A self-folding polygonal impermeable food box and a tool for its forming, according to the invention, belongs to the packaging of the polygonal cross-section, e.g. to boxes formed by folding or erecting one or more blanks made of paper preparations by folding all the parts connected to the central panel to form a body of packaging in the form of shallow vessels specially constructed to allow collapsing and re-erecting without disengagement of side or bottom connections, where adjacent sides are interconnected by gusset folds, as well as elements of packaging that can be folded or errected more accurately by its inner linings or layouts. The food box according to the invention, also includes packaging for the transport and packaging of foods to be cooked or heated in the packaging, where the boxes are specially constructed to contain liquids.
Technical problem relates to the construction of transport package for ready-to-eat meals, salads, fried and fatty products, products being consumed with use of sauces or dressings; an impermeable package which maintains its shape also when hot foodstuffs has been packaged therein; a package printable on its outer side, while its inner side still complies with demands relating to food packaging from standpoint of health and microbiological safety; a package that can be transported in sheets and can be easily formed on the packaging site, thus influencing on the low price of transport; a package which, if necessary, can be disinfected by means whose application is approved for use with food; a package whose price is competitive in comparison with existing cardboard and PET packages, wherein its internal side completely complies with aesthetic appearance that does not reveal a structure of cardboard used for forming the package, and also complies with protective, storage—transportation use and ecological functions and it complies with the standards and regulations relating to the appropriate field of technology.
It is generally accepted that packaging material is an important element in creation of appearance of packages and it practically determines a choice of manufacturing technology therefor. These facts have influenced the development both of polymeric materials and cardboard packages which in combination therewith enables safer packaging in light cardboard boxes made of special cardboards coated with polymeric films resistant to heat, humidity etc.
In industrial production with high productivity rate any process comprising involvement of manual work in packaging slows down production process on the whole, which becomes more expensive due to slower packaging. Demands in terms of precision of the packages are set very high, and a volume enclosed by polymeric packages is much bigger, thus influencing both transportation and storage expenditures, especially if the packages are filled in smaller points of sale all over territory covered by the foodstuffs manufacturer. The polymeric packages exposed to high temperatures caused by hot foodstuffs packed therein are prone to deformation due to elevated temperature, thus causing deteriorate effects either on the appearance of the package or increase in its price, because increasing the thickness of applied material is necessary to decrease effect of heating.
In that sense this invention is transported in sheets; it can be branded; it is formed manually easily by using the tool; it is impermeable; it maintains its shape in spite of packing hot foodstuffs therein or warming foodstuffs up packed in the box and it does not open during transportation except in a case of strong deformation caused by a blow, the shape of its base is eight-sided, it has transparent PET material between the lateral sides and during its opening an semi-deep dish is formed from its bottom. By means of the tool both the bottom and the cover for the box form fast and the invention as such has not existed until now.
From patent documentation are known certain solutions differing as such from the solution of the subject invention.
In U.S. Pat. No. 4,493,574 issue dto Redmond, a dispenser package for flowable substances is disclosed that appears to include a flexible part-protrusion, therein is placed liquid product and relatively stiff material rests on the mentioned part, wherein this package is opened either along fault line or cut pattern scored in relatively stiff material with one hand in such way that the package is pressed in “V”-like shape towards dimple, which is also formed in pyramidal shape. Both pressure and force concentrate on the formed protrusion, thus enabling use of barrier materials for designing package in order to form the protrusion during its holding as well as the defined opening therethrough leaks a substance injected therein. In this manner material can be stored under the pressure. In the package itself can be placed sponge-like material intended for controlling amount of expelled substance during its use.
U.S. Pat. No. 4,489,112 issued to Wise et al, appears to disclose a heat sealable container for edible oils and other types of oils, as well as a procedure for production thereof, which has laminated wall construction of the suitable oil resistant barriers or layers, which are compatible with one another insofar as bonding and sealing are concerned. Such wall construction includes central layers made of aluminum foil and fluorochemically treated paperboard secured to one another by suitable adhesive, an ionomer layer, such as Surlyn, formed on each outer paperboard and foil surface, and a layer of thermoplastic material, such as polyethylene, formed on each outer Surlyn surface. As an alternative for certain applications, the Surlyn layer can be omitted, so the outer layer of thermoplastic material can be applied directly onto the film surface.
