1. Field of the Invention
The present system pertains to sealable storage, consumption and transport systems and particularly to systems for sealing and resealing of food products which, in conjunction, afford the user transportability, storage and usability for direct consumption from the system.
2. Description of Concurrent Art
Presently, food is transported or stored in sealed containers made of glass or plastic. Containers include Ziploc® bags and various shapes of bowl like containers such as Tupperware®. Leftover food is stored in sealed containers in a refrigerator. Adults and children bring food to school, the work place, on trips or the like in sealed containers. Often, containers are not returned to the owner as occurs when people bring food to someone else's house for a holiday. Children often transport containers to school and dislike the responsibility of, or plainly forget to bring the containers home.
Many food storage containers comprise a box or bowl with four sides. A top covers the container with a friction or snap on fit. It is difficult to store food containers as they vary in size, have separate covers and different shapes. Kitchen drawers are usually not big enough to store containers so cabinets or oversized drawers are used. People buy containers individually and often buy different brands, shapes and materials. The attempt to store these different containers creates a disorganized array of containers that are hard to find and often difficult to match up with their covers and can thus be quite frustrating.
Food containers are sold individually in stores as different sizes, shapes, brands, colors, etc. People require different sizes and shapes to store different amounts of leftovers or to transport food. Food is transported for company events, family get together, to lunch, for children's lunch boxes, and the like which requires different sizes. Stores sell some as multiple units stacked into each other. The amount of volume required is extensive on store shelves as well as in the kitchen. It would be desirable to have a container that can be stored flat to take up minimal space in a store and in a kitchen. It would further be desirable to have a cover reversibly attached to a container for easy storage and to find it easily. It would be further desirable to be able to store a contained within its cover.
Present technology uses stacking and attaches covers to minimize these problems but even then, to store small, medium and large sizes is difficult without taking up a lot of space and requiring a lot of work. Often, people get frustrated and simply throw containers into draws hoping to find them later. Companies attempt to coordinate containers so that the containers fit into other containers within a company's own brand. People often have many containers and are not looking to buy extensive sets of containers. They often buy one or two containers if the need arises. The ones they buy rarely are of the same brand, same shape or sizes as their previous ones so storage is difficult. It would be desirable to have a container that can be collapsed flat for easy storage separate from the ones a person presently owns.
Concurrent containers are difficult to store and the inherently differing sizes, various shapes and separate covering apparatuses render storing containers difficult, as many containers do not fit together, consequently, storage in kitchen cabinets, drawers and pantries requires a lot of space. Ziploc® bags provide sealed storage of food however, it's collapsible nature make it difficult to store foods which contain liquid, and soft or gel like material such as mashed potatoes or stew. Ziploc® bags do not provide or maintain a suitable shape to eat food directly from the bags alone, and often require support.
The instant apparatus and system, as illustrated herein, is clearly not anticipated, rendered obvious, or even present in any of the prior art mechanisms, either alone or in any combination thereof. The versatile system, method and series of apparatuses for creating and utilizing a folded sealed container system are illustrated. Thus the several embodiments of the instant apparatus are illustrated herein.
It is a primary object of the present multifunctional apparatus to reveal an easily storable, flat sheet containment mechanism which folds to become a sealed container for food storage and is further easily adaptable to the use of utensils.
It would be further desirable to reveal a version of the instant apparatus and system which is inexpensive and disposable in order to meet with the current recycling nature of society. Said disposable container system would be useful for transportation of leftovers at restaurants, of food and other such materials to schools, of food to houses on holidays and the like.
It would be further desirable to provide a container which is easily assembled and disassembled and provides a disposable or reusable sealed container which is easily stored when not in use.
It is a primary object of the present system to provide an originally flat container which when assembled affords the rigidity and strength for use as a dish to eat food directly from it or for transport and storage of food. The foldable sealed container is constructed in one piece (though in some embodiments, the cover may be separate), to minimize mixing up covers for different size and shape containers. For easy identification of various sizes, containers may be adorned with different colors, tinted, labeled or the like.
It is an object of the present system to provide a container that may be used for storage of items ranging from construction items e.g. screws and nails, to consumer and household goods including clothing, housewares, food, shoes, and numerous products requiring storage. It is a further object of the present system to provide containers that are constructed on any common storage container material such as polymer and he various plastics, cardboard, composite combinations and any other suitable material.
It would be further desirable to introduce a food container including a flat sheet with a base portion, at least four side walls or panel portions, wings or wing portions engaging each side wall to a corresponding side wall, and a cover. It is an objective of the instant system to introduce a junction of the base to the side walls and the wings to the side walls comprising hinge mechanisms and wherein when polymeric materials are utilized, the hinges are formed by thinned or depressed areas which may be constructed of the same material or a different material. It is a further objective of the instant system to utilize living hinges which may provide numerous hinges with little effect on the material.
