Cushioning package compact in structure and environmentally friendly

By cutting and folding the cardboard to form multiple folding surfaces and buffer parts, the problem of insufficient buffer strength of the buffer packaging box is solved, and the product is tightly fixed and safely protected, which meets environmental protection requirements.

CN223132631UActive Publication Date: 2025-07-22GUANGDONG VOION ECO PACKAGING IND CO LTD
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Patent Information

Application Number
CN202422286113.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-22
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The buffer packaging box in the prior art has weak buffer strength, and the product is prone to shake in the packaging box, resulting in the packaging not being compact and safe enough.

Method used

By cutting and folding a cardboard, multiple folding surfaces and buffering parts are formed, and the characteristics of corrugated paper snap to each other to form a compact buffer packaging, including product storage space, buffering parts and clamping baffles, providing support and fixing.

Benefits of technology

It achieves tight fixation of the product, improves the safety of the packaging, has high strength and toughness, prevents product shaking, and conforms to environmental protection concepts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an environment-friendly cushion package with a compact structure. Comprising a first folding surface, a second folding surface, a third folding surface, a fourth folding surface, a fifth folding surface, a sixth folding surface, a seventh folding surface and an eighth folding surface which are formed by cutting a corrugated board and are sequentially connected, and a ninth folding surface and a tenth folding surface which are formed on two opposite sides of the eighth folding surface in the length direction and are far away from one side of the seventh folding surface, the eleventh folding surface and the twelfth folding surface are formed on the side, away from the eighth folding surface, of the ninth folding surface and are sequentially connected, and the thirteenth folding surface and the fourteenth folding surface are formed on the side, away from the eighth folding surface, of the tenth folding surface and are sequentially connected. The fifteenth folding surface and the sixteenth folding surface are formed on one side of the width direction of the ninth folding surface and are sequentially connected, and the seventeenth folding surface and the eighteenth folding surface are formed on the other side of the width direction of the ninth folding surface and are sequentially connected. The paper board is cut and folded to be formed, the structure is compact, and a product can be tightly fixed.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, in particular to a compact and environment-friendly buffer packaging. Background Art

[0002] Chinese Patent Publication No. CN205998310U, authorized on March 8, 2017, discloses an integrated packaging box for a computer keyboard and a mouse. The packaging box includes a box body and a lining board integrally made of corrugated cardboard. The box body is a cuboid, which includes an upper buffer layer and a lower accommodation layer. The lower accommodation layer is divided into a keyboard accommodation space, a mouse accommodation space and a keyboard wire accommodation space. The lining board includes a lining board body, long-side lining board support partitions, short-side lining board support partitions and short-side lining board extension partitions. The lining board body is a rectangular thin sheet horizontally arranged between the upper buffer layer and the lower accommodation layer. A keyboard display window is arranged in the middle of its surface. One long side is integrally connected to the upper edge of the long side of the opening side of the box body, and the other long side is integrally connected to the long-side lining board support partition. One short side is integrally connected to the short-side lining board extension partition and the short-side lining board support partition in sequence. The integrated packaging box for a computer keyboard and a mouse of the utility model has a compact accommodation space structure and good compressive strength. The defect of this prior art is that the buffer strength is weak, and the product is easy to shake in the packaging box. In view of this situation, it is urgent to improve. Summary of the Utility Model

[0003] Based on this, the purpose of the utility model is to provide a compact and environment-friendly buffer packaging, which is formed by cutting and folding a cardboard, and has a compact structure, capable of tightly fixing the product.

