PACKAGING SYSTEM COMPRISING A PLURALITY OF SUB UNITS, AND A SUB UNIT
20190016497 ยท 2019-01-17
Assignee
Inventors
Cpc classification
B65D1/30
PERFORMING OPERATIONS; TRANSPORTING
B65D21/0206
PERFORMING OPERATIONS; TRANSPORTING
B65D5/009
PERFORMING OPERATIONS; TRANSPORTING
B65D77/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D1/30
PERFORMING OPERATIONS; TRANSPORTING
B65D5/00
PERFORMING OPERATIONS; TRANSPORTING
B65D77/20
PERFORMING OPERATIONS; TRANSPORTING
B65D21/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a sub unit (200) and a packaging system (100) comprising a plurality of sub units (200). The sub unit (200) is formed with a tapered body (300) having sidewalls (304) towards a narrow end (307, 308) from a first opposing or outer surface (204) at an end opposite the narrow end. The packaging system (100) comprises a plurality of sub units (200), where the sub units (200) are configured to be positioned so that the first opposing surfaces form an outside of the packaging system.
Claims
1. A packaging system (100) comprising a plurality of sub units (200), wherein each sub unit (200) is shaped as a pyramid having a square lid and a body wherein the body has sidewalls that taper towards a narrow end (307,308) from the square lid forming an opposing surface at an end opposite the narrow end, wherein the sub units (200) are configured to be positioned so that the opposing surfaces form an outer surface of the packaging system, wherein the sub units assemble into a packaging system, so that the lids form the outer surface of each side of the packaging system (100), and wherein the packaging system constitutes a rectangular parallelepiped.
2. A packaging system (100) according to claim 1, further comprising at least two instances of the packaging system, the first opposing surface (204) positioned against an inner wall of a housing, resulting in complementing the inside of the housing.
3. A sub unit (200) for assembling into a packaging system according to claim 1, wherein said sub unit (200) is shaped as a pyramid having a square lid and a body wherein the body has sidewalls that taper towards a narrow end (307, 308) from a first opposing or outer surface (204) at an end opposite the narrow end, and wherein the sub unit is configured to assemble into a packaging system, so that the lid forms the outer surface of a side of the packaging system (100).
4. A sub unit according to claim 3, wherein the narrow end is a frustum (308).
5. A sub unit according to claim 3, wherein the body (300) comprises at least one partition wall (306), dividing a volume (310) within the body (300) into a plurality of volumes (312, 314).
6. A sub unit according to claim 3, wherein the sidewalls (304) taper inwards at 45 degrees.
7. A sub unit according to claim 3, wherein the outer surface (204) is provided with a lid (212).
8. A sub unit according to claim 3, wherein a sidewall (304) is provided with a lid (212).
9. A sub unit for assembling into a packaging system according to claim 2, wherein said sub unit is shaped as a pyramid having a square lid and a body wherein the body has sidewalls that taper towards a narrow end from a first opposing or outer surface at an end opposite the narrow end, and wherein the sub unit is configured to assemble into a packaging system, so that the lid forms the outer surface of a side of the packaging system.
10. A sub unit according to claim 9, wherein the narrow end is a frustum.
11. A sub unit according to claim 4, wherein the body comprises at least one partition wall, dividing a volume within the body into a plurality of volumes.
12. A sub unit according to claim 9, wherein the body comprises at least one partition wall, dividing a volume within the body into a plurality of volumes.
13. A sub unit according to claim 10, wherein the body comprises at least one partition wall, dividing a volume within the body into a plurality of volumes.
