Shockproof packaging box

By designing shockproof packaging boxes that adapt to components and elastic parts, the problem of traditional packaging boxes being unable to adapt to products of different sizes has been solved, achieving improvements in flexibility, aesthetics, and environmental friendliness, while reducing production costs.

CN223457422UActive Publication Date: 2025-10-21XIAMEN 889 PAPER CO LTD
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Patent Information

Application Number
CN202422193649.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-10-21
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

Existing shockproof packaging boxes lack flexibility and cannot adapt to products of different sizes, resulting in increased production costs and limited applications.

Method used

A shockproof packaging box was designed, comprising a box body, a lid, a baffle, and an adapting component. It utilizes an X-shaped hinge structure of elastic elements and an adapting plate, combined with a flexible padding layer and decorative elements, to achieve adaptive protection for products of different sizes.

Benefits of technology

It enables flexible adaptation to products of different sizes, reduces production costs, improves shock resistance, enhances aesthetics and environmental friendliness, simplifies assembly processes, and reduces material waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a shockproof packaging box, which comprises a box body, a box cover and a box cover, the box cover is used for covering the box body and sealing the accommodating cavity; the baffles are symmetrically, movably and vertically arranged on the two sides of the containing cavity and divide the containing cavity into a containing area located in the middle and adjusting areas located on the two sides of the containing area; the adapting assembly is formed by hinging two sheet-shaped adapting plates in an X shape and is arranged in the adjusting area, and a deformation adapting area is defined by the adjacent faces of the two adapting plates; the elastic pieces are arranged in the deformation adapting areas in a one-to-one correspondence mode and used for absorbing impact energy when the elastic pieces are pressed to deform, the shockproof packaging box not only solves the problems of a traditional packaging box, but also achieves remarkable improvement in the aspects of shockproof performance, adaptability, attractiveness, user experience, economical efficiency, environment friendliness and the like.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of packing box, in particular to a shockproof packing box. BACKGROUND

[0002] At present, the packing box mainly adopts ordinary card box, paperboard gift box or directly uses naked box as the outer packing mode. In recent years, along with the rapid development of internet business, more and more commodities are sold through online channels, and along with this, the logistics transportation volume increases significantly. Under this background, especially for those fragile and easily damaged commodities, the traditional packaging mode has been insufficient, leading to the frequent damage of commodities in the transportation process.

[0003] In order to solve this problem, many manufacturers have invested in research and development and launched various shockproof packaging solutions. These solutions can be roughly divided into two categories: one is to improve the protection effect by enhancing the shock resistance of the outer packaging itself; the second is to add special shockproof materials inside the packing box to buffer external impact force.

[0004] Although these two shockproof packaging solutions can reduce the damage rate of commodities in the logistics process to a certain extent, they have a common problem - lack of flexibility. That is, these solutions are usually designed for products of specific sizes, and for different sized commodities, the manufacturer needs to customize them according to the actual situation, which not only increases the production cost, but also limits the wide application of the packaging solution.

[0005] Therefore, there is an urgent need for a new shockproof packaging technology that is more flexible and can adapt to different sizes of products to meet the increasingly diverse product packaging needs and further improve the safety of goods in the logistics process.

[0006] In view of this, the present invention has been specially designed by the inventor, and the present case has been produced. CONTENT OF THE UTILITY MODEL

[0007] In order to solve the above problems, the technical scheme of the utility model is as follows:

[0008] A shockproof packing box, comprising:

[0009] a box body having a cavity with an open upper end;

[0010] a box cover for covering the box body and closing the cavity;

[0011] a baffle symmetrically and movably erected on both sides of the cavity, dividing the cavity into a containing area in the middle and an adjusting area on both sides of the containing area;

[0012] The adaptive assembly is composed of two X-shaped hinged adaptive plates in the form of a sheet and is arranged in the adjusting area, and a deformation adaptive area is formed between the adjacent surfaces of the two adaptive plates;

[0013] The elastic member is arranged in the deformation adaptive area in one-to-one correspondence and is used for absorbing impact energy by being deformed under pressure.

[0014] Preferably, the decorative member comprises two cover plates and a decorative paper connected between the two cover plates, the two cover plates are arranged on the upper end of the adjusting area away from the containing area, the cover plates cover the adaptive assembly, and the decorative paper is attached to the upper end surface of the adjusting area, the side wall of the baffle and the bottom of the containing area.