U.S. Pat. No. 5,156,330 issued to Rosen appears to disclose an invention relating both to a packaging container and use of packaging material for production thereof. The packaging container contains an skeletal layer made of plastics and filler mixed into the plastics in a quantity between 50% and 80% of total weight of the skeletal layer. In order to facilitate the opening of the container it is provided with a tearing mark incorporated in the packaging material. Material of the packaging container is torn off along this mark in order to expose a container opening through which the contents of the container are made accesible. The tearing mark according to the invention has an unbroken cut in the skeletal layer or a similar linear recess weakening the packaging material with a depth of penetration of only about 10-30% of the total thickness of the skeletal layer. The recess reduces the inherent tear resistance of the skeletal layer by 60-80%.
The present disclosure relates to a box made of the cardboard coated with a protective layer, which makes the self folding box acceptable for direct contact with food from the standpoint of health and microbiogical safety. For example, the cardboard can be coated with PET films or foil having thickness of 12-120 microns on the internal side. The cardboard coated with polypropylene film is used for requirements of users who warm packaged foodstuffs up in microwave ovens.
Due to its shape and strength the box 1 enables packaging and heating food up to 15 min at 140° C. The box 1 is impermeable, without any glued element, thus being safe against leakage of semi-liquid food. The boxes having glued corners, edges or bottoms are prone to leaking due to weakening of the joint caused by inadequate gluing or damaging during transportation or forming packages and therefor they haven't been used for packaging of semi-liquid food.
A criterion for choosing the material have been the selection of cardboard enabling branding by printing thereon, as well as its forming and consistence. The box 1 (
Interestingly, in the present disclosure, a combined self folding, impermeable box for packaging foodstuffs is formed very fast by means of the appropriate tool in the first phase. The tool is made of stainless steel, wherein a bottom and eight tin guides are formed by bending an unfolded blank for the tool. The bottom of the tool has width and length slightly bigger than the box bottom. Eight guides, which are slightly smaller than the lateral sides of the box, have one of the halves thereof resting on the bottom of the tool at an angle of 90 degrees and another of the halves thereof folded outwards at an angle of 30 degrees in relation to the surface of the bottom of the tool and they serve for forming the box. In this case, in the first phase, the unfolded box bottom is positioned above the tool, then it is pressed downwards, so its entering the tool template causes the corner sides folding around the folding lines, while the lateral sides straighten up. In this phase the box obtains the prism shape having the eight-sided base with the corner sides folded on half and directed outwards. The bases of the corner sides are partially made of PET film or foil, while the corner sides have triangular shape and they are bordered with cardboard coated with PET film or foil on the upper side. This is realised in such way that on a cutting machine are first cut out openings in the corner sides of the unfolded blank for the box, then the whole surface is coated with PET film or foil, thereafter the shape of unfolded blank for the box is cut out once more on the cutting machine and finally the folding lines are stamped. In such way is accomplished that the corner sides are partially made of PET film or foil, which can also be transparent providing an effect of window and it is also enabled that the corner sides fold easier in the tool without any loss of shape. In the first phase of insertion of the unfolded blank for the bottom in the tool, the lateral sides are set in upward position, while the corner sides are pulled by means of the guides. The joints of the corner and lateral sides approach one another due to the mentioned pulling, while the corner sides fold around the folding lines and they are directed towards the outside of the bottom of the box. Due to folding of cardboard which borders the corner sides, PET film or foil folds itself, while the cardboard forms the folded corner sides. Cardboard folding causes both streching of cardboard fibers on outer side of the folding line and compression of fibers on internal side of the cardboard. This streching causes deformation of cardboard fibres and determines the folding direction of the corner sides during the following bottom forming, when it is inserted in the tool. In the second phase, when unfolded bottom of the box is turned in such way that its second side enters the tool, the corner sides are formed in such way that they are directed towards the inside of the bottom.
The box formed in such way can be easily filled up and covered with the cover.
The cover prevents opening the box by locking. Stretching and compression of cardboard fibres on the folding lines cause deformation which prevents complete unfolding of the box during its opening, but instead the bottom of the box forms the shape of a shallow tray. The box cover as a separate element is given with its unfolded blank.
It is also interesting that, in the present disclosure, the manual formation of the box becomes faster and in that the corner sides (gussets) are made with cardboard from the upper side and an opening covered with PET film or foil are designed to enable simple formation of the box during insertion into the tool. No additional auxiliary elements are needed for locking the box from its outside and it is also advantageous that the end user can consume foodstuffs from the formed shallow tray and thereafter he can convert the box back into position intended for locking the box with the cover.
The above mentioned aesthetic moment, originating from the openings on the corner sides coated with transparent PET film or foil as well as a window on the box cover provides a very nice visual appearance.
It is also interesting that the box is formed very fast by means of the tool, and since the opened box has a form of shallow tray and the inside of the box is coated with PET material and that is formed without gluing, thus preventing leakage on joints thereof.
Such self folding box with the tool for forming is transported and stored in sheets of cardboard. This enables decrease in transportation and storage expenditures and the tool for forming the box provides for fast and easy forming the box.
The disclosure will be described in detail with a reference to a preferred embodiment of the invention and it is illustrated in the drawings, wherein:
While this disclosure is susceptible of embodiment in many different forms, there is shown in the drawings and described herein in detail a specific embodiment(s) with the understanding that the present disclosure is to be considered as an exemplification and is not intended to be limited to the embodiment(s) illustrated.
Prepared cardboard is cut in a machine therein a tool with knives was placed (not shown), wherein openings in the corner sides (gussets) and in the cover are cut out. The tool is provided with the knives for cutting out and making slits within the formed unfolded blank A (
The box 1 (
The box 1 is covered with a cover 10, whose unfolded blank is shown in
It is also envisaged another variant of embodiment of the box. The variant I (
Forming the box 1 is performed in the tool 11 for forming in the same manner as described in the previous part and shown in
In the box 1 are poured edible ready-to-eat meals, salads, fried and fatty products.
The foregoing description merely explains and illustrates the disclosure and the disclosure is not limited thereto except insofar as the appended claims are so limited, as those skilled in the art who have the disclosure before them will be able to make modifications without departing from the scope of the disclosure.
This application is a continuation of PCT/RS2016/000007 entitled “A Self Floding Polygonal Impermeable Food Box and A Tool for Its Forming” filed Apr. 6, 2016, which claims the benefit of patent application No. P 2015/0322 which was filed on May 12, 2015 in The Republic of Serbia, the entire specification of both of which is hereby incorporated by reference in its entirety.
Number | Name | Date | Kind |
---|---|---|---|
2003326 | Wellman | Jun 1935 | A |
2483063 | Ray | Sep 1949 | A |
3966112 | Gordon | Jun 1976 | A |
4079853 | Casutt | Mar 1978 | A |
4489112 | Wise et al. | Dec 1984 | A |
4493574 | Redmond | Jan 1985 | A |
4589591 | Sjostrand | May 1986 | A |
5000374 | Deiger | Mar 1991 | A |
5156330 | Rosen | Oct 1992 | A |
5253801 | Bernstein et al. | Oct 1993 | A |
5351879 | Liu | Oct 1994 | A |
5397051 | Liu | Mar 1995 | A |
6359272 | Sadek | Mar 2002 | B1 |
7870995 | Kaltman | Jan 2011 | B1 |
8186570 | Learn | May 2012 | B2 |
9718576 | Moore | Aug 2017 | B2 |
20020113116 | Vayrette | Aug 2002 | A1 |
20050241980 | Schmitt | Nov 2005 | A1 |
20100102111 | Learn | Apr 2010 | A1 |
20120228371 | Jang | Sep 2012 | A1 |
20180065772 | Nikolic | Mar 2018 | A1 |
20180086495 | Nikolic | Mar 2018 | A1 |
Number | Date | Country |
---|---|---|
202010001585 | Jul 2011 | DE |
1234774 | Aug 2002 | EP |
1636118 | Oct 2006 | EP |
2797815 | Apr 2016 | EP |
2324519 | Oct 1998 | GB |
2435880 | Sep 2007 | GB |
2012019084 | Feb 2012 | WO |
Number | Date | Country | |
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20180086495 A1 | Mar 2018 | US |
Number | Date | Country | |
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Parent | PCT/RS2016/000007 | Apr 2016 | US |
Child | 15808058 | US |