14. A sub unit according to claim 9, wherein the sidewalls taper inwards at 45 degrees.
15. A sub unit according to claim 9, wherein the outer surface is provided with a lid.
16. A sub unit according to claim 9, wherein a sidewall is provided with a lid.
Description
DESCRIPTION OF THE DIAGRAMS
[0031] Embodiments of the present invention will now be described, by way of example only, with reference to the following diagrams wherein:
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DESCRIPTION OF THE REFERENCE SIGNS
[0050] The following reference numbers and signs refer to the drawings:
TABLE-US-00001 10 Packaging system according to prior art 100 Packaging system 110 Inner volume 11, 112 Lost volume or dead space 200 Sub unit 12, 212 Lid 204 Outer surface 20, 300 Body 34, 304 Sidewalls 36, 306 Partition wall 37, 307 End point 38, 308 Frustum, bottom face 40, 310 Enclosed volume 42, 312 Primary volume 44, 314 Secondary volume 46, 316 Primary content 48, 318 Secondary content
DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
Principles Forming the Basis of the Invention
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[0052] However, when placing these in a cubic array a lot of lost volume or dead space 11 between the units is present. Also these are not suited to turn on the side as the shape does not lend itself to this.
[0053] Central to the present invention is the adaption of sub units to fit together forming a package system having little wasted space 112. Sub units 200 are formed with a tapered structure or body 300 having sidewalls 304 towards a narrow end 307, 308 from a first opposing or outer surface 204 at an end opposite the narrow end. Said sub units assembled with the narrow end inwards of the assembled packaging system. When assembled the first opposing surface forms the outer surface of the packaging system.
Best Modes of Carrying Out the Invention
[0054] In a preferred embodiment the sub units 200 are shaped like pyramids having a square lid 212 and a body 300 wherein the body has sidewalls 304 that taper towards an end. The end can be a point 307 like the peak of a pyramid or a frustum 308. The sidewalls 303 taper at an angle of about 45 degrees inwards. This means that four sub units can be placed together forming a periphery and two more perpendicular to these thus forming a packaging system 100.
[0055] This packaging system is a cube where the lids 212 form the outer surface. This has the advantage of providing a convenient surface for product or contents identification, no matter which direction the cube is placed on. Moreover the cube itself has very little dead space 112. Also cubes are well known to be stackable having little dead space between each cube.
[0056] The sub units can be formed in many ways.
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[0060] The sub units then will have to be assembled into a packaging system. There are at least 3 preferred embodiments for providing sub units for assembling. Some of these are pre assemblies wherein sub units are provided attached edge to edge in the same direction. Thus typically when the pre assembly is laid out all the bodies are facing up ready to be filled with contents and then closed with lids. The edge attachments can be cut to split one pre assembly into several smaller pre assemblies. In a more preferred embodiment the joints are bendably flexible, elastically and/or plastically, so that a pre assembly can be formed into an assembly system while minimizing cuts.
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[0066] The inner volume can be used to contain a cooling element in order to maintain a low temperature for instance for perishable goods. In one example one can insert ice or dry ice. The cooling medium is typically a fluid such as water or CO.sub.2 gas will flow along the inner surfaces of the sub units, keeping them cool.
[0067] Dry ice is particularly beneficial as the fluid is less affected by gravity and cools also the upper part of the package system well. On the other hand dry ice has a sublimation point of ?78.5? C. which for some goods may require some thermal insulation between the dry ice and the sub units to avoid excessive freezing.
[0068] When using ice or other cooling media that forms a liquid it is beneficial to make the package system substantially water tight. If the packaging system is formed from a pre assembly the joints forming edges will easily be made water tight. Remaining edges can be made water tight using a sealant or by wrapping an outer layer around the packaging system. This wrapping can beneficially form the lids or labels on the lids on the individual sub units.
[0069] Alternatively the inner volume can be used for a heating element.
[0070] It is also beneficial to make at least one sub unit easily movable to uncover the inner volume in order to allow refilling cooling or heating medium at point of purchase.
[0071] The inner volume offers a position that is protected by the surrounding sub units and is therefore suitable for fragile objects.
[0072] When heating sub units on opposing sides can be detached leaving a tunnel like structure through which a fluid such as water or steam can be directed.
[0073] Condensation is very efficient in transferring heat to all exposed surfaces. A plurality of such tunnels can be stacked for more efficient heating.