It is an objective of the instant system to introduce an alternative embodiment wherein the base, side walls and wings are separate panels joined together by a single sheet of thin materials. It would be further desirable to reveal a system wherein the side walls have attached wings that engage and slide into pockets on adjacent walls. And in a parallel embodiment, two of the wings may be attached to the ends of one wall and two attached to the opposite wall, wherein the two adjacent walls have pockets at each end wherein the wings engage and wherein the wings are placed into pockets such that the walls may be rotated to form a box the wings rotate into pockets. In the preferred embodiment, wings engage into pockets in the open flat position. The wings do not need to be aligned into pockets when forming the box.
It would be further desirable to provide wings that can be manufactured to limit opening and disengaging from the pockets with stopping mechanisms, wherein the wings and the side walls are designed to create a retention system that restrains the container in proper position during use. There are several methods of interlock, glue, adhesive tape, differential adhesive tape, Velcro®, screws, latches, snaps or any other common methods used to achieve either permanent or reversible retention.
It is an object of this system to provide a set of interfaces from side wall to side wall and wings into pockets which may be further manufactured and in one alternative, toleranced with a tight, even frictional fit, use of seals, snap seals or other common techniques to create an air tight leak proof container. It would be further desirable to provide a system utilizing living hinge technology or the like, in conjunction with the use of multiple panels joined with a uniform sheet or layers of different materials at the hinge areas. In a preferred method of manufacture, a uniform sheet of plastic as is commonly done with polypropylene, polyethylene or like materials is molded with living hinges creating an inexpensive container. Living hinges are created by injection molding and enhanced by coining.
It is a purpose of the instant system to additionally reveal hinge technology wherein a central core rotates in a cylinder or multiple cylinders rotate around a pin. And, introducing an alternative method of securing side walls includes circumferential bands which slide around and off exterior surfaces, is a purpose of the instant system.
The foregoing has outlined the more pertinent and important features of the present invention in order that the detailed description of the invention that follows may be better understood, and the present contributions to the art may be more fully appreciated. It is of course not possible to describe every conceivable combination of components and/or methodologies, but one of ordinary skill in the art may recognize that many further combinations or permutations are possible. Accordingly, the novel architecture described below is intended to embrace all such alterations, modifications, and variations that fall within the spirit and scope of the appended claims.
There has thus been outlined, rather broadly, the more important features of the versatile integrated foldable container system and series of accompanying systems and apparatuses and embodiments in order that the detailed description thereof that follows may be better understood, and in order that the present contribution to the art may be better appreciated. There are additional features of the invention that will be described hereinafter and which will form the subject matter of the claims appended hereto.
In this respect, before explaining at least one embodiment of the invention in detail, it is to be understood that the invention is not limited in its application to the details of construction and to the arrangements of the components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced and carried out in various ways. Also, it is to be understood that the phraseology and terminology employed herein are for the purpose of description and should not be regarded as limiting.
These together with other objects of the invention, along with the various features of novelty, which characterize the invention, are pointed out with particularity in the claims annexed to and forming a part of this disclosure. For a better understanding of the invention, its operating advantages and the specific objects attained by its uses, reference should be made to the accompanying drawings and descriptive matter in which there are illustrated preferred embodiments of the invention.
To the accomplishment of the foregoing and related ends, certain illustrative aspects are described herein in connection with the following description and the annexed drawings. These aspects are indicative of the various ways in which the principles disclosed herein can be practice and all aspects and equivalents thereof are intended to be within the scope of the claimed subject matter. Other advantages and novel features will become apparent from the following detailed description when considered in conjunction with the drawings.
The advantages of the present apparatus will be apparent from the following detailed description of exemplary embodiments thereof, which description should be considered in conjunction with the accompanying drawings, in which: having thus described the system in general terms, reference will now be made to the accompanying drawings, which are not necessarily drawn to scale, and wherein:
The present system provides a container which stores as a flat sheet and folds to become a closed, sealed or airtight container comprising rigidity qualities which lend to use as an eating dish and for food storage and transportation. A sheet of material is divided into panels which fold. In sealed alternatives, the corners may be sealed with tongue and groove, locking channel, gasket or other like technology within the state of the art, in order to provide a snap lock seal with no adhesive components required. Additionally, adhesive components may be utilized and the container may be constructed of a uniform material with living hinges or constructed of multiple materials. Differential adhesive tapes may be utilized in embodiments wherein it is desirable to create a reversible seal for opening and closing and to provide protection from leakage.
