Splicing variable environment-friendly universal package

By designing a modular, environmentally friendly, and universal packaging system, the problem of fixed packaging box shapes has been solved, achieving multi-form flexibility and built-in cushioning, thus improving versatility and molding efficiency.

CN224198347UActive Publication Date: 2026-05-05GUANGDONG VOION ECO PACKAGING IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG VOION ECO PACKAGING IND CO LTD
Filing Date
2025-06-18
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing environmentally friendly interlocking cardboard packaging boxes have a fixed shape, poor versatility, require additional cushioning structures, and have low forming efficiency.

Method used

Design a modular, environmentally friendly, and universal packaging material that is formed by assembling multiple modular units and padding. The modular units have built-in cushioning, simplifying the structure and facilitating molding.

Benefits of technology

It enables packaging boxes to take on multiple shapes and forms, has good versatility, comes with built-in cushioning, simplifies the structure, and improves molding efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a splicing variable environment-friendly universal package which comprises a package body, the package body is formed by a plurality of splicing single bodies and a base plate in a surrounding mode, and the splicing single bodies and the base plate are both formed by cutting a paperboard. Each splicing single body comprises a first folding face, a first supporting folding face, a second folding face, a third folding face, a fourth folding face, a fifth folding face, a seventh folding face, a second supporting folding face and an eighth folding face which are connected in sequence, and a ninth folding face and a tenth folding face which are formed on one side of the fourth folding face in the width direction and connected in sequence. The eleventh folding face and the twelfth folding face are formed on the other side of the fourth folding face in the width direction and connected in sequence, the first inserting tongue is formed on the side, away from the eighth folding face, of the eighth folding face, and first inserting holes are formed in the bent positions of the fourth folding face and the third folding face. The splicing single bodies have the buffering function, the overall structure is simplified, forming is convenient, and the forming efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of packaging technology, and in particular to a modular, environmentally friendly, and universal packaging material. Background Technology

[0002] Chinese Patent Application Publication No. CN111634524A, published on September 8, 2020, discloses an environmentally friendly interlocking cardboard packaging box, comprising a first cardboard, a second cardboard, a third cardboard, a fourth cardboard, and a combined cardboard. The combined cardboard includes a fifth cardboard and a sixth cardboard. One side of the sixth cardboard is interlocked with one side of the fifth cardboard. The second, third, fourth, and sixth cardboards are respectively interlocked with the first cardboard. The second, third, and fourth cardboards are respectively interlocked with the fifth cardboard. The second cardboard is interlocked with the third cardboard, and the third cardboard is interlocked with the fourth cardboard. This invention improves the utilization rate of paper in the packaging box. The existing technology has the following drawbacks: fixed shape, poor versatility, and the need for an external cushioning structure, which increases the complexity of the structure and reduces the forming efficiency. Therefore, improvement is urgently needed. Utility Model Content

[0003] Based on this, the purpose of this utility model is to provide a modular, environmentally friendly, and universal packaging that can be spliced ​​into various shapes, has good versatility, and whose individual splicing units have built-in cushioning function, simplifying the overall structure, facilitating molding, and improving molding efficiency.

[0004] This utility model provides a modular, environmentally friendly, and universal packaging system, comprising a packaging body composed of multiple modular units and a pad. Both the modular units and the pad are cut from a piece of cardboard. Each modular unit includes, in sequence, a first fold, a first supporting fold, a second fold, a third fold, a fourth fold, a fifth fold, a seventh fold, a second supporting fold, an eighth fold, a ninth fold and a tenth fold formed on one side of the fourth fold in its width direction and connected in sequence, an eleventh fold and a twelfth fold formed on the other side of the fourth fold in its width direction and connected in sequence, and a first tongue formed on the side of the eighth fold away from the eighth fold. A first insertion hole is formed at the bend between the fourth and third folds, a second insertion hole is formed at the bend between the fourth and fifth folds, and a third insertion hole is formed at the bend between the fourth and eleventh folds. Each edge of the pad is cut with a second tongue that mates with the third insertion hole.

[0005] When in the forming state, the first fold, the first supporting fold, the second fold, the third fold, the fourth fold, the fifth fold, the seventh fold, the second supporting fold, the eighth fold, the ninth fold, the tenth fold, the eleventh fold, and the twelfth fold are folded to form a hollow splicing unit with a trapezoidal cross-section. Adjacent splicing units are connected by the first tongue and the first hole to form the outer shell of the packaging body. A pad with a shape corresponding to the shape of the outer shell is correspondingly set at the bottom of the outer shell and is fastened and fixed by the second tongue and the third hole.

[0006] Preferably, the seventh fold surface has a fourth insertion hole along its length on the side facing the second supporting fold surface, and a third insertion tongue corresponding to the fourth insertion hole is cut between the first supporting fold surface and the first fold surface.

[0007] Preferably, a first card interface is formed in the middle of the side of the tenth fold away from the ninth fold, and a second card interface is formed in the middle of the side of the twelfth fold away from the eleventh fold; both ends of the bends of the first supporting fold and the second fold are respectively provided with first positioning slots that match the first card interface and the second card interface; both ends of the bends of the seventh fold and the second supporting fold are respectively provided with second positioning slots that match the first card interface and the second card interface.

[0008] Preferably, the packaging body is configured as a rectangular packaging body, which includes four splicing units and a rectangular pad.

[0009] Preferably, the packaging body is configured as a pentagonal packaging body, which includes five splicing units and a pentagonal pad.

[0010] Preferably, the packaging body is configured as a hexagonal packaging body, which includes six splicing units and a hexagonal pad.

[0011] The beneficial effects of this utility model are as follows: The packaging body is composed of multiple splicing units and a pad. The appearance of the packaging body can be changed by adjusting the number of splicing units, which has good versatility. The first fold, first support fold, second fold, third fold, fourth fold, fifth fold, seventh fold, second support fold, eighth fold, ninth fold, tenth fold, eleventh fold, and twelfth fold are folded to form a hollow splicing unit with a trapezoidal cross-section, so that each splicing unit has its own cushioning function. After the packaging body is formed, it ensures that the packaging body has a good cushioning function, simplifies the overall structure, and the splicing units and the pad are all cut from a piece of cardboard, which is convenient for forming and improves forming efficiency. Attached Figure Description

[0012] Figure 1This is a schematic diagram of the molding process of the first embodiment of the present invention.

[0013] Figure 2 This is a partial exploded view of the first embodiment of the present invention.

[0014] Figure 3 This is a planar unfolded view of the assembled unit.

[0015] Figure 4 This is a schematic diagram of the molding process of the second embodiment of the present invention.

[0016] Figure 5 This is a schematic diagram of the molding process of the third embodiment of the present invention.

[0017] The attached figures are labeled as follows: First fold 10, Second fold 11, Third fold 12, Ninth fold 14, Tenth fold 13, Formed on Fourth fold 15, Fifth fold 16, Seventh fold 17, Eighth fold 19, Eleventh fold 20, Twelfth fold 21, Third tongue 22, First insertion hole 23, First tongue 24, Second insertion hole 25, Fourth insertion hole 26, Third insertion hole 27, Pad 28, Second tongue 29, Splicing unit 30, Packaging body 31, Rectangular packaging body 32, Pentagonal packaging body 33, Pentagonal pad 34, Hexagonal packaging body 35, Hexagonal pad 36, First card interface 37, Second card interface 38, First support fold 39, Second support fold 40, First positioning slot 41, Second positioning slot 42. Detailed Implementation

[0018] To further understand the features, technical means, and specific objectives and functions achieved by this utility model, the following detailed description of this utility model is provided in conjunction with specific embodiments and accompanying drawings.

[0019] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0020] For the first implementation method, please refer to Figure 1-3 As shown, a modular, environmentally friendly, and universal packaging package includes a packaging body 31, which is composed of multiple modular units 30 and a pad 28. Both the modular units 30 and the pad 28 are cut from a piece of cardboard. In this embodiment, the packaging body is set as a rectangular packaging body 32, which includes four modular units 30 and a rectangular pad 28.

[0021] The splicing unit 30 includes a first folded surface 10, a first supporting folded surface 39, a second folded surface 11, a third folded surface 12, a fourth folded surface 15, a fifth folded surface 16, a seventh folded surface 17, a second supporting folded surface 40, an eighth folded surface 19, a ninth folded surface 14 and a tenth folded surface 13 formed on one side of the width direction of the fourth folded surface 15 and connected in sequence, an eleventh folded surface 20 and a twelfth folded surface 21 formed on the other side of the width direction of the fourth folded surface 15 and connected in sequence, a first tongue 24 formed on the side of the eighth folded surface 19 away from the eighth folded surface 19, a first insertion hole 23 formed at the bend of the fourth folded surface 15 and the third folded surface 12, a second insertion hole 25 formed at the bend of the fourth folded surface 15 and the fifth folded surface 16, and a third insertion hole 27 formed at the bend of the fourth folded surface 15 and the eleventh folded surface 20; each side edge of the pad plate 28 is cut to form a second tongue 29 that mates with the third insertion hole 27;

[0022] When in the forming state, the first fold 10, the first supporting fold 39, the second fold 11, the third fold 12, the fourth fold 15, the fifth fold 16, the seventh fold 17, the second supporting fold 40, the eighth fold 19, the ninth fold 14, the tenth fold 13, the eleventh fold 20, and the twelfth fold 21 are folded to form a hollow splicing unit 30 with a trapezoidal cross-section. The adjacent splicing units 30 are connected by the fastening of the first tongue 24 and the first hole 23 to form the outer shell of the packaging body. A pad 28 with a shape corresponding to the shape of the outer shell is set at the bottom of the outer shell and fastened and fixed by the second tongue 29 and the third hole 27.

[0023] The seventh fold surface 17 is provided with a fourth insertion hole 26 along its length on the side of the second support fold surface 40, and a third insertion tongue 22 corresponding to the fourth insertion hole 26 is cut between the first support fold surface 39 and the first fold surface 10.

[0024] A first card interface 37 is formed in the middle of the side of the tenth fold 13 away from the ninth fold 14; a second card interface 38 is formed in the middle of the side of the twelfth fold 21 away from the eleventh fold 20; a first positioning slot 41 matching the first card interface 37 and the second card interface 38 is cut at both ends of the bend of the first supporting fold 39 and the second fold 11; a second positioning slot 42 matching the first card interface 37 and the second card interface 38 is cut at both ends of the bend of the seventh fold 17 and the second supporting fold 40.

[0025] In actual operation, the third fold surface 12 and the fifth fold surface 16 are folded upwards towards each other, the second fold surface 11 and the seventh fold surface 17 are folded horizontally towards each other, the first support fold surface 39 and the second support fold surface 40 are folded downwards at 90° and then come into contact with each other, the eleventh fold surface 20 and the ninth fold surface 14 are folded upwards at 90°, the twelfth fold surface 21 and the tenth fold surface 13 are folded horizontally towards each other at 90°, the first fold surface 10 and the eighth fold surface 19 are folded in opposite directions at a predetermined angle and then come into contact with the fourth fold surface 15, the first positioning slot 41 and the second positioning slot 42 are inserted into the first card interface 37 and the second card interface 38 on the same side, the first tongue 24 passes through the second socket 25 and extends out of the second socket 25, and the third tongue 22 is inserted into the fourth socket 26 to form the hollow splicing unit 30. When two adjacent splicing units 30 need to be connected, the first tongue 24 of one splicing unit 30 is inserted into the first socket 23 of the adjacent splicing unit 30. After a predetermined number of splicing units 30 are spliced, the second tongues 29 on each side of the pad 28 are inserted into the third socket 27 of each splicing unit 30 to achieve a fastening connection.

[0026] For the second implementation method, please refer to... Figure 4 As shown, a modular, environmentally friendly, and universal packaging is provided. The main body of the packaging is a pentagonal packaging body 33, which includes five modular units 30 and a pentagonal pad 34.

[0027] For the third implementation method, please refer to Figure 5 As shown, a modular, environmentally friendly, and universal packaging is provided, with the main body of the packaging being a hexagonal packaging body 35. The hexagonal packaging body 35 includes six modular units 30 and a hexagonal pad 36.

[0028] In the three embodiments of this structure, the packaging body is composed of multiple splicing units and a pad. The appearance of the packaging body can be changed by adjusting the number of splicing units, which has good versatility. The first fold 10, the first support fold 39, the second fold 11, the third fold 12, the fourth fold 15, the fifth fold 16, the seventh fold 17, the second support fold 40, the eighth fold 19, the ninth fold, the tenth fold, the eleventh fold, and the twelfth fold are folded to form a hollow splicing unit with a trapezoidal cross-section, so that each splicing unit has its own cushioning function. After the packaging body is formed, it is ensured that the packaging body has a good cushioning function, which simplifies the overall structure. The splicing units and the pad are all cut from a piece of cardboard, which is convenient for forming and improves the forming efficiency.

[0029] The above-described embodiments only illustrate three implementation methods of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A modular, environmentally friendly, and universal packaging material, comprising a packaging body (31), characterized in that: The packaging body (31) is composed of multiple splicing units (30) and a pad (28), both of which are cut from a piece of cardboard. The splicing unit (30) includes a first fold (10), a first supporting fold (39), a second fold (11), a third fold (12), a fourth fold (15), a fifth fold (16), a seventh fold (17), a second supporting fold (40), an eighth fold (19), a ninth fold (14) and a tenth fold (13) formed on one side of the width direction of the fourth fold (15) and connected in sequence. Eleventh fold (20) and twelfth fold (21) connected sequentially on the other side of the direction; a first tongue (24) formed on the side of the eighth fold (19) away from the eighth fold (19); a first insertion hole (23) formed at the bend of the fourth fold (15) and the third fold (12); a second insertion hole (25) formed at the bend of the fourth fold (15) and the fifth fold (16); a third insertion hole (27) formed at the bend of the fourth fold (15) and the eleventh fold (20); and a second tongue (29) that mates with the third insertion hole (27) is cut on each side edge of the pad (28). When in the forming state, the first fold (10), the first supporting fold (39), the second fold (11), the third fold (12), the fourth fold (15), the fifth fold (16), the seventh fold (17), the second supporting fold (40), the eighth fold (19), the ninth fold (14), the tenth fold (13), the eleventh fold (20), and the twelfth fold (21) are folded to form a hollow splicing unit (30) with a trapezoidal cross-section. The two adjacent splicing units (30) are fastened together by the first tongue (24) and the first hole (23) to form the outer shell of the packaging body. The pad (28) with a shape corresponding to the shape of the outer shell is correspondingly set at the bottom of the outer shell and fastened and fixed by the second tongue (29) and the third hole (27).

2. The modular, environmentally friendly, and universal packaging according to claim 1, characterized in that: The seventh fold (17) is provided with a fourth insertion hole (26) along its length on the side of the second support fold (40), and a third insertion tongue (22) corresponding to the fourth insertion hole (26) is cut between the first support fold (39) and the first fold (10).

3. The modular, environmentally friendly, and universal packaging according to claim 1, characterized in that: The tenth fold (13) has a first card interface (37) cut out in the middle of the side away from the ninth fold (14), and the twelfth fold (21) has a second card interface (38) cut out in the middle of the side away from the eleventh fold (20); the first support fold (39) and the second fold (11) have first positioning slots (41) cut out at both ends of the bends, which match the first card interface (37) and the second card interface (38); the seventh fold (17) and the second support fold (40) have second positioning slots (42) cut out at both ends of the bends, which match the first card interface (37) and the second card interface (38).

4. A modular, environmentally friendly, and universal packaging material according to any one of claims 1-3, characterized in that: The packaging body is configured as a rectangular packaging body (32), which includes four splicing units (30) and a rectangular pad (28).

5. A modular, environmentally friendly, universal packaging material according to any one of claims 1-3, characterized in that: The packaging body is configured as a pentagonal packaging body (33), which includes five splicing units (30) and a pentagonal pad (34).

6. A modular, environmentally friendly, universal packaging material according to any one of claims 1-3, characterized in that: The packaging body is configured as a hexagonal packaging body (35), which includes six splicing units (30) and a hexagonal pad (36).