CN220350246U - Folding transfer box - Google Patents

Folding transfer box Download PDF

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Publication number
CN220350246U
CN220350246U CN202321996524.1U CN202321996524U CN220350246U CN 220350246 U CN220350246 U CN 220350246U CN 202321996524 U CN202321996524 U CN 202321996524U CN 220350246 U CN220350246 U CN 220350246U
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China
Prior art keywords
box
box surface
crease
connection
folding
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CN202321996524.1U
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Chinese (zh)
Inventor
刘丁格
胡隆生
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Ningbo Jimi Industrial Design Co ltd
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Ningbo Jimi Industrial Design Co ltd
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Priority to CN202321996524.1U priority Critical patent/CN220350246U/en
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Abstract

The utility model discloses a folding transfer box, which comprises six groups of plastic panels forming a box body, wherein two groups of plastic panels on opposite sides have the same size, the six groups of plastic panels after being unfolded comprise a lower box surface, a left box surface and a right box surface respectively extend to two sides along the length direction of the lower box surface, a front box surface and a rear box surface respectively extend to two sides along the width direction of the lower box surface, and the free end of the rear box surface extends to an upper box surface along the width direction of the rear box surface. When the folding box is not used, the left box surface and the right box surface are folded towards the inside of the box along the crease a, then the left box surface, the right box surface and the lower box surface are folded towards the inside of the box along the crease b, then the upper box surface is folded to cover the front box surface, the flanging is clamped with the crease edges between the lower box surface and the rear box surface to form a layered folding structure, the volume is reduced, a plurality of groups of box bodies are stacked after being folded, the space occupation of the box bodies is greatly reduced, the transportation cost is reduced, and if the folding box is required to be unfolded again, the folding box is also not stitched by adhesive tape, so that the cost is saved.