A bottom panel is attached to side panels and corner folding panels or wings. Optionally, one of the side panels is attached to a top panel. Corner panels come together to elevate the side panels to form a box. An optional upper, top or cover panel may be attached to a side panel to fold and snap onto the side panels forming a sealed cover. Folding corner panels bring together a tongue and groove, locking channel seal, a gasket seal or an adhesive seal between side panels sealing the container corners side panel to side panel and side panels to bottom panel. Finger pressure on folding panels and tongue and groove, locking channel seal, a gasket seal or snaps provides the force required for engagement. Alternatively, any technique which joins two parts together such as Velcro®, laser welding, microwave, snaps, heat, adhesive, interlocking folding, etc. is used to secure panels together.
Alternatively, corner panels may be brought together without joining and folded to side panels and snapped or joined at that time. Leakage of container materials such as fluids occurs at the lowest point of the container so in a preferred embodiment the corner panels fold to the top of the container throughout. Fluids may seep between corner panels and side panels but cannot leak out of the container.
In the preferred embodiment, panels are constructed of a uniform material such as a sheet of polypropylene and use a living hinge to rotate side panels into position. A living hinge is part of a uniform sheet thinned, stamped or even hot stamped, materially dependent, to allow bending along the line of thinned material. Alternatively, each panel is made of one material and joined together with a different material to provide the hinge movement. For example, the panels could be made of polypropylene and joined together with an adhesive celluloid tape or bonded material. Materials are elastic enough to allow flexing but stiff enough to allow panel folding and maintenance of general shape.
Folding corner panels are relatively stiff to allow guiding side panels into position. Folding corner panels may be thin and soft and elastic, however, the preferred embodiment is relatively stiff corner panels. The panels may be of the same material or of different materials and may be of uniform thickness or variable thickness. The panels may be flat or provide curvature. The junction of the panels is straight or curved. Panels are shaped square, triangular, rectangular, oval, trapezoid or the like. The panels fold to the outside of the box or fold to the inside of the box.
In an alternative embodiment, folding corner panels fold to the inside of the box and are further folded to the adjacent side panel. Folding panels are joined to a side panel by Velcro®, laser welding, microwave, snaps, heat, adhesive, interlocking folding or any technique which will secure parts together, etc may be utilized. Folding corner panels alternatively are joined to each other first and then joined to a side panel.
In an additional embodiment, the container side walls are thinned to create areas for joining of foldable corner panels. The corner panels are thinned to the same thickness as the thinned side panel area such that when fully folded all panel walls are of equal thickness. Thinned side panel area and each folding corner panel are one third of the side panel thickness.
Referring now to
In an exemplary embodiment, the set of wings or wing members 14, 16, 18 and 20 may slide into pockets 22, 24, 26, 28 in such a manner that when the container is flat, the end of the wing 14 stays in pocket 24. The top or upper portions of the wing members 14, 16, 18, 20 can have projections 30, 31, 32, 33 which engage the top of the pockets to prevent the wings from disengaging and pulling out of the pockets. Further, the wings may be disposed to fold inside a container or outside. For purposes of demonstration, an embodiment illustrating the wings folding to exterior surfaces is shown. Additionally, the wings may provide snap locks in pockets in the closed or open position.
Moreover, an intentionally designed shape of the wings may alternatively render the wings contained within the pockets. In most embodiments herein, the sides and base are shown to be flat but may be constructed of multiple panels and hinges, be curved or combinations of flat and curved. There may be as few as three sides or many more as would be required with a three sided base or other multiple sided bases, for example, a hexagonal base would require six sides. While the description discussed closing opposite walls then the remaining walls, all walls can be closed at the same time. Additionally, the base 10 may comprise an indent 11 to accept a snap from a cover for stable storage. A snap, reversible adhesive, Velcro® or the like can be used to attach the cover.
Referring to
Furthermore, the locking mechanism can be configured to be reversible, or irreversible, as might be dictated by usage requirements, including disposable embodiments. In one alternative, extensions 30, 31, 32, 33 may snap into holes or indents inside the pocket to provide retention in the closed position.
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In an additional embodiment, addressed in
In another embodiment the mating system 167 may comprise a multisided insertion system, as illustrated a substantially trapezoidal insert comprising a matching flexible male mating fixture. Similar snaps are used with wings and pockets. The cross section of snaps can be triangular, round, square, trapezoidal, bevels, flat or any customary shape.
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The wings may open by center hinge unfolding panels as seen by partial opening of container 316. Container 318 and 320 show wings 290, 292, 294 and 296 folding wing panels together and then folding to side walls. Wings are held in position as described in previous examples such as snaps, adhesion, Velcro® or the like. Container 330 shows cover 300 sealed over container 320.
Number | Date | Country | |
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Parent | 13761395 | Feb 2013 | US |
Child | 13898009 | US |