Hexagonal paper folding card buffering structure

Through the hexagonal paper folding and card buffer structure, the substrate, fixed buffer block and limit cover of paper materials are used to solve the problems of environmental hazards and poor buffering performance of existing packaging materials, and environmentally friendly and sustainable packaging materials are achieved, and the transportation protection effect of products is improved.

CN222876532UActive Publication Date: 2025-05-16DONGGUAN MYS ENVIRONMENTAL PROTECTION TECH
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Patent Information

Application Number
CN202420856606.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-24
Publication Date
2025-05-16
Estimated Expiration
2034-04-24

AI Technical Summary

Technical Problem

Existing packaging materials such as EPS, blister and EVA can potentially harm the environment during production and use, and their cushioning performance is poor, resulting in the product being easily damaged during transportation.

Method used

The hexagonal paper folding and card buffer structure is adopted to form an environmentally friendly and sustainable packaging material through the combination of the substrate, fixed buffer block and limit cover sheet to achieve limit and buffer protection of the product.

Benefits of technology

This structure meets the requirements of low-carbon environmental protection, improves the protection effect of the product during transportation, avoids damage caused by displacement, and reduces the risk of environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of packaging, in particular to a hexagonal paper folding card buffering structure which comprises a base plate, two fixed buffering blocks oppositely arranged on the base plate and two limiting cover pieces oppositely arranged on the base plate. A partition groove is formed between the two fixed buffer blocks, the two fixed buffer blocks are each provided with a fixed inserting groove, and the limiting cover piece is connected with the two fixed buffer blocks through the fixed inserting grooves. The buffering structure is formed by the base plate, the two fixed buffering blocks and the two limiting cover pieces, and products are packaged and protected in a buffering mode through the buffering structure. The base plate, the fixed buffer blocks and the limiting cover pieces are all made of paper materials. The buffer structure meets the requirements of low carbon and environmental protection, and is an environment-friendly and sustainable packaging material. And the product is subjected to limiting and buffering protection through the buffering structure. The problems that a product is difficult to fix and the buffering performance is poor are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, in particular to a hexagonal paper folding card buffer structure. Background Art

[0002] At present, there are many technologies and methods on the market for the protection of polygonal product packaging. Among them, EPS, blister and EVA are more common fixing and cushioning methods. However, these materials have potential hazards to the surrounding environment during production and use, posing a threat to the growth and health of animals and plants in the ecological environment.

[0003] Considering the current international community's high attention to carbon emission reduction and low-carbon packaging, materials such as EPS, blister and EVA obviously no longer meet the requirements of low-carbon environmental protection. In response to this global trend, there are also some more environmentally friendly and sustainable packaging material buffer structures, but these buffer structures have poor buffering performance for products, causing products to be damaged during transportation. Therefore, the problem of poor buffering performance of buffer structures for products needs to be solved urgently. Utility Model Content

[0004] The purpose of the utility model is to provide a hexagonal paper folding card buffer structure to address the deficiencies of the prior art. The buffer structure is formed by a base plate, two fixed buffer blocks and two limit cover sheets, and the product is packaged and buffered by the buffer structure. The base plate, the fixed buffer block and the limit cover sheet are all made of paper. The buffer structure meets the requirements of low-carbon environmental protection and is an environmentally friendly and sustainable packaging material. The product is limited and buffered by the buffer structure. The problem of difficult product fixation and poor buffering performance is solved.

[0005] To achieve the above purpose, the utility model provides a hexagonal paper folding card buffer structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0006] Figure 1 It is a structural schematic diagram of the utility model.

[0007] Figure 2 It is a structural schematic diagram of the utility model in an expanded state.

[0008] Figure 3 It is a schematic diagram of the structure of the fixed buffer block of the utility model being folded and formed.

[0009] Figure 4 It is a structural schematic diagram of the position-limiting cover sheet of the utility model in an expanded state.

[0010] Figure 5 It is a structural schematic diagram of the connection between the limiting cover plate and the fixed buffer block of the utility model.

[0011] Reference numerals include:

[0012] 1. Base plate; 2. Fixed buffer block; 21. First folding card; 22. Second folding card; 23. Third folding card; 24. Fourth folding card; 25. Fifth folding piece; 26. First crease line; 27. Second crease line; 28. Cutting part; 29. ​​Carrying card; 291. Sixth folding piece; 292. Seventh folding piece; 293. Eighth folding piece; 294. Third crease line; 3. Limiting cover piece; 31. Ninth folding piece; 32. Tenth folding piece; 33. Eleventh folding piece; 331. First inserting piece; 332. Second inserting piece; 34. Fourth crease line; 35. Fifth crease line; 4. Partition; 5. Fixed slot. DETAILED DESCRIPTION

[0013] The utility model is described in detail below with reference to the accompanying drawings.

[0014] like Figures 1 to 5 As shown, a hexagonal paper folding card buffer structure of the utility model comprises a base plate 1, two fixed buffer blocks 2 arranged relatively to the base plate 1, and two limit cover sheets 3 arranged relatively to the base plate 1, and the base plate 1, the fixed buffer blocks 2 and the limit cover sheets 3 are all made of paper materials. The buffer structure meets the requirements of low-carbon environmental protection, and is an environmentally friendly and sustainable packaging material.

[0015] A partition 4 is provided between the two fixed buffer blocks 2, and the two fixed buffer blocks 2 are both provided with a fixed slot 5. A limiting cover sheet 3 is connected to the two fixed buffer blocks 2 through the fixed slot 5. The base plate 1, the two fixed buffer blocks 2 and the two limiting cover sheets 3 form a buffer structure, and the buffer structure is used to limit and buffer the product. The problem of difficult product fixation and poor buffering performance is solved.

[0016] The fixed buffer block 2 of this embodiment includes a first folding clip 21 , a second folding clip 22 , a third folding clip 23 and a fourth folding clip 24 which are connected in sequence.

[0017] The first folding card 21 is connected to the base plate 1 , and fifth folding pieces 25 are respectively disposed on both sides of the first folding card 21 .

[0018] First fold lines 26 are arranged between the substrate 1 and the first fold card 21 , between the first fold card 21 and the second fold card 22 , between the second fold card 22 and the third fold card 23 , and between the third fold card 23 and the fourth fold card 24 .

[0019] A second fold line 27 is provided between the fifth folding piece 25 and the first folding clip 21 .

[0020] When in use, the fifth folding pieces 25 on both sides are bent 90° along the second folding line 27, the first folding card 21, the second folding card 22, the third folding card 23 and the fourth folding card 24 are respectively bent 90° along the first folding line 26, and the fourth folding card 24 is inserted between the fifth folding piece 25 and the substrate 1 to realize the formation of the fixed buffer block 2.

[0021] In this embodiment, two cutting portions 28 are disposed between the second folding card 22 and the third folding card 23 , a carrier card 29 is disposed between the two cutting portions 28 , and a fixed slot 5 is formed between the carrier card 29 and the second folding card 22 and the third folding card 23 .

[0022] The carrier card 29 of this embodiment is provided with four third folding lines 294 at intervals, and the carrier card 29 is divided into a sixth folding piece 291 , a seventh folding piece 292 and an eighth folding piece 293 by the four third folding lines 294 .

[0023] The sixth folding piece 291 is connected to the second folding card 22 via the third crease line 294 , and the eighth folding piece 293 is connected to the third folding card 23 via the third crease line 294 .

[0024] When in use, the sixth folding piece 291 is bent 90° along the third folding line 294 with the second folding card 22, and the seventh folding piece 292 is bent 90° along the third folding line 294 with the eighth folding piece 293, so that the sixth folding piece 291 and the seventh folding piece 292 are bent 90° along the third folding line 294, and the carrier card 29 is bent and used to carry the product. On the other hand, the eighth folding piece 293 makes the sixth folding piece 291 and the seventh folding piece 292 suspended in the air, thereby increasing the buffering performance of the carrier card 29 and better protecting the product.

[0025] The limiting cover piece 3 of this embodiment includes a ninth folding piece 31 , a tenth folding piece 32 and an eleventh folding piece 33 which are connected in sequence.

[0026] The ninth folding piece 31 is connected to the base plate 1 . A fourth crease line 34 is arranged between the ninth folding piece 31 and the base plate 1 and between the ninth folding piece 31 and the tenth folding piece 32 . A fifth crease line 35 is arranged between the tenth folding piece 32 and the eleventh folding piece 33 .

[0027] When in use, the ninth folding piece 31 and the tenth folding piece 32 are respectively bent 90 degrees along the fourth folding line 34, so that the ninth folding piece 31 and the tenth folding piece 32 are respectively closely attached to the surfaces of the two fixed buffer blocks 2, so that the limiting cover piece 3 is wrapped around the outside of the two fixed buffer blocks 2, so that the fixed buffer blocks 2 are fixed and the displacement of the fixed buffer blocks 2 is limited. Thus, the buffer structure limits the position of the product, and avoids the product from colliding with each other due to displacement during transportation and being damaged.

[0028] The eleventh folded piece 33 is bent 90 degrees along the fifth folding line 35 to facilitate the insertion of the eleventh folded piece 33 into the fixing slot 5 so as to connect the limiting cover piece 3 with the fixing buffer block 2 .

[0029] The fifth crease line 35 of the present embodiment is bent, specifically, the fifth crease line 35 is in an eight-shape, the width dimension of the sixth folding piece 291 is less than the width dimension of the seventh folding piece 292 and less than the width dimension of the eighth folding piece 293, so that the fixed slot 5 is tilted, and the tilted fixed slot 5 matches the first plug-in piece 331 and the second plug-in piece 332.

[0030] The eleventh folding piece 33 of the present embodiment includes a first inserting piece 331 and a second inserting piece 332 , so that the first inserting piece 331 and the second inserting piece 332 are connected to the tenth folding piece 32 in an eight-shaped shape.

[0031] When in use, the first insert piece 331 and the second insert piece 332 are respectively bent 90 degrees along the fifth crease line 35, and the first insert piece 331 and the second insert piece 332 are respectively inserted into the fixing slots 5 of the two fixing buffer blocks 2, so that one limiting cover piece 3 is respectively connected to the two fixing buffer blocks 2 through the fixing slots 5. On the other hand, the limiting cover piece 3 is connected to the fixing buffer block 2 to limit the displacement of the fixing buffer block 2.

[0032] The above contents are only preferred embodiments of the present invention. For ordinary technicians in this field, according to the concept of the present invention, there will be changes in the specific implementation methods and application scopes. The contents of this specification should not be understood as limiting the present invention.

Claims

1. A hexagonal paper folding card buffer structure, characterized in that: It comprises a base plate (1), two fixed buffer blocks (2) arranged relative to the base plate (1), and two position limiting cover plates (3) arranged relative to the base plate (1); A partition groove (4) is provided between the two fixed buffer blocks (2), the two fixed buffer blocks (2) are both provided with a fixed slot (5), a limiting cover piece (3) is connected to the two fixed buffer blocks (2) via the fixed slot (5), and the base plate (1), the two fixed buffer blocks (2) and the two limiting cover pieces (3) form a buffer structure, and the product is packaged and buffered by the buffer structure.

2. A hexagonal paper folding card buffer structure according to claim 1, characterized in that: The fixed buffer block (2) comprises a first folding clip (21), a second folding clip (22), a third folding clip (23) and a fourth folding clip (24) which are connected in sequence; The first folding clip (21) is connected to the base plate (1), and fifth folding pieces (25) are respectively provided on both sides of the first folding clip (21); A first folding line (26) is provided between the substrate (1) and the first folding clip (21), between the first folding clip (21) and the second folding clip (22), between the second folding clip (22) and the third folding clip (23), and between the third folding clip (23) and the fourth folding clip (24); A second fold line (27) is provided between the fifth folding piece (25) and the first folding clip (21); The fifth folding pieces (25) on both sides are bent 90 degrees along the second folding line (27); the first folding clip (21), the second folding clip (22), the third folding clip (23) and the fourth folding clip (24) are respectively bent 90 degrees along the first folding line (26); the fourth folding clip (24) is inserted between the fifth folding piece (25) and the base plate (1), so as to realize the molding of the fixed buffer block (2).

3. The hexagonal paper folding card buffer structure according to claim 2, characterized in that: Two cutting portions (28) are arranged between the second folding card (22) and the third folding card (23), a carrying card (29) is arranged between the two cutting portions (28), and a fixed slot (5) is formed between the carrying card (29) and the second folding card (22) and the third folding card (23).

4. The hexagonal paper folding card buffer structure according to claim 3, characterized in that: The carrier card (29) is provided with four third folding lines (294) at intervals, and the carrier card (29) is divided into a sixth folding piece (291), a seventh folding piece (292) and an eighth folding piece (293) by the four third folding lines (294); The sixth folding piece (291) is connected to the second folding clip (22) via the third folding line (294), and the eighth folding piece (293) is connected to the third folding clip (23) via the third folding line (294); The sixth folding piece (291) is bent 90° along the third folding line (294) and the second folding card (22), and the seventh folding piece (292) is bent 90° along the third folding line (294) and the eighth folding piece (293), so that the sixth folding piece (291) and the seventh folding piece (292) are bent 90° along the third folding line (294), thereby realizing the bending of the carrier card (29) and being used for carrying products.

5. The hexagonal paper folding card buffer structure according to claim 4, characterized in that: The limiting cover piece (3) comprises a ninth folding piece (31), a tenth folding piece (32) and an eleventh folding piece (33) which are connected in sequence; The ninth folding piece (31) is connected to the base plate (1), a fourth folding line (34) is arranged between the ninth folding piece (31) and the base plate (1) and between the ninth folding piece (31) and the tenth folding piece (32), and a fifth folding line (35) is arranged between the tenth folding piece (32) and the eleventh folding piece (33); The ninth folding piece (31) and the tenth folding piece (32) are respectively bent 90° along the fourth folding line (34) so ​​that the ninth folding piece (31) and the tenth folding piece (32) are respectively closely attached to the surfaces of the two fixed buffer blocks (2); the eleventh folding piece (33) is bent 90° along the fifth folding line (35) so as to facilitate the insertion of the eleventh folding piece (33) into the fixed slot (5).

6. The hexagonal paper folding card buffer structure according to claim 5, characterized in that: The fifth fold line (35) is bent so that the width of the sixth folding piece (291) is less than the width of the seventh folding piece (292) and less than the width of the eighth folding piece (293).

7. The hexagonal paper folding card buffer structure according to claim 5, characterized in that: The eleventh folding piece (33) comprises a first inserting piece (331) and a second inserting piece (332); The first inserting piece (331) and the second inserting piece (332) are respectively bent 90 degrees along the fifth crease line (35), and the first inserting piece (331) and the second inserting piece (332) are respectively inserted into the fixed slots (5) of the two fixed buffer blocks (2), so that a limiting cover piece (3) is connected to the two fixed buffer blocks (2) through the fixed slots (5).