[0015] Preferably, the bottom of the containing area is provided with a flexible cushion layer, and the decorative paper is arranged on the upper end of the flexible cushion layer.

[0016] Preferably, the flexible cushion layer has a plurality of honeycomb-shaped hollow guide holes.

[0017] Preferably, the elastic member is in the form of a sleeve.

[0018] Preferably, an energy absorption groove is arranged on the middle line of the elastic member along the length direction.

[0019] Preferably, the elastic member is a rubber member or a silica gel member.

[0020] Preferably, the elastic member is a silica gel member, and a hollow filling cavity is formed in the silica gel member, and a non-Newtonian fluid filling layer is arranged in the filling cavity.

[0021] Preferably, the non-Newtonian fluid filling layer is a gel filling layer.

[0022] Preferably, the two adaptive plates are recessed in the direction of approaching each other to form a pair of clamping grooves which are opposite in position and have a depth of half the width of the adaptive plate, and the two clamping grooves are inserted into each other to form the X-shaped hinged adaptive assembly.

[0023] The beneficial effects of the utility model are as follows:

[0024] The utility model discloses an elastic member arranged in the deformation adaptive area, which can be deformed when subjected to external impact, thereby absorbing and dispersing impact energy and effectively protecting the internal articles from being damaged. In particular, the elastic member is designed in the form of a sleeve and has an energy absorption groove, which can better absorb impact force from all directions and further improve the shockproof effect.

[0025] Meanwhile, the adaptive plates are connected in the form of X-shaped hinge and can automatically adjust the position according to the actual size of the packaged article, so that the packaging box can adapt to products of different sizes, without additional customization by the manufacturer, thereby saving cost and improving efficiency.

[0026] In addition, by increasing the cover plate and decorative paper and other decorations, not only the appearance quality of the packaging box is improved, but also the internal adaptive assembly is protected from damage, prolonging the service life.

[0027] In particular, the flexible cushion layer arranged at the bottom not only can provide additional cushioning effect, but also can realize lightweight design through the honeycomb-shaped hollow guide holes thereon, reduce the use of packaging materials, and maintain good air permeability.

[0028] In addition, the elastic member is made of rubber or silicone material, and in particular, the filling cavity formed in the silicone member is filled with non-Newtonian fluid (such as gel), which not only enhances the shockproof effect, but also improves the durability and environmental protection of the packaging box.

[0029] In addition, the adaptive plate is provided with a recessed clamping groove, so that the two adaptive plates can be combined in the form of X-shaped hinge, which not only enhances the stability of the structure, but also simplifies the assembly process, and facilitates quick assembly and disassembly.

[0030] In addition, since the packaging box can adapt to products of different sizes, the customized production demand caused by size changes is reduced, the production cost is reduced, unnecessary material waste is also reduced, and the concept of sustainable development pursued by modern enterprises is met.

[0031] In summary, the shockproof packaging box not only solves the problems of traditional packaging boxes, but also realizes significant improvement in shockproof performance, adaptability, aesthetics, user experience, economy and environmental protection. BRIEF DESCRIPTION OF DRAWINGS

[0032] The drawings described herein are used to provide a further understanding of the present application, and form a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application, and do not constitute an improper limitation on the present application.

[0033] Among them:

[0034] Figure 1 is a schematic diagram of the overall structure of the present application;

[0035] Figure 2 is a schematic diagram of the local explosion structure of the present application;

[0036] Figure 3 is a schematic diagram of the local section and top view structure of the present application;

[0037] Figure 4 is a schematic diagram of the local section and local explosion structure of the present application;

[0038] Figure 5 is a schematic diagram of the local structure of the flexible cushion layer in the present application;

[0039] Figure 6 is a partial structure schematic view of the elastic piece in the utility model;

[0040] Figure 7 is a partial sectional structure schematic view of the elastic piece in the utility model;

[0041] Figure 8 is a partial structure schematic view of the adaptive assembly in the utility model;

[0042] Figure 9 is a partial structure schematic view of the accommodation area adjustment state in the utility model.