[0004] The utility model provides a buffer packaging with a compact structure and environmental protection, including a first folding surface, a second folding surface, a third folding surface, a fourth folding surface, a fifth folding surface, a sixth folding surface, a seventh folding surface, an eighth folding surface which are cut and formed from a corrugated cardboard and connected in sequence, a ninth folding surface and a tenth folding surface formed on opposite sides in the length direction of the eighth folding surface and away from one side of the seventh folding surface, an eleventh folding surface and a twelfth folding surface formed on the side of the ninth folding surface away from the eighth folding surface and connected in sequence, a thirteenth folding surface and a fourteenth folding surface formed on the side of the tenth folding surface away from the eighth folding surface and connected in sequence, a fifteenth folding surface and a sixteenth folding surface formed on one side in the width direction of the ninth folding surface and connected in sequence, a seventeenth folding surface and an eighteenth folding surface formed on the other side in the width direction of the ninth folding surface and connected in sequence, a nineteenth folding surface and a twentieth folding surface formed on one side in the width direction of the tenth folding surface and connected in sequence, a twenty-first folding surface and a twenty-second folding surface formed on the other side in the width direction of the tenth folding surface and connected in sequence, a twenty-third folding surface and a twenty-fourth folding surface formed on opposite sides in the width direction of the third folding surface, a twenty-fifth folding surface formed on one side in the length direction of the twenty-third folding surface, a twenty-sixth folding surface formed on one side in the length direction of the twenty-fourth folding surface, a twenty-seventh folding surface, a twenty-eighth folding surface and a twenty-ninth folding surface formed on one side in the width direction of the fourth folding surface and connected in sequence, a thirtieth folding surface, a thirty-first folding surface and a thirty-third folding surface formed on the other side in the width direction of the fourth folding surface and connected in sequence, a thirty-fourth folding surface and a thirty-fifth folding surface formed on one side in the width direction of the twenty-ninth folding surface and connected in sequence, a thirty-sixth folding surface and a thirty-seventh folding surface formed on one side in the width direction of the thirty-third folding surface and connected in sequence, a thirty-eighth folding surface and a thirty-ninth folding surface formed on opposite sides in the width direction of the fifth folding surface, a fortieth folding surface and a forty-first folding surface formed on one side in the width direction of the eighth folding surface and connected in sequence, a forty-second folding surface and a forty-third folding surface formed on the other side in the width direction of the eighth folding surface and connected in sequence, a forty-fourth folding surface and a forty-fifth folding surface formed on opposite sides in the width direction of the first folding surface, and a tongue formed on the side of the first folding surface away from the second folding surface in the length direction. A jack for inserting the tongue is cut and provided in the middle of the connection between the fourth folding surface and the fifth folding surface;

[0005] When in the formed state, the third folding surface, the twenty-seventh folding surface, the fifth folding surface, and the thirtieth folding surface are all folded upward by 90°. The thirty-ninth folding surface and the twenty-fourth folding surface are folded towards each other by 90°. The inner sides of the thirty-ninth folding surface and the thirtieth folding surface are in contact with each other. The thirty-eighth folding surface and the twenty-third folding surface are folded towards each other by 90°. The inner side of the thirty-eighth folding surface is in contact with the inner side of the twenty-seventh folding surface. The twenty-sixth folding surface and the twenty-fifth folding surface are both folded downward by 180°. The twenty-eighth folding surface and the thirty-first folding surface are folded horizontally towards each other by 90°. The thirty-third folding surface and the twenty-ninth folding surface are both folded downward by 90°. The inner side of the twenty-sixth folding surface is in contact with the inner side of the thirty-third folding surface. The inner side of the twenty-fifth folding surface is in contact with the inner side of the twenty-ninth folding surface. The thirty-sixth folding surface and the thirty-fourth folding surface are folded towards each other by 90°. The thirty-seventh folding surface is folded by 180° towards the side of the thirty-sixth folding surface. The thirty-fifth folding surface is folded by 180° towards the side of the thirty-fourth folding surface;

[0006] The sixth folding surface is folded horizontally by 90° towards the side of the seventh folding surface. After the seventh folding surface is folded downward by 90°, it is in contact with the outer sides of the thirty-sixth folding surface and the thirty-fourth folding surface. The eighth folding surface is folded horizontally by 90° towards the side of the third folding surface. The forty-second folding surface and the fortieth folding surface are both folded upward by 90°. The forty-third folding surface is folded by 180° towards the side of the thirty-third folding surface and then is in contact with the thirty-third folding surface. The forty-first folding surface is folded by 180° towards the side of the twenty-ninth folding surface and then is in contact with the twenty-ninth folding surface;

[0007] The ninth folding surface and the tenth folding surface are both folded upward by 90°. The thirteenth folding surface and the eleventh folding surface are folded horizontally by 90° towards the side of the third folding surface. The twelfth folding surface and the fourteenth folding surface are both folded downward by 90°. The fifteenth folding surface and the seventeenth folding surface are both folded by 90° towards the side of the twelfth folding surface. The twenty-first folding surface and the nineteenth folding surface are both folded by 90° towards the side of the fourteenth folding surface. The sixteenth folding surface (43) and the eighteenth folding surface are folded towards each other by 90° and then are in contact with each other. The twentieth folding surface and the twenty-second folding surface are folded towards each other by 90° and then are in contact with each other; The forty-second folding surface, the fortieth folding surface, the tenth folding surface, and the ninth folding surface enclose a product storage space;

[0008] The tenth folding surface, the thirteenth folding surface, the fourteenth folding surface, the twenty-first folding surface, the twenty-second folding surface, the nineteenth folding surface, and the twentieth folding surface enclose a first buffer portion;

[0009] The ninth folding surface, the eleventh folding surface, the twelfth folding surface, the fifteenth folding surface, the sixteenth folding surface, the seventeenth folding surface, and the eighteenth folding surface enclose a second buffer portion;

[0010] The 42nd folding surface and the 43rd folding surface as well as the 40th folding surface and the 41st folding surface form a product clamping baffle;

[0011] When in a closed state, the second folding surface is folded 90° toward one side of the fifth folding surface, the first folding surface is folded 90° downward, the inserting tongue is correspondingly inserted into the inserting hole to achieve fastening, and the forty-fourth folding surface and the forty-fifth folding surface are both folded 90° toward one side of the third folding surface and are respectively in contact with the inner side surface of the thirtieth folding surface and the inner side surface of the twenty-seventh folding surface on the same side.

[0012] Preferably, a first inwardly concave folded surface is cut across the middle portion between the tenth folded surface and the thirteenth folded surface, and when in a forming state, the first inwardly concave folded surface is folded along a fold line toward the inside of the first buffer portion to form a first yielding portion.

[0013] Preferably, a second inner concave folded surface is cut across the middle portion between the ninth folded surface and the eleventh folded surface, and when in a forming state, the second inner concave folded surface is folded along a fold line toward the inside of the second buffer portion to form a second yielding portion.

[0014] Preferably, the second folding surface is provided with a first clearance slot on both sides in the length direction, and the second folding surface is provided with a first folding surface corresponding to the position of the first clearance slot on both sides in the length direction; when in the forming state, the first folding surfaces on both sides are folded toward each other at the position of the first clearance slot until they are in contact with the inner side surface of the second folding surface.

[0015] Preferably, the sixteenth folding surface is provided with a second give-way slot on both sides in the length direction, and the eighteenth folding surface is provided with a second folding surface corresponding to the position of the second give-way slot on both sides in the length direction; when in the forming state, the second folding surfaces on both sides are folded toward each other at the position of the second give-way slot until they are in contact with the inner side surface of the sixteenth folding surface.

[0016] Preferably, a shaping incision is cut in the middle of the connection between the first folded surface and the inserting tongue.

[0017] The beneficial effects of the present utility model are as follows: It is cut and formed from a single corrugated cardboard, which conforms to the environmental protection concept; the forty-second folding surface, the fortieth folding surface, the tenth folding surface, and the ninth folding surface enclose to form a product storage space, and the tenth folding surface, the thirteenth folding surface, the fourteenth folding surface, the twenty-first folding surface, the twenty-second folding surface, the nineteenth folding surface, and the twentieth folding surface enclose to form a first buffer part, and the ninth folding surface, the eleventh folding surface, the twelfth folding surface, the fifteenth folding surface, the sixteenth folding surface, the seventeenth folding surface, and the eighteenth folding surface enclose to form a second buffer part. The forty-second folding surface and the forty-third folding surface, as well as the fortieth folding surface and the forty-first folding surface, form product clamping baffles. After the product is placed in the product storage space, the first buffer part and the second buffer part provide support and buffer protection. With the product clamped by the product clamping baffles on both sides, the product is effectively prevented from shaking, thus achieving a compact structure, tightly fixing the product, and improving the safety factor. This structure utilizes the characteristics of corrugated paper to be mutually buckled, with high strength, toughness, and not easy to break. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the present utility model in a flat unfolded state.

[0019] Figure 2 It is a schematic diagram of the present utility model in a formed state (open state).

[0020] Figure 3 It is a schematic diagram of the present utility model in a formed state (closed state).

