents of the container being exposed to an edge of the aluminium layer within the double sided coated foil disc 30.
Carton Structure
The composite paperboard carton 22 is formed from several layers of material including a gas barrier layer 40. This barrier layer may be aluminium foil or EVOH or any other suitable material. The barrier layer is bonded by means of an adhesive layer to a paperboard layer which is coated on each side by a polyethylene coating. Other detailed constructions of the composite paperboard are possible.
Closure Construction
One possible construction for the overcap and pour spout is described in WO99/61337 (Spreckelsen McGeough), which also shows how a foil may be fitted into a base flange. However, in that document, the free metal edge of the foil would be exposed.
Spreckelsen McGeough also shows a snap on overcap. It will be appreciated that the screw on overcap 8 as illustrated is equally appropriate for closing the pour spout 6.
The overcap 8 is shown as having a plug 42, which is received within an open mouth of the spout 6 in order to ensure effective resealing. Threads 44, 46 are formed on the external wall of the spout of the pour spout 6 and on a facing internal wall of the overcap 8 in order to enable the overcap to be screwed onto the spout of the spout. Sealing the Edge of the Foil
An essential feature of the fitment of the present invention is that the metal edge of the foil is prevented from coming into contact with the contents of a container in use when the fitment is assembled. The fitment 2 is preferably pre sealed to the foil 30 before installation in the container. In the embodiment of Figures 1 and 2 the foil disc 30 is seated within a receiving wall 32 which, prior to assembly of the foil to the spout 6, depends vertically from the base flange 4 as shown in Figure 2. During assembly a tool is used to press the receiving wall 32 over the edge of the foil disc during an induction heat sealing process. The receiving wall 32 is therefore a sacrificial part of the spout construction and the plastic making up this material effectively melts over the edge of the foil to seal in the exposed metal edge.
An alternative construction of the receiving wall 32 is shown in Figures 3 A and 3B. In this anangement the wall 32 has a weaked portion 50 in an intermediate annular region. Once the foil disc 30 is inserted within the receiving wall 32 the weakened portion 50 allows a terminal end 52 of the wall to be deformed inwardly over the edge of the foil to retain it in position to ensure that the plastic of this sacrificial receiving wall 52 flows over and covers any exposed metal edge.
An alternative approach to sealing away the metal edge of the foil 30 is shown in Figure 4. hi this embodiment the foil 30 is larger than the diameter of the base flange and is wrapped over the entirety of a lower first surface 54 of the base flange 4 around a free edge and onto a second surface 56 of the base flange. The folded edge terminates inwardly of the annular region A at which the base flange 4 is welded to the container 22.
hi the embodiment of Figure 5 the foil disc 30 has its edges folded upwardly and inwardly prior to being welded to the base flange 4. This folding step may be done by means of an appropriate forming tool during placement of the foils on the base flange 4. A periphery of the base flange 4 is provided with a retaining wall 34 to retain the folded foil disc in place prior to sealing. Method of Manufacturing
The carton fitments 2 are preassembled to the foil disc 30 and the foil welded in position by an induction heat sealing process before the fitments are assembled to the paperboard carton. The assembly to the paperboard carton is as with standard non- aseptic packaging and will not be described in detail here. As an alternative to induction heat sealing of the foil to the base flange 4, ultrasonic welding maybe employed. The foil may also be secured to the flange by adhesive means. In the embodiment of Figure 4, it is possible to rely on the wrapping over of the outer peripheral edge of the foil around the base flange 4 to secure the foil to the spout 6. Although further bonding steps can be undertaken prior to installation in the carton, these are not essential with this embodiment. If the fitment 2 is induction heat sealed to the carton the foil 30 will weld to the base flange at that time.
In the embodiment of Figure 4 the seal which is created between the edge of the foil 30 and the wall 22 is of exactly the same construction as on the other seams elsewhere in a paperboard carton of this type.
Continuity of the Barrier Layer
Once the fitment 2 is welded into hole 20 in the paperboard carton wall 22 the barrier layer constituted by the foil 30 creates a continuous banier layer with the layer 40 within the paperboard carton. Therefore, the ease of assembly advantages of the carton fitments used with non-aseptic packaging are combined with the integrity of the barrier layer offered by post applied prior art fitments traditionally used with aseptic packaging.
Consumer Use hi use, a consumer can open the packaging by removing the overcap 8 by unscrewing it in order to gain access to the ring pull 14. The removable part 10 can then be removed by use of the ring pull 14. Since the foil 30 is welded to the whole of the base flange 4 including the removable part 10, the pulling out of the ring pull will breach the foil and allow access to the container contents. If necessary, teeth may be formed in the lower surface 54 of the base flange 4 in order to facilitate tearing of the foil as described in Spreckelsen McGeough above. If the foil is not severed by removal of the removable part 10, it is relatively easy for this foil layer to be punctured manually.
Although a ring pull has been shown, any of the other prior art mechanisms can be used in the spout to remove the removable part and breach the foil to allow access to the contents.

Claims

Claims
1. A fitment comprising a base flange (4) and a hollow spout (6), a removable part(lθ) within a base of the spout (6), and an overcap (8) for resealably closing the spout (6), and a banier foil (30)coated on both sides with a plastics layer extending across the base flange (4), characterised in that the foil (30) has an exposed cut edge prior to assembly in the fitment, and that the edge of the foil (30) is assembled to the flange (4) in such a manner that the edge is prevented in use from coming into contact with contents of a container to which the fitment is assembled.
2. A fitment as claimed in claim 1, characterised in that the edge of the foil (30) is embedded in the base flange (4).
3. A fitment as claimed in claim 1 or 2, characterised in that the foil (30) is sealed to the base flange (4).
4. A fitment comprising a base flange (4) having a first surface (54) and a hollow spout (6) projecting from a surface (56) opposite the first surface (54), a removable part(lθ) within a base of the spout (6), and an overcap (8) for resealably closing the spout, characterised in that a barrier foil (30) coated on both sides with a plastics layer is wrapped over the first surface of the flange (4) such that the foil extends onto the opposite surface (56) sunounding the spout.
5. A fitment as claimed in any one of the preceding claims, further comprising tamper evident means.
6. A paperboard carton with a fitment (2) as claimed in any one of the preceding claims inserted into a pre-cut hole (20) in a composite paperboard wall (22), characterised in that a seal between edges of the foil (30) and the wall (22) are of the same integrity as other seams in a remainder of the carton.
7. A plastic coated or barrier coated metal container with a fitment (2) as claimed in any one of the preceding claims inserted into a pre-cut hole (20) in a wall of the container, characterised in that a seal between edges of the foil (30) and the wall are of the same integrity as other seams in a remainder of the container.
8. A mono or multi-layer plastics container which is thermofonned, injection moulded, or blow moulded, with a fitment (2) as claimed in any one of the preceding claims inserted into a pre-cut hole (20) in a wall of the container, characterised in that a seal between edges of the foil (30) and the wall are of the same integrity as other seams in a remainder of the container.
9. A method of manufacturing a fitment comprising the steps of placing a foil having a plastics layer on each surface within a receiving wall projecting from a first surface of a base flange of a fitment that has a hollow spout extending from an opposite surface, and welding the foil to the flange such that the wall is sealed over the edge of the foil.
10. A method as claimed in claim 9, further comprising the step of folding the receiving wall over the edge of the foil prior to the securing step.
11. A method as claimed in claim 9 or 10, wherein the securing step is carried out by induction heat sealing.
12. A method of manufacturing a fitment comprising the steps of wrapping a foil having a plastics layer on each surface over a first surface of a base flange of a fitment that has a hollow spout extending from an opposite surface such that the foil extends onto the opposite surface sunounding the spout, and welding the foil to the flange.
PCT/GB2004/002744 2003-11-14 2004-06-25 Fitments WO2005054068A1 (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
US10/595,820 US20070095834A1 (en) 2003-11-14 2004-06-25 Fitments
EP04743095A EP1687212B1 (en) 2003-11-14 2004-06-25 Fitments
CA002546114A CA2546114A1 (en) 2003-11-14 2004-06-25 Fitments
DE602004012441T DE602004012441T8 (en) 2003-11-14 2004-06-25 APPROACHES
BRPI0416043-6A BRPI0416043A (en) 2003-11-14 2004-06-25 packaging opening device
NZ546726A NZ546726A (en) 2003-11-14 2004-06-25 Fitments
DK04743095T DK1687212T3 (en) 2003-11-14 2004-06-25 Accessories
AU2004295141A AU2004295141A1 (en) 2003-11-14 2004-06-25 Fitments
PL04743095T PL1687212T3 (en) 2003-11-14 2004-06-25 Fitments

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB0326619.4 2003-11-14
GB0326619A GB2408040B (en) 2003-11-14 2003-11-14 Fitments

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WO2005054068A1 true WO2005054068A1 (en) 2005-06-16

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EP (1) EP1687212B1 (en)
CN (1) CN1878700A (en)
AT (1) ATE388900T1 (en)
AU (1) AU2004295141A1 (en)
BR (1) BRPI0416043A (en)
CA (1) CA2546114A1 (en)
DE (1) DE602004012441T8 (en)
DK (1) DK1687212T3 (en)
ES (1) ES2303082T3 (en)
GB (1) GB2408040B (en)
MY (1) MY130704A (en)
NZ (1) NZ546726A (en)
PL (1) PL1687212T3 (en)
RU (1) RU2346863C2 (en)
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WO (1) WO2005054068A1 (en)
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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8430262B2 (en) 2008-09-12 2013-04-30 Eco.Logic Brands Inc. Containers for holding materials
US8663419B2 (en) 2010-11-30 2014-03-04 Ecologic Manual container assembly and liner integration fixture for pulp-molded shell with polymer liner container systems
US8807377B2 (en) 2010-03-10 2014-08-19 Eco.Logic Brands Inc. Pulp-formed wine bottle and containers for holding materials
USD720227S1 (en) 2012-09-06 2014-12-30 Eco.Logic Brands Inc. Container for holding materials
US10005605B2 (en) 2008-09-12 2018-06-26 Eco.Logic Brands Inc. Containers for holding materials
JP2020200062A (en) * 2019-06-07 2020-12-17 凸版印刷株式会社 Barrier spout
US11286104B2 (en) 2013-10-02 2022-03-29 Eco.Logic Brands Inc. Containers for particulate materials

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2433496B (en) * 2005-12-22 2007-11-21 Bapco Closures Res Ltd Tamper evident drinking fitment
GB0618462D0 (en) * 2006-09-20 2006-11-01 Bapco Closures Res Ltd Carton fitments
GB2444048B (en) * 2006-11-21 2008-11-12 Bapco Closures Res Ltd Assembly of containers made of plastics and laminate material components
PL2008787T3 (en) * 2007-06-28 2012-08-31 Tetra Laval Holdings & Finance Method of injection molding opening devices on sheet material for packaging pourable food products, and packaging material and package obtained thereby
GB2457273A (en) * 2008-02-08 2009-08-12 Mohammed Pervaz Paper board stay fresh box with aluminium lining
DE102010048415A1 (en) * 2010-10-15 2012-04-19 Sig Technology Ag Resealable pouring element with barrier foil and retaining wall
CA2821980C (en) 2010-12-21 2018-07-17 Capartis Ag Spout, method for producing a spout and container closure comprising such a spout
DE102013217429A1 (en) 2013-09-02 2015-03-05 Siemens Aktiengesellschaft Compressed air system
PL2886479T3 (en) * 2013-12-23 2017-06-30 Tetra Laval Holdings & Finance S.A. An opening device for a container and a method for producing such opening device
US9809370B2 (en) * 2014-08-14 2017-11-07 Scholle Ipn Corporation Barrier spout for a flexible bag and a flexible bag having a barrier spout
CN107735332B (en) * 2015-06-30 2019-10-11 Sig技术股份公司 Pouring element for package and the composite packages with the pouring element

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4948015A (en) * 1987-09-24 1990-08-14 Dai Nippon Insatsu Kabushiki Kaisha Carton equipped with liquid pouring-out device
JP2000025820A (en) * 1998-07-15 2000-01-25 Dainippon Printing Co Ltd Liquid container having spout
JP2000281058A (en) * 1999-03-25 2000-10-10 Toppan Printing Co Ltd Pour spout for liquid container
JP2002332054A (en) * 2001-05-09 2002-11-22 Kureha Chem Ind Co Ltd Spout tool, vessel and gas barrier film

Family Cites Families (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3260411A (en) * 1964-07-13 1966-07-12 American Can Co Collapsible container structure
GB2187712B (en) * 1986-03-11 1990-05-23 Tetra Pak Finance & Trading Fluid pack and process for the production therof
US4819819A (en) * 1988-03-28 1989-04-11 Robertson Jr Bertram D Tamper-evident closure
US4815618A (en) * 1988-04-25 1989-03-28 Sunbeam Plastics Corporation Tamper indicating dispenser closure
US5054642A (en) * 1989-03-15 1991-10-08 Tenryu Chemical Industry Co., Ltd. Lid device for wide-mounted container and method of producing the same
US5133486A (en) * 1991-01-18 1992-07-28 Phoenix Closures, Inc. Tamper evident pull ring pour spout
US5397013A (en) * 1991-03-05 1995-03-14 Portola Packaging, Inc. One-piece fitment and tethered plug with tamper-evident means
US5110040A (en) * 1991-04-30 1992-05-05 Kalberer Roderick W Pour spout construction and method
US5303838A (en) * 1992-09-30 1994-04-19 Portola Packaging, Inc. Frangible fitment for container
CH687252A5 (en) * 1994-06-10 1996-10-31 Tetra Laval Holdings & Finance Containers with insertable closure unit.
US6464096B2 (en) * 1995-01-30 2002-10-15 Portola Packaging, Inc. Fitment having removable membrane
ATE267121T1 (en) * 1995-01-30 2004-06-15 Portola Packaging Inc POURING DEVICE WITH REMOVABLE MEMBRANE
US6129228A (en) * 1995-01-30 2000-10-10 Portola Packaging, Inc. Apparatus and method for transporting fitment and fitment therefor
US5765747A (en) * 1996-03-15 1998-06-16 Westvaco Corporation Pour spout fitment for gable top container
US5799840A (en) * 1996-04-25 1998-09-01 Tetra Laval Holdings & Finance, S A Closure formed as a single, integral part
US5890609A (en) * 1996-09-20 1999-04-06 Rexam Closures, Inc. Tamper indicating closure system
US5735426A (en) * 1996-12-17 1998-04-07 Alcoa Closure Systems International Inc. Fitment-closure assembly for gable-topped carton
US6682686B1 (en) * 1999-02-16 2004-01-27 Ishida Co., Ltd. Method of making a container closure
US6047878A (en) * 1999-03-11 2000-04-11 Sonoco Development, Inc. Substantially paper container
US6179147B1 (en) * 1999-06-03 2001-01-30 Tetra Laval Holdings & Finance, Sa Closure with flush-formed barrier membrane having selectively thinned edge regions
ATE275504T1 (en) * 2000-06-15 2004-09-15 Crown Packaging Technology Inc CAN WITH POURING SLEEVE
JP2002096828A (en) * 2000-09-21 2002-04-02 Shikoku Kakoki Co Ltd Container with pouring device and manufacturing method therefor
ITTO20020891A1 (en) * 2002-10-14 2004-04-15 Tetra Laval Holdings & Finance SEALED PACKAGING FOR VERSABLE FOOD PRODUCTS

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4948015A (en) * 1987-09-24 1990-08-14 Dai Nippon Insatsu Kabushiki Kaisha Carton equipped with liquid pouring-out device
JP2000025820A (en) * 1998-07-15 2000-01-25 Dainippon Printing Co Ltd Liquid container having spout
JP2000281058A (en) * 1999-03-25 2000-10-10 Toppan Printing Co Ltd Pour spout for liquid container
JP2002332054A (en) * 2001-05-09 2002-11-22 Kureha Chem Ind Co Ltd Spout tool, vessel and gas barrier film

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
PATENT ABSTRACTS OF JAPAN vol. 2000, no. 04 31 August 2000 (2000-08-31) *
PATENT ABSTRACTS OF JAPAN vol. 2000, no. 13 5 February 2001 (2001-02-05) *
PATENT ABSTRACTS OF JAPAN vol. 2003, no. 03 5 May 2003 (2003-05-05) *

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8430262B2 (en) 2008-09-12 2013-04-30 Eco.Logic Brands Inc. Containers for holding materials
US10005605B2 (en) 2008-09-12 2018-06-26 Eco.Logic Brands Inc. Containers for holding materials
US11167904B2 (en) 2008-09-12 2021-11-09 Eco.Logic Brands Inc. Containers for holding materials
US8807377B2 (en) 2010-03-10 2014-08-19 Eco.Logic Brands Inc. Pulp-formed wine bottle and containers for holding materials
US9452857B2 (en) 2010-03-10 2016-09-27 Eco.Logic Brands Inc. Containers for holding materials
US8663419B2 (en) 2010-11-30 2014-03-04 Ecologic Manual container assembly and liner integration fixture for pulp-molded shell with polymer liner container systems
US9126719B2 (en) 2010-11-30 2015-09-08 Ecologic Manual container assembly and liner integration fixture for pulp-molded shell with polymer liner container systems
USD720227S1 (en) 2012-09-06 2014-12-30 Eco.Logic Brands Inc. Container for holding materials
US11286104B2 (en) 2013-10-02 2022-03-29 Eco.Logic Brands Inc. Containers for particulate materials
JP2020200062A (en) * 2019-06-07 2020-12-17 凸版印刷株式会社 Barrier spout

Also Published As

Publication number Publication date
GB2408040A (en) 2005-05-18
GB0326619D0 (en) 2003-12-17
PL1687212T3 (en) 2008-08-29
ES2303082T3 (en) 2008-08-01
DE602004012441T8 (en) 2009-07-16
BRPI0416043A (en) 2007-01-02
RU2346863C2 (en) 2009-02-20
DE602004012441D1 (en) 2008-04-24
RU2006118724A (en) 2007-12-27
US20070095834A1 (en) 2007-05-03
CN1878700A (en) 2006-12-13
DE602004012441T2 (en) 2009-03-26
EP1687212B1 (en) 2008-03-12
AU2004295141A1 (en) 2005-06-16
DK1687212T3 (en) 2008-07-14
EP1687212A1 (en) 2006-08-09
MY130704A (en) 2007-07-31
ZA200603666B (en) 2007-09-26
CA2546114A1 (en) 2005-06-16
NZ546726A (en) 2008-09-26
GB2408040B (en) 2005-10-12
ATE388900T1 (en) 2008-03-15
TW200523178A (en) 2005-07-16
TWI311971B (en) 2009-07-11

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