[0043] Label explanation:

[0044] 10, box body; 11, cavity; 12, box bottom; 13, box wall; 14, accommodation area; 15, adjustment area; 20, box cover; 21, easy-to-open slot; 30, baffle; 40, adaptive assembly; 41, adaptive plate; 42, deformation adaptive area; 43, clamping groove; 50, elastic piece; 51, energy absorption slot; 52, filling cavity; 53, gel filling layer; 60, decorative piece; 61, cover plate; 62, veneer; 70, flexible cushion layer; 71, hollow guide hole. DETAILED DESCRIPTION

[0045] In order to make the technical problems, technical schemes and beneficial effects to be solved in the utility model more clear, explicit and understood, the utility model will be further described in detail in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0046] Please refer to Figures 1 to 9 , as a shockproof packaging box of the best embodiment of the utility model, comprising:

[0047] The box body 10 has a cavity 11 with an upper end opening in it;

[0048] Specifically, in the embodiment, the box body 10 includes a box bottom 12 and a box wall 13 which is vertically up along the inner side of the box bottom 12, and the gap (not marked in the figure) for insertion is formed between the box wall 13 and the edge of the box bottom 12, and the cavity 11 with an upper end opening is formed between the inner side of the box wall 13 and the box bottom 12.

[0049] The box cover 20 is movably inserted into the gap between the box wall 13 and the edge of the box bottom 12, and is used to close the cavity 11;

[0050] In the embodiment, the bottom of the box cover 20 and the two sides symmetrically form the hollow easy-to-open slot 21, so that the user's hand can be inserted to open the box cover 20.

[0051] The baffle 30 is symmetrically and movably arranged on both sides of the cavity 11, and divides the cavity 11 into the accommodating area 14 in the middle and the adjusting area 15 on both sides of the accommodating area 14.

[0052] In the embodiment, the baffle 30 is arranged to be adapted to the distance between the two side walls of the cavity 11.

[0053] The adaptive assembly 40 is composed of two X-shaped hinged adaptive plates 41 and arranged in the adjusting area 15, and the deformation adaptive area 42 is formed between the adjacent surfaces of the two adaptive plates 41.

[0054] The elastic member 50 is arranged in the deformation adaptive area 42 one by one, and is used to absorb impact energy by being deformed under pressure.

[0055] Preferably, as shown in Figure 4 , the decorative member 60 is further included, which includes two cover plates 61 and a veneer 62 connected between the two cover plates 61, the two cover plates 61 are respectively arranged on one side of the upper end of the adjusting area 15 away from the accommodating area 14, and the cover plate 61 covers the adaptive assembly 40, and the veneer 62 is attached to the upper end surface of the adjusting area 15, the side wall of the baffle 30 and the bottom of the accommodating area 14.

[0056] In the embodiment, the cover plate 61 is placed on the upper end of the adjusting area 15, and the lower end surface is supported by the X-shaped adaptive assembly 40, and the veneer 62 covers the area between the two cover plates 61, and can be closely attached to each wall surface, thereby covering and decorating the adjusting area 15 and the accommodating area 14, and avoiding the overall appearance.

[0057] Preferably, as shown in Figure 4 , 5 , the bottom of the accommodating area 14 is provided with a flexible cushion layer 70, and the veneer 62 is arranged on the upper end of the flexible cushion layer 70. In the embodiment, the flexible cushion layer 70 has a plurality of honeycomb-shaped hollow guide holes 71, and the flexible cushion layer 70 is a silica gel cushion layer, so that the flexible cushion layer 70 arranged at the bottom not only can provide additional cushioning effect, but also can realize lightweight design through the honeycomb-shaped hollow guide holes 71 thereon, reduce the use of packaging materials, and at the same time maintain good air permeability.

[0058] Preferably, as shown in Figure 3 , 6 , 7, the elastic member 50 is in the form of a cylindrical sleeve, the energy absorption groove 51 is arranged on the middle line (i.e. the axis) of the length direction of the elastic member 50, and the elastic member 50 is a rubber member or a silica gel member.

[0059] The elastic member 50, which is sleeve-shaped and made of silica gel or rubber, can be deformed under pressure to follow the deformation of the adaptive assembly 40, so that it can always fill in the deformation adaptation area 42 and maintain the elastic support of the adaptive assembly 40, thereby cooperating with the baffle 30 on both sides to protect the contents in the containing area 14 and reduce the damage caused by vibration.

[0060] Preferably, as shown in the drawings, Figure 7 The elastic member 50 is a silica gel member and has a hollow filling cavity 52 formed inside, and a non-Newtonian fluid filling layer is arranged in the filling cavity 52. In this embodiment, the non-Newtonian fluid filling layer is a gel filling layer 53, so that in normal state, the gel filling layer 53 can slowