The present invention relates to a package material blank and to a package container comprising such blank. The invention also relates to a method for manufacturing an opening device on a package material blank.
Package containers of the single use disposable type for liquid foods are often produced from a packaging material based on paperboard or carton. Such container is for example be employed for aseptic packaging of liquid foods such as milk, fruit juices etc, marketed and sold for long term ambient storage. The packaging material in such package container is typically a laminate comprising a bulk layer of paper or paperboard, outer, liquid-tight layers of thermoplastics, a gas barrier layer, most commonly an aluminum foil and finally one or more inside layers composed of one or several part layers, comprising heat-sealable adhesive polymers and/or heat-sealable polyolefins.
Package containers of this sort are normally produced on fully automatic packaging machines. In one example, a continuous tube is formed from the web-fed packaging material; the web of packaging material is sterilized in the packaging machine, and the sterilized web of packaging material is maintained in a closed, sterile environment in the subsequent step. The web is folded and sealed longitudinally to form a vertical tube. The tube is filled with the sterilized or sterile-processed food product, and is sealed and subsequently cut along equally spaced cross sections to form pillow packs, which are then folded mechanically to form respective finished, e.g. substantially parallelepiped-shaped, package containers.
Commonly, the package container have an opening device in order to facilitate consumer opening, many different types of opening devices including pull-tabs or molded opening devices, as for example discussed in WO03/095199 25 and WO/2009/000927.
However, the latter type of package is a high-volume (in terms of packages per time unit) and low-cost package (due to the properties of the packaging material), and such opening devices might hamper the production speed and be detrimental for the cost of the package.
For this reason there is a need for an opening device having a high efficiency in regard of the amount of material used and the time needed for production of each opening device.
For the purpose of the invention, the term “Package material blank” or “blank” shall include an individual sheet or a blank in a package material web. Such package material web may comprise one or more “package material blanks” arranged after each other in a continuous web, some of those blanks in different processing stages, i.e. on one blank in such web may comprise an opening device, while other blanks on the web might still be un-processed.
For the purpose of the invention, the terms container, package and packaging container refer to the same structure. In addition, the terms material, material laminate structure or packaging material refers to the package material blank. The term “cellulosic material” may comprise one or more layers of paper, cardboard or any other cellulosic fiber based material.
In an embodiment of the invention a package material blank comprises a multilayer material structure having a layer of cellulosic material and one or more layers of plastic laminate. The blank comprises a plastic opening device. The plastic opening device contains two portions arranged on different major sides of the blank and connected via a material bridge penetrating through the material structure. While the second portion is of the opening device is attached to one major side or surface of the blank, the first portion comprises a proximal end connected to the material bridge and a distal end displace from the other major side or surface. The opening device further comprises a grip portion for a consumer to grab. The grip portion is attached to the distal end of the first portion and displaced from the surface of the package material blank.
The displacement of the grip from the surface of the package material enables a consumer to easily grab the portion and bend it for opening the package. The grip is rigidly connected via the first portion and the material bridge penetrating through the package material to the second portion. The penetration allows exerting high forces without ripping the grip portion from the bridge or the second portion. The opening device is easy to manufacture, for instance by injection molding or similar techniques and offers a variety of different shapes.
For this purpose, it is proposed to provide a package material blank with a multilayer material structure having a layer of cellulosic material, one or more layers of plastic laminate and a penetration area. A first mold half is arranged on one side of the package material blank later forming an outside of a package container. A second mold half is on the other side of the package material blank. While the second mold half comprises a recess, the first mold half comprises a cavity with an opening facing the package material.
In this respect, the terms cavity and recess are used with different meaning. A cavity is understood to open up in a direction away from its opening, so a cavity may have a significant undercut. In other words, the area of the opening may be much smaller than an area of a cut parallel to the opening and through the cavity. A recess in contrast thereto is normally becoming narrower and does not have a significant undercut.
To create the opening device on the package material structure, a plastic melt is injected into one of the recess and the cavity. Due to pressure being built up in said cavity or said recess, the melt penetrates through penetration area in the package material structure and fills both recess and cavity completely. Particularly the melt forms the material bridge, the first and second portion, and when filling the cavity also the grip portion of the opening device.
In the next step, the cavity is opened up as to release said grip portion, the grip portion is removed from said cavity by a relative movement between the first mold half and the package material blank.
The proposed method provides an opening device having a grip portion which is spaced apart from a surface of packaging material, thereby preventing the grip portion from being attached to the uppermost material layer. The grip portion is released by opening the mold half and more particularly the cavity of the first mold half.
In an embodiment, the opening device is released by moving the second mold half and the package material blank relatively to each other in a direction perpendicular to package material blank. The first mold half is separated into a spacer portion and a recess portion, by moving the recess portion relatively to the package material and the spacer portion in a direction perpendicular to the package material. The spacer portion is arranged between the package material and the grip portion. Then the spacer portion moved relatively to the grip portion in a direction substantially parallel to the packaging material as to withdraw the spacer portion between the grip portion and the packaging material.
Both movement of the spacer portion and the recess portion can partially overlap, when they are performed. For instance the withdrawal can start while the perpendicular movement is still ongoing. The spacer portion provides a displacement of the grip portion from the surface of the package material blank ensuring the grip portion does not attach to the surface of the package material blank during manufacturing of the opening device.
Another aspect is related to the forming of the cavity. For this purpose, a half mold portion having a recess is provided and a spacer portion is arranged such that it partly covers the recess as to form a cavity having an opening. The spacer portion is moved relatively to the recess portion in a direction perpendicular to a plane substantially parallel to a surface of the spacer portion facing the package material until a planar surface is formed.
In subsequent steps the package material blank can be formed into a package container having said opening.
In an aspect of the invention, the grip portion comprises an elongated part, which extends at least partial substantially parallel to the first side. Said elongated part is formed in the cavity and may comprise different shapes, grip features and the like. The parallel arrangement provides some stack ability of packages, particularly if the distance between the package material blank and the grip portion is small and in the range of a few millimeters. The first portion enables to bend the grip portion to adjoin the grip portion to the package material of the container for improved stack-ability.
In an embodiment, a surface of the distal end to which the grip portion is attached to is substantial perpendicular to the package material blank and/or the surface thereof. Hence, the first portion protrudes from the package material blank. In an embodiment, the distal end of the first portion may lie within the penetration area.
The protrusion may follow a curved shape, for example a parabolic, arc-like or circular shape; the focal point of such curved shape may lie in a space between the package material and the grip portion. Alternatively, the protrusion may comprise a ramp like structure, thereby following a substantial linear increase. The exact shape and structure of the protrusion may depend on various circumstances, including but not limited to the forces necessary to open the package material, the shape of the grip portion, size of the bridge, thickness and composition of the penetration area and/or the package material.
Another aspect is related to the penetration area. In an embodiment the size of the penetration area is larger compared to the size of the material bridge penetrating through the material in the penetration area. Such approach reduces the accuracy for positioning the molding parts on the package material when manufacturing the opening device. The penetration area may be attenuated, meaning said area comprises a smaller thickness or another layer composition than the surrounding package material. For example the penetration area may lack one or more layers; particularly it may lack any cardboard, carton or cellulosic layer.
The first portion may be completely arranged inside the penetration area, thereby offering good opening characteristics.
In another aspect, the second portion of the opening device on the other side of the package material blank extends beyond the penetration area. In other words, the area covered by the second portion on the package material blank is larger than the penetration area and thus extends onto the surrounding area of the penetration area as well. This enables high stability and strong attachment to the package material itself withstanding even high forces during opening the package without being torn or pulled off.
To facilitate the opening of the package, the package material blank may comprise in an embodiment a consumer opening area. The consumer area may be separated at least partly from a surrounding area by a line of weakness facilitating the opening. The package material blank is ruptured in a defined manner upon using the plastic opening device to open the consumer opening area. The consumer opening area may also partly comprise the penetration area.
In the following the present invention will be explained in greater detail using the accompanying drawings, in which
Same or similar features in the following embodiment bear the same reference signs. The various features of the embodiments can be combined in different ways without deviating from the scope of the invention.
The package material blank comprises a penetration area 3, which in this case is a circular attenuated area, meaning that it lacks the fiber based layer. Consequently, its thickness is smaller and reduced compared to the surrounding area. Penetration area 3 only comprises one or more plastic layers and an aluminum layer in this embodiment. Adjoining to penetration area 3 is a consumer opening area 2, which is separated partly from other area of the package material blank by lines of weakness 21. The lines of weakness comprise a perforation extending from penetration area 3 for facilitating the rupture of the blank along these lines to open the package. At its distal end the consumer area 2 merges into an area not used for opening the package.
The embodiment of
For opening the opening device, a consumer can grab the grip portion and pull the grip portion towards the consumer opening area. Due to the material bridge and the second portion, the penetration area will rip open. Then the material in the consumer area 2 will substantially rupture along the perforation lines 21.
The material bridge adjoins and connects the first portion 41 with the second portion 43. Second portion 43 does not only cover penetration area 43 completely, but also extends onto the surrounding areas. Second portion is rigidly attached to the package material forming the consumer opening area 2 to prevent the plastic material of the second portion just to be torn of, when a consumer pulls on the grip portion 42. The first portion 41 is attached with its proximal end 41b to the material bridge and with its distal end 41a to the grip portion. As the opening device is made in one piece, e.g. by injection molding, one can say that first portion 41 merges on the one side into the material bridge 40 and on the other side into the grip portion 42. The grip portion 42 is displaced from the surface of blank 1 by a distance D. Said distance can be in the range of some millimeter. It depends on the protrusion of the first portion above the surface of package material blank 1.
In this embodiment first portion comprises a circular shape such that the surface of the distal end 41a is substantial perpendicular to the surface of blank 1. The circular shape can be such that the focal or center point F lies in the space 60 between the grip portion and the surface of the blank 1. Despite the circular shape shown here other shapes, like arcs, parabolic shapes and the like can be used.
Another alternative of such opening device having a different first portion is shown in
A slightly alternative embodiment is shown in
The grip portion 42 is a part of the opening device which as shown in the previous
The spacer 61 extends from one side of the recess to the other side, leaving a small opening space 41a′. Said opening space 41 resembles the first portion, while the cavity is used for molding the grip portion. As illustrated recess 42a is in its lateral dimension significant bigger than opening area 41a′. One can say that a projection of the planar dimension or area of cavity 42a onto the package material is larger than the planar dimension of opening 41a′, which corresponds basically to the area 3 of the package material blank. In
After the mold are placed on the package material blank the hot melt 71 is injected into the recess 43a at high pressure penetrating through the package material blank in area 3 and filling cavity 42a. The two halves are then removed after the molt is hardened. The first mold half is moved in vertical direction VD downwards, while spacer 61 remains in place between the package material blank the and the newly formed grip portion. The second mold half is moved upwards. The package material blank 1 is then moved sideward, for example in longitudinal direction LD. By doing so the spacer 61 is withdrawn from the space between grip portion and package material blank forming the displaced grip portion.
In accordance with step S3, a second mold half with a mold recess is then arranged on the other side of the package material blank, whereby the opening area partly overlaps the recess of the second mold half mold half recess in said penetration area.
The plastic mold is injected in step S4 into the recess or the cavity, for example it is injected into the recess at high pressures, thereby penetrating through the material in the overlapping areas. The hot melt fills the cavity and the recess and is at least partly hardened subsequently to form the opening device.
In step S5, the cavity is opened to release the grip portion and the grip portion is removed. The opening can be achieved in reversed order as step S3 and S2, respectively. For instance, the recess portion may be moved downwards away from the package material blank, while the spacer is kept facing the package material plank. To remove the grip portion, the package material blank may be moved in a longitudinal direction.
Number | Date | Country | Kind |
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13199808.0 | Dec 2013 | EP | regional |
1450541-6 | May 2014 | SE | national |
PCT/EP2014/069441 | Sep 2014 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/078016 | 12/16/2014 | WO | 00 |