Description

Folding transfer box
Technical Field
The utility model relates to the technical field of transfer boxes, in particular to a folding transfer box.
Background
The transfer box can be used as a product when being packed and transported, and the transfer box on the current market is provided with a plastic box or a paper box, however, the box bodies of the two materials have the following defects:
(1) Most of the manufacturing processes of the plastic box body are one-time injection molding, so that the box body is inconvenient to fold and store, and when the material flow turnover is completed and the plastic box needs to be recycled or stored, the box body cannot be folded, so that larger space is occupied, and the empty box transportation cost and the storage cost are increased;
(2) The reuse rate of the paper box is low, so that the paper box resource waste is caused, and meanwhile, the paper box is reused, and the adhesive tape needs to be sewn again, so that the adhesive tape resource waste is caused.
Disclosure of Invention
The utility model aims at: in order to solve the technical problems mentioned in the background art, a folding transfer box is provided.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the folding transfer box comprises six groups of plastic panels forming a box body, wherein two groups of plastic panels on opposite sides have the same size, the six groups of plastic panels comprise a lower box surface, a left box surface and a right box surface respectively extend to two sides along the length direction of the lower box surface, a front box surface and a rear box surface respectively extend to two sides along the width direction of the lower box surface, and the free end of the rear box surface extends to an upper box surface along the width direction of the rear box surface;
crease a is formed on the middle symmetrical lines of the lower box surface, the left box surface and the right box surface, crease c is formed between two adjacent box surfaces, two creases b symmetrical to the crease a are formed on the left box surface and the right box surface, and the two creases b are combined with the crease c at the joint of the left box surface, the right box surface and the lower box surface to form an isosceles triangle.
The folding transfer box not only can transport products, but also can be folded, and the space after folding is reduced, so that the storage space is not occupied. Meanwhile, after the folding and storage, the folding and storage type folding and unfolding device is very convenient to unfold and use again, and is not needed to be sewn by means of an adhesive tape, so that the cost is saved.
As a further description of the above technical solution:
the left box surface and the right box surface are provided with folds h, one end point of each fold h is overlapped with the intersection point of two groups of folds b on the same box surface, the other end point of each fold h extends to be overlapped with the edge line of the box surface, the front box surface is provided with a group of folds g along the length direction, and the lengths of the folds g, which are far from the lower box surface and the front box surface, are equal to the lengths of the folds h.
As a further description of the above technical solution:
and one side of the front, rear, left and right groups of box surfaces extends along the width direction to form a connecting surface with the same height as the box surfaces, and the connecting surface is connected with the adjacent surfaces in a mode of partially covering the adjacent surfaces.
As a further description of the above technical solution:
the connecting surface comprises a connecting surface I, a connecting surface II, a connecting surface III and a connecting surface IV, wherein the connecting surface I is connected with one side of the front box surface close to the right box surface, the connecting surface II is connected with one side of the left box surface close to the rear box surface, the connecting surface III is connected with one side of the rear box surface close to the left box surface, and the connecting surface IV is connected with one side of the right box surface close to the front box surface.
As a further description of the above technical solution:
the connection mode between the connection surface and the box surface is one of buckle connection, cementing or welding.
As a further description of the above technical solution:
the upper box surface extends along the width direction of the upper box surface to form a flanging, and a crease f is formed between the upper box surface and the flanging.
In summary, due to the adoption of the technical scheme, the beneficial effects of the utility model are as follows: when in use, the box body is used as a package of products for transportation; when not in use, the left and right box surfaces are folded towards the inside of the box body along the crease a, then the left, right and lower box surfaces are folded towards the inside of the box body along the crease b, then the upper box surface is folded and covered on the front box surface, crease edges between the flanging and the lower and rear box surfaces are clamped, the layered folding structure shown in fig. 3 is formed, the volume is reduced, a plurality of groups of box bodies are stacked together after being folded, the space occupation of the box bodies is greatly reduced, the transportation cost is reduced, and if the box bodies are required to be unfolded again, the box bodies are not required to be sewn by means of adhesive tapes, so that the cost is saved.
Drawings
Fig. 1 shows an expanded schematic view of a folding transfer box according to an embodiment of the present utility model;
fig. 2 shows a schematic perspective view of a folding transfer box according to an embodiment of the present utility model;
fig. 3 shows a first folding schematic of a folding transfer box according to an embodiment of the utility model;
fig. 4 shows a second folding schematic of a folding transfer box according to an embodiment of the utility model.
Legend description:
11. a lower box surface; 12. an upper box surface; 21. a front case surface; 22. a rear case surface; 31. a left box surface; 32. a right box surface; 41. a first connecting surface; 42. a second connecting surface; 43. a third connecting surface; 44. a connecting surface IV; 5. and (5) flanging.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
Referring to fig. 1-3, the present utility model provides a technical solution: the utility model provides a folding transfer case, includes six sets of plastic panels of constituteing the box, and two sets of plastic panels of opposite side are the same in size, and six back of expanding of group panel includes lower case face 11, extends respectively to both sides along lower case face 11 length direction has left case face 31 and right case face 32, extends respectively to both sides along lower case face 11 width direction has preceding case face 21 and back case face 22, and back case face 22 free end extends along its width direction has last case face 12. One side of the front, back, left and right groups of box surfaces extends along the width direction to form a connecting surface with the same height as the box surfaces, and the connecting surface is connected with the adjacent surfaces in a mode of partially covering the adjacent surfaces, such as buckle connection, gluing or welding (such as hot plate welding, hot gas welding and the like), wherein the buckle connection mode can be used for expanding the box body again. Specifically, the connection surfaces include a connection surface one 41, a connection surface two 42, a connection surface three 43, and a connection surface four 44, the connection surface one 41 is connected to the front case surface 21 side close to the right case surface 32, the connection surface two 42 is connected to the left case surface 31 side close to the rear case surface 22, the connection surface three 43 is connected to the rear case surface 22 side close to the left case surface 31, and the connection surface four 44 is connected to the right case surface 32 side close to the front case surface 21.
Specifically, as shown in fig. 1, a crease a is formed on the symmetrical line of the middle parts of the lower case surface 11, the left case surface 31 and the right case surface 32, a crease c is formed between two adjacent sets of case surfaces, two creases b symmetrical to the crease a are formed on the left case surface 31 and the right case surface 32, and the two creases b are combined with the crease c at the joint of the left case surface and the right case surface and the lower case surface 11 to form an isosceles triangle. When in use, the box body is used as a package of products for transportation; when not in use, the left and right box surfaces are folded into the box body along the crease a, then the left, right and lower box surfaces are folded into the box body along the crease b, then the upper box surface 12 is folded and covered on the front box surface 21, crease edges between the flanging 5 and the lower and rear box surfaces are clamped, a layered folding structure (the upper box surface 12 is not shown in fig. 3 and is folded and covered on the front box surface 21) as shown in fig. 3 is formed, and the volume is reduced. The multiple groups of box bodies are stacked together after being folded, so that the space occupation of the box bodies is greatly reduced, the transportation cost is reduced, and if the box bodies are required to be unfolded again, the box bodies are not required to be sewn by means of adhesive tapes, and the cost is saved.
Specifically, as shown in fig. 1 and 2, the upper case surface 12 is extended with a flange 5 in the width direction thereof, a crease f is formed between the upper case surface 12 and the flange 5, and the flange 5 covers part of the front case surface 21, thereby improving the sealing property of the case opening.
Example two
Referring to fig. 1-2 and fig. 4, on the basis of the first embodiment, the present utility model further provides another technical scheme: the left and right box surfaces are provided with folds h, one end point of each fold h is overlapped with the intersection point of two groups of folds b on the same box surface, the other end point of each fold h extends to be overlapped with the edge line of the box surface, the front box surface 21 is provided with a group of folds g along the length direction, and the lengths of the folds g from the lower box surface 11 to the front box surface 21 are equal to the lengths of the folds h. In addition to the layered folding structure shown in fig. 3, the folding manner shown in the first embodiment may be adopted to fold the lower case surface 11 along the direction of the crease g toward the front case surface 21, and then fold the upper case surface 12 to cover the lower case surface 11, and the flange 5 is clamped with the crease edges between the lower case surface and the rear case surface to form the layered folding structure shown in fig. 4 (the upper case surface 12 is not shown in fig. 4 to be folded and cover the front case surface 21), so that the volume is reduced.
Working principle: when in use, the box body is used as a package of products for transportation; when not in use, the left and right box surfaces are folded towards the inside of the box body along the crease a, then the left, right and lower box surfaces are folded towards the inside of the box body along the crease b, then the upper box surface 12 is folded and covered on the front box surface 21, crease edges between the flanging 5 and the lower and rear box surfaces are clamped, a layered folding structure as shown in fig. 3 is formed, the volume is reduced, a plurality of groups of box bodies are stacked together after being folded, the space occupation of the box bodies is greatly reduced, the transportation cost is reduced, and if the box bodies are unfolded again, the box bodies are not needed to be sewn by means of adhesive tapes, so that the cost is saved.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (6)

1. The folding transfer box comprises six groups of plastic panels forming a box body, wherein two groups of plastic panels on opposite sides have the same size, and the folding transfer box is characterized by comprising a lower box surface (11), wherein a left box surface (31) and a right box surface (32) respectively extend to two sides along the length direction of the lower box surface (11), a front box surface (21) and a rear box surface (22) respectively extend to two sides along the width direction of the lower box surface (11), and the free end of the rear box surface (22) extends to an upper box surface (12) along the width direction of the rear box surface;
crease a is formed on the middle symmetry lines of the lower box surface (11), the left box surface (31) and the right box surface (32), crease c is formed between two adjacent box surfaces, two crease b symmetrical to the crease a are formed on the left box surface (31) and the right box surface (32), and the crease c at the joint of the two crease b, the left box surface, the right box surface and the lower box surface (11) is combined to form an isosceles triangle.
2. A folding transfer box according to claim 1, characterized in that the left and right box surfaces are provided with folds h, one end point of each fold h coincides with the intersection point of two groups of folds b on the same box surface, the other end point of each fold h extends to coincide with the edge line of the box surface, the front box surface (21) is provided with a group of folds g along the length direction, and the length of each fold g from the lower box surface (11) to the front box surface (21) is equal to the length of each fold h.
3. A folding transfer box according to claim 1, wherein one side of the front, rear, left and right four sets of box surfaces extends in the width direction to a connection surface having the same height as the box surface, and is connected to the adjacent surface by the connection surface partially covering the adjacent surface.
4. A folding transfer box according to claim 3, characterized in that the connection surface comprises a connection surface one (41), a connection surface two (42), a connection surface three (43) and a connection surface four (44), the connection surface one (41) is connected with the side of the front box surface (21) close to the right box surface (32), the connection surface two (42) is connected with the side of the left box surface (31) close to the rear box surface (22), the connection surface three (43) is connected with the side of the rear box surface (22) close to the left box surface (31), and the connection surface four (44) is connected with the side of the right box surface (32) close to the front box surface (21).
5. A folding transfer box according to claim 3, wherein the connection between the connection surface and the box surface is one of a snap connection, a glue connection or a weld.
6. A folding transfer box according to claim 1, characterized in that the upper box surface (12) is provided with a flange (5) extending in the width direction thereof, and that a crease f is formed between the upper box surface (12) and the flange (5).
CN202321996524.1U 2023-07-27 2023-07-27 Folding transfer box Active CN220350246U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321996524.1U CN220350246U (en) 2023-07-27 2023-07-27 Folding transfer box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321996524.1U CN220350246U (en) 2023-07-27 2023-07-27 Folding transfer box

Publications (1)

Publication Number Publication Date
CN220350246U true CN220350246U (en) 2024-01-16

Family

ID=89483811

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321996524.1U Active CN220350246U (en) 2023-07-27 2023-07-27 Folding transfer box

Country Status (1)

Country Link
CN (1) CN220350246U (en)

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