Alternative Embodiments
[0074] For the case of the pyramidal embodiment shown in
[0075] While a cubic shape for the packaging system is preferred it is clear that deviations from this are easily achieved. For instance the packaging system can easily be made squat or tall using rectangular sides wherein the sides are rectangles and the top and bottom faces are squares. Alternatively all faces can be rectangular non-squares.
[0076] In a further embodiment also higher order Platonic solid geometries can be used such as dodecahedrons. Also other isogonal geometries can be used even with different lids can be used such as truncated icosahedron having pentagonal and hexagonal lids.
[0077] While a single sub unit per face is disclosed above there are also alternative embodiments possible.
[0078] Sub units can be filled with contents before sealing with lid and assembling into a packaging system. Alternatively it is possible to start with a pre formed packaging system and inject the contents through an opening and into the body. Preferably the pre formed packaging system comprises soft sidewalls for each sub units that are flat against the lid prior to filling. The side walls can in one embodiment be flexible or elastic and thus increase the volume of the body to accommodate the content. The opening can be provided on the lid or a part of the side wall.
[0079] During the filling process one can chose whether or not to have an inner volume, simply by inserting a suitable object inside the packaging system. The sidewalls will expand to enclose the object and secure it.
[0080] In one embodiment the packaging system is used for packaging fragile objects in the inner volume and the enclosed volumes of the sub units are filled with a fluid, more preferably a shock absorbing fluid.
[0081] In these embodiments much of the air between the sub units can be pressed out.
[0082] While the sidewalls could be vulnerable to mechanical damage said sidewalls will not be exposed to the outside. Instead the outer surface of the packaging system will provide the protection. Alternatively the sidewalls can be cured or a more robust material applied to the outside of the sidewalls to improve mechanical strength.
[0083] In many applications it is preferred to provide sub units with foil lids or other means for easy removal and thus access to the contents. Such foils can be fragile and easily punctured. It is in these cases possible to locate the foil lid on an inner surface of an assembled packaging system and use a more robust outer surface. This outer surface could optionally be made of the same material as the side walls.
[0084] Another preferred embodiment is a packaging system 100 where the substantial part of the outer surface e.g. the substantial part of sidewalls 304 and the lid 212 of each sub unit 200 mutually supports at least one, preferably at least two, most preferably at least four other sub units 200.
[0085] When stacking together systems of rectangular parallelepipeds, e.g. cubes, into a collection of parallelepipeds, e.g. collection of cubes, the outer boundaries of the collection may be positioned adjacent the inner walls of a housing.
[0086] The example housing of
[0087] The housing can be made of any material having tensile strength resisting stretching. In one preferred embodiment, the material may be cardboard. In another preferred embodiment the material may be plastic film.
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[0089] The technical effect of this is that volume now is maximized rather than minimized as is the case for non-reversed packaging systems.
[0090] In one application, the packaging system 100 contains e.g. a meal. When this meal is consumed, the remaining waste, often occupying more volume than the meal itself, may be collected inside the packaging system 100, taking advantage of the fact that the reversed packaging system encloses a larger volume.
[0091] In another application of the reversed assembly, this can be used for lighting devices such as lamps. This can be transported as a packaging system, preferably with the more shock sensitive parts such as bulbs in the inner volume. On unpacking the sub units form the lamp shading.
[0092] In a second application this can be used for extra packaging protection known as an alternative to packaging chips or foam peanuts made of expanded polystyrene.
[0093] In the case of pre assembled sub units, as strips shown in
[0094] In a second embodiment sub units are attached to each other using the lid, typically a foil. This allows for mix and match of various types of sub units, filling sub units with contents and then sealing the contents and simultaneously connecting said sub units using these lids. In a variation the sealing and connecting stages are separated, allowing freely ordering of sealing and connecting processes.
[0095] By these two embodiments, using a separate material for the sub units and the connecting parts between the sub units allows for transforming strips shown in
INDUSTRIAL APPLICABILITY
[0096] The invention according to the application finds use in compact and robust packaging, transport and unpacking of goods.