[0021] The reference numerals are: the first folding surface 10, the second folding surface 11, the third folding surface 12, the fourth folding surface 13, the fifth folding surface 14, the sixth folding surface 15, the seventh folding surface 16, the eighth folding surface 17, the twenty-eighth folding surface 19, the twenty-ninth folding surface 20, the thirtieth folding surface 21, the thirty-first folding surface 22, the thirty-third folding surface 23, the thirty-fourth folding surface 24, the thirty-fifth folding surface 25, the thirty-sixth folding surface 26, the thirty-seventh folding surface 27, the thirty-eighth folding surface 28, the thirty-ninth folding surface 29, the fortieth folding surface 30, the forty-first folding surface 31, the forty-second folding surface 32, the forty-third folding surface 33, the ninth folding surface 34, the eleventh folding surface 35, the twelfth folding surface 36, the second concave folding surface 37, the tenth folding surface 38, the thirteenth folding surface 39, the fourteenth folding surface 40, the first concave folding surface 41, the fifteenth folding surface 42, the sixteenth folding surface 43, the nineteenth folding surface 44, the twentieth folding surface 45, the twenty-third folding surface 46, the twenty-fourth folding surface 48, the twenty-fifth folding surface 47, the twenty-sixth folding surface 49, the forty-fourth folding surface 50, the forty-fifth folding surface 51, the inserting tongue 52, the shaping notch 53, the inserting hole 54, the seventeenth folding surface 55, the eighteenth folding surface 56, the twenty-first folding surface 58, the twenty-second folding surface 57, the first folding-back surface 59, the twenty-seventh folding surface 60, the first buffer portion 61, the first relief portion 62, the second buffer portion 63, the second relief portion 64, the first relief card slot 65, the second relief card slot 66, the second folding-back surface 67. Detailed implementation manners

[0022] To further understand the features, technical means, specific purposes and functions achieved by the present utility model, the present utility model will be further described in detail below in conjunction with the detailed implementation manners and the drawings.

[0023] In the present utility model, unless otherwise clearly defined and limited, terms such as "installation", "connection", "connection", "fixation" and the like shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0024] Please refer to Figures 1-3As shown in the figure, the present utility model provides a buffer packaging with a compact structure and environmental protection, including a first folding surface 10, a second folding surface 11, a third folding surface 12, a fourth folding surface 13, a fifth folding surface 14, a sixth folding surface 15, a seventh folding surface 16, an eighth folding surface 17, which are cut and formed from a corrugated cardboard and connected in sequence, a ninth folding surface 34 and a tenth folding surface 38 formed on opposite sides in the length direction of the eighth folding surface 17 and away from the seventh folding surface 16, an eleventh folding surface 35 and a twelfth folding surface 36 formed on the side of the ninth folding surface 34 away from the eighth folding surface 17 and connected in sequence, a thirteenth folding surface 39 and a fourteenth folding surface 40 formed on the side of the tenth folding surface 38 away from the eighth folding surface 17 and connected in sequence, a fifteenth folding surface 42 and a sixteenth folding surface 43 formed on one side in the width direction of the ninth folding surface 34 and connected in sequence, a seventeenth folding surface 55 and an eighteenth folding surface 56 formed on the other side in the width direction of the ninth folding surface 34 and connected in sequence, a nineteenth folding surface 44 and a twentieth folding surface 45 formed on one side in the width direction of the tenth folding surface 38 and connected in sequence, a twenty-first folding surface 58 and a twenty-second folding surface 57 formed on the other side in the width direction of the tenth folding surface 38 and connected in sequence, a twenty-third folding surface 46 and a twenty-fourth folding surface 48 formed on opposite sides in the width direction of the third folding surface 12, a twenty-fifth folding surface 47 formed on one side in the length direction of the twenty-third folding surface 46, a twenty-sixth folding surface 49 formed on one side in the length direction of the twenty-fourth folding surface 48, a twenty-seventh folding surface 60, a twenty-eighth folding surface 19 and a twenty-ninth folding surface 20 formed on one side in the width direction of the fourth folding surface 13 and connected in sequence, a thirtieth folding surface 21, a thirty-first folding surface 22 and a thirty-third folding surface 23 formed on the other side in the width direction of the fourth folding surface 13 and connected in sequence, a thirty-fourth folding surface 24 and a thirty-fifth folding surface 25 formed on one side in the width direction of the twenty-ninth folding surface 20 and connected in sequence, a thirty-sixth folding surface 26 and a thirty-seventh folding surface 27 formed on one side in the width direction of the thirty-third folding surface 23 and connected in sequence, a thirty-eighth folding surface 28 and a thirty-ninth folding surface 29 formed on opposite sides in the width direction of the fifth folding surface 14, a fortieth folding surface 30 and a forty-first folding surface 31 formed on one side in the width direction of the eighth folding surface 17 and connected in sequence, a forty-second folding surface 32 and a forty-third folding surface 33 formed on the other side in the width direction of the eighth folding surface 17 and connected in sequence, a forty-fourth folding surface 50 and a forty-fifth folding surface 51 formed on opposite sides in the width direction of the first folding surface 10, a tongue 52 formed on the side of the first folding surface 10 away from the second folding surface 11 in the length direction, and a jack 54 for inserting the tongue 52 is cut and provided in the middle of the connection between the fourth folding surface 13 and the fifth folding surface 14;

[0025] When in the formed state, the third folding surface 12, the twenty-seventh folding surface 60, the fifth folding surface 14, and the thirtieth folding surface 21 are all folded upward by 90°. The thirty-ninth folding surface 29 and the twenty-fourth folding surface 48 are folded towards each other by 90°. The inner sides of the thirty-ninth folding surface 29 and the thirtieth folding surface 21 are in contact with each other. The thirty-eighth folding surface 28 and the twenty-third folding surface 46 are folded towards each other by 90°. The thirty-eighth folding surface 28 is in contact with the inner side of the twenty-seventh folding surface 60. The twenty-sixth folding surface 49 and the twenty-fifth folding surface 47 are both folded downward by 180°. The twenty-eighth folding surface 19 and the thirty-first folding surface 22 are folded horizontally towards each other by 90°. The thirty-third folding surface 23 and the twenty-ninth folding surface 20 are both folded downward by 90°. The inner sides of the twenty-sixth folding surface 49 and the thirty-third folding surface 23 are in contact with each other. The inner sides of the twenty-fifth folding surface 47 and the twenty-ninth folding surface 20 are in contact with each other. The thirty-sixth folding surface 26 and the thirty-fourth folding surface 24 are folded towards each other by 90°. The thirty-seventh folding surface 27 is folded by 180° towards the side of the thirty-sixth folding surface 26. The thirty-fifth folding surface 25 is folded by 180° towards the side of the thirty-fourth folding surface 24;

[0026] The sixth folding surface 15 is folded horizontally by 90° towards the side of the seventh folding surface 16. After the seventh folding surface 16 is folded downward by 90°, it is in contact with the outer sides of the thirty-sixth folding surface 26 and the thirty-fourth folding surface 24. The eighth folding surface 17 is folded horizontally by 90° towards the side of the third folding surface 12. The forty-second folding surface 32 and the fortieth folding surface 30 are both folded upward by 90°. The forty-third folding surface 33 is folded by 180° towards the side of the thirty-third folding surface 23 and then is in contact with the thirty-third folding surface 23. The forty-first folding surface 31 is folded by 180° towards the side of the twenty-ninth folding surface 20 and then is in contact with the twenty-ninth folding surface 20;

[0027] The ninth folding surface 34 and the tenth folding surface 38 are both folded upward by 90°. The thirteenth folding surface 39 and the eleventh folding surface 35 are folded horizontally by 90° towards the side of the third folding surface 12. The twelfth folding surface 36 and the fourteenth folding surface 40 are both folded downward by 90°. The fifteenth folding surface 42 and the seventeenth folding surface 55 are both folded by 90° towards the side of the twelfth folding surface 36. The twenty-first folding surface 58 and the nineteenth folding surface 44 are both folded by 90° towards the side of the fourteenth folding surface 40. The sixteenth folding surface 43 and the eighteenth folding surface 56 are folded towards each other by 90° and then are in contact with each other. The twentieth folding surface 45 and the twenty-second folding surface 57 are folded towards each other by 90° and then are in contact with each other. The forty-second folding surface 32, the fortieth folding surface 30, the tenth folding surface 38, and the ninth folding surface 34 enclose to form a product storage space;

[0028] The tenth folding surface 38, the thirteenth folding surface 39, the fourteenth folding surface 40, the twenty-first folding surface 58, the twenty-second folding surface 57, the nineteenth folding surface 44, and the twentieth folding surface 45 enclose to form a first buffer portion 61;

[0029] The ninth folding surface 34, the eleventh folding surface 35, the twelfth folding surface 36, the fifteenth folding surface 42, the sixteenth folding surface 43, the seventeenth folding surface 55 and the eighteenth folding surface 56 are arranged to form a second buffer portion 63;

[0030] The 42nd folding surface 32 and the 43rd folding surface 33 as well as the 40th folding surface 30 and the 41st folding surface 31 form a product clamping baffle;

[0031] When in the closed state, the second folding surface 11 is folded 90° toward the side of the fifth folding surface 14, the first folding surface 10 is folded downward 90°, the inserting tongue 52 is correspondingly inserted into the inserting hole 54 to achieve fastening, and the forty-fourth folding surface 50 and the forty-fifth folding surface 51 are both folded 90° toward the side of the third folding surface 12 and are respectively in contact with the inner side surface of the thirtieth folding surface 21 and the inner side surface of the twenty-seventh folding surface 60 on the same side.

[0032] A first inner concave folding surface 41 is cut across the middle between the tenth folding surface 38 and the thirteenth folding surface 39. When in the forming state, the first inner concave folding surface 41 is folded along the fold line to the inside of the first buffer portion 61 to form a first concession portion 62. A second inner concave folding surface 37 is cut across the middle between the ninth folding surface 34 and the eleventh folding surface 35. When in the forming state, the second inner concave folding surface 37 is folded along the fold line to the inside of the second buffer portion 63 to form a second concession portion 64. In actual use, the first concession portion 62 and the second concession portion 64 can be formed to correspond to the shape of the position of the protrusion at the bottom of the product, and the protrusion at the bottom of the product is correspondingly embedded in the first concession portion 62 and the second concession portion 64, thereby strengthening the limiting fixation of the product.

[0033] The first clearance slots 65 are formed on both sides of the 20th folding surface 45 in the length direction, and the first folding surfaces 59 corresponding to the positions of the first clearance slots 65 are formed on both sides of the 22nd folding surface 57 in the length direction; when in the forming state, the first folding surfaces 59 on both sides are folded toward each other at the positions of the first clearance slots 65 until they are in contact with the inner side surfaces of the 20th folding surface 45. With such a structural setting, the first buffer portion 61 can maintain the folded shape without deformation.

[0034] The sixteenth folding surface 43 is provided with second clearance slots 66 on both sides of the length direction, and the eighteenth folding surface 56 is provided with second folding surfaces 67 corresponding to the positions of the second clearance slots 66 on both sides of the length direction; when in the forming state, the second folding surfaces 67 on both sides are folded toward each other at the positions of the second clearance slots 66 until they are in contact with the inner side surface of the sixteenth folding surface 43. With such a structural setting, the second buffer portion 63 can maintain the folded shape without deformation.

[0035] A shaping cut 53 is provided in the middle of the connection between the first folding surface 10 and the insertion tongue 52. By providing the shaping cut 53, the insertion tongue 52 can maintain the folded shape, thereby ensuring that the structure remains in a sealed state.

[0036] In this embodiment, it is cut and formed from a single corrugated cardboard, which conforms to the environmental protection concept; moreover, during the packaging manufacturing process, no gluing is required, it can be formed from a single piece of paper, can be produced mechanically, can be transported flat, can be reused multiple times, is inexpensive, and has a low transportation cost; in addition, the forty-second folding surface, the fortieth folding surface, the tenth folding surface, and the ninth folding surface enclose to form a product storage space, the tenth folding surface, the thirteenth folding surface, the fourteenth folding surface, the twenty-first folding surface, the twenty-second folding surface, the nineteenth folding surface, and the twentieth folding surface enclose to form a first buffer portion, the ninth folding surface, the eleventh folding surface, the twelfth folding surface, the fifteenth folding surface, the sixteenth folding surface, the seventeenth folding surface, and the eighteenth folding surface enclose to form a second buffer portion, the forty-second folding surface and the forty-third folding surface, as well as the fortieth folding surface and the forty-first folding surface form product clamping baffles. After the product is placed in the product storage space, support buffer protection is provided by the first buffer portion and the second buffer portion. With the product clamped by the product clamping baffles on both sides, the product is effectively prevented from shaking, thereby achieving a compact structure, tightly fixing the product, and enhancing the safety factor. This structure uses the characteristics of corrugated paper to interlock with each other, has high strength, toughness, is not easily broken, and can play a good buffer protection role. This embodiment can be applied to loading keyboards.

[0037] The above-described embodiments merely represent one implementation mode of the present utility model, and the description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the patent of the present utility model shall be subject to the appended claims.

Claims

1. A compact and environmentally friendly buffer packaging, characterized in that: It includes a first folding surface (10), a second folding surface (11), a third folding surface (12), a fourth folding surface (13), a fifth folding surface (14), a sixth folding surface (15), a seventh folding surface (16), an eighth folding surface (17) which are cut and formed from a corrugated cardboard and connected in sequence, a ninth folding surface (34) and a tenth folding surface (38) formed on opposite sides in the length direction of the eighth folding surface (17) and away from one side of the seventh folding surface (16), an eleventh folding surface (35) and a twelfth folding surface (36) formed on the side of the ninth folding surface (34) away from the eighth folding surface (17) and connected in sequence, a thirteenth folding surface (39) and a fourteenth folding surface (40) formed on the side of the tenth folding surface (38) away from the eighth folding surface (17) and connected in sequence, a fifteenth folding surface (42) and a sixteenth folding surface (43) formed on one side in the width direction of the ninth folding surface (34) and connected in sequence, a seventeenth folding surface (55) and an eighteenth folding surface (56) formed on the other side in the width direction of the ninth folding surface (34) and connected in sequence, a nineteenth folding surface (44) and a twentieth folding surface (45) formed on one side in the width direction of the tenth folding surface (38) and connected in sequence, a twenty-first folding surface (58) and a twenty-second folding surface (57) formed on the other side in the width direction of the tenth folding surface (38) and connected in sequence, a twenty-third folding surface (46) and a twenty-fourth folding surface (48) formed on opposite sides in the width direction of the third folding surface (12), a twenty-fifth folding surface (47) formed on one side in the length direction of the twenty-third folding surface (46), a twenty-sixth folding surface (49) formed on one side in the length direction of the twenty-fourth folding surface (48), a twenty-seventh folding surface (60), a twenty-eighth folding surface (19) and a twenty-ninth folding surface (20) formed on one side in the width direction of the fourth folding surface (13) and connected in sequence, a thirtieth folding surface (21), a thirty-first folding surface (22) and a thirty-third folding surface (23) formed on the other side in the width direction of the fourth folding surface (13) and connected in sequence, a thirty-fourth folding surface (24) and a thirty-fifth folding surface (25) formed on one side in the width direction of the twenty-ninth folding surface (20) and connected in sequence, a thirty-sixth folding surface (26) and a thirty-seventh folding surface (27) formed on one side in the width direction of the thirty-third folding surface (23) and connected in sequence, a thirty-eighth folding surface (28) and a thirty-ninth folding surface (29) formed on opposite sides in the width direction of the fifth folding surface (14), a fortieth folding surface (30) and a forty-first folding surface (31) formed on one side in the width direction of the eighth folding surface (17) and connected in sequence, a forty-second folding surface (32) and a forty-third folding surface (33) formed on the other side in the width direction of the eighth folding surface (17) and connected in sequence, a forty-fourth folding surface (50) and a forty-fifth folding surface (51) formed on opposite sides in the width direction of the first folding surface (10), and a tongue (52) formed on the side of the first folding surface (10) in the length direction away from the second folding surface (11).A jack (54) for inserting the insertion tongue (52) is formed in the middle of the connection between the fourth folding surface (13) and the fifth folding surface (14); When in the formed state, the third folding surface (12), the twenty-seventh folding surface (60), the fifth folding surface (14), and the thirtieth folding surface (21) are all folded upward by 90°. The thirty-ninth folding surface (29) and the twenty-fourth folding surface (48) are folded towards each other by 90°. The inner sides of the thirty-ninth folding surface (29) and the thirtieth folding surface (21) are in contact with each other. The thirty-eighth folding surface (28) and the twenty-third folding surface (46) are folded towards each other by 90°. The inner side of the thirty-eighth folding surface (28) is in contact with the inner side of the twenty-seventh folding surface (60). The twenty-sixth folding surface (49) and the twenty-fifth folding surface (47) are both folded downward by 180°. The twenty-eighth folding surface (19) and the thirty-first folding surface (22) are folded horizontally towards each other by 90°. The thirty-third folding surface (23) and the twenty-ninth folding surface (20) are both folded downward by 90°. The inner sides of the twenty-sixth folding surface (49) and the thirty-third folding surface (23) are in contact with each other. The inner side of the twenty-fifth folding surface (47) is in contact with the inner side of the twenty-ninth folding surface (20). The thirty-sixth folding surface (26) and the thirty-fourth folding surface (24) are folded towards each other by 90°. The thirty-seventh folding surface (27) is folded by 180° towards the side of the thirty-sixth folding surface (26). The thirty-fifth folding surface (25) is folded by 180° towards the side of the thirty-fourth folding surface (24); The sixth folding surface (15) is folded horizontally by 90° towards the side of the seventh folding surface (16). After the seventh folding surface (16) is folded downward by 90°, it is in contact with the outer sides of the thirty-sixth folding surface (26) and the thirty-fourth folding surface (24). The eighth folding surface (17) is folded horizontally by 90° towards the side of the third folding surface (12). The forty-second folding surface (32) and the fortieth folding surface (30) are both folded upward by 90°. The forty-third folding surface (33) is folded by 180° towards the side of the thirty-third folding surface (23) and then is in contact with the thirty-third folding surface (23). The forty-first folding surface (31) is folded by 180° towards the side of the twenty-ninth folding surface (20) and then is in contact with the twenty-ninth folding surface (20); The ninth folding surface (34) and the tenth folding surface (38) are both folded upwards by 90 degrees, the thirteenth folding surface (39) and the eleventh folding surface (35) are horizontally folded by 90 degrees close to the side of the third folding surface (12), the twelfth folding surface (36) and the fourteenth folding surface (40) are both folded downwards by 90 degrees, the fifteenth folding surface (42) and the seventeenth folding surface (55) are both folded by 90 degrees close to the side of the twelfth folding surface (36), and the twenty-first folding surface (5 The folding surface (8) and the nineteenth folding surface (44) are both folded 90 degrees toward the side of the fourteenth folding surface (40); the sixteenth folding surface (43) and the eighteenth folding surface (56) are folded 90 degrees toward each other and then contact each other; the twenty-second folding surface (45) and the twenty-second folding surface (57) are folded 90 degrees toward each other and then contact each other; the forty-second folding surface (32), the fortieth folding surface (30), the tenth folding surface (38), and the ninth folding surface (34) are surrounded to form a product storage space; The tenth folding surface (38), the thirteenth folding surface (39), the fourteenth folding surface (40), the twenty-first folding surface (58), the twenty-second folding surface (57), the nineteenth folding surface (44) and the twentieth folding surface (45) are arranged to form a first buffer portion (61); The ninth folding surface (34), the eleventh folding surface (35), the twelfth folding surface (36), the fifteenth folding surface (42), the sixteenth folding surface (43), the seventeenth folding surface (55) and the eighteenth folding surface (56) are arranged to form a second buffer portion (63); The forty-second folding surface (32) and the forty-third folding surface (33) as well as the fortieth folding surface (30) and the forty-first folding surface (31) form a product clamping baffle; When in a closed state, the second folding surface (11) is folded 90 degrees toward the side of the fifth folding surface (14), the first folding surface (10) is folded downwards 90 degrees, the inserting tongue (52) is correspondingly inserted into the inserting hole (54) to achieve fastening, and the forty-fourth folding surface (50) and the forty-fifth folding surface (51) are both folded 90 degrees toward the side of the third folding surface (12) and are respectively in contact with the inner side surface of the thirtieth folding surface (21) and the inner side surface of the twenty-seventh folding surface (60) on the same side.

2. The compact and environmentally friendly buffer packaging according to claim 1, characterized in that: A first inwardly concave folded surface (41) is cut across the middle portion between the tenth folded surface (38) and the thirteenth folded surface (39); when in a forming state, the first inwardly concave folded surface (41) is folded along a fold line toward the inner side of the first buffer portion (61) to form a first yielding portion (62).

3. A compact and environmentally friendly buffer packaging according to claim 1, characterized in that: A second inner concave folded surface (37) is cut across the middle between the ninth folded surface (34) and the eleventh folded surface (35); when in the forming state, the second inner concave folded surface (37) is folded along the fold line toward the inner side of the second buffer portion (63) to form a second yielding portion (64).

4. A compact and environmentally friendly buffer packaging according to claim 1, characterized in that: The second folding surface (45) is provided with first clearance slots (65) on opposite sides in the length direction, and the second folding surface (57) is provided with first folding surfaces (59) corresponding to the positions of the first clearance slots (65) on opposite sides in the length direction; when in a forming state, the first folding surfaces (59) on both sides are folded toward each other at the positions of the first clearance slots (65) until they are in contact with the inner side surfaces of the second folding surface (45).

5. A compact and environmentally friendly buffer packaging according to claim 1, characterized in that: The sixteenth folding surface (43) is provided with second clearance slots (66) on opposite sides in the length direction, and the eighteenth folding surface (56) is provided with second folding surfaces (67) corresponding to the positions of the second clearance slots (66) on opposite sides in the length direction; when in the forming state, the second folding surfaces (67) on both sides are folded toward each other at the positions of the second clearance slots (66) until they are in contact with the inner side surfaces of the sixteenth folding surface (43).

6. A compact and environmentally friendly buffer packaging according to claim 1, characterized in that: A shaping cutout (53) is cut in the middle of the connection between the first folded surface (10) and the inserting tongue (52).

Citation Information

Patent Citations

  • Computer keyboard and mouse integral type packing carton

    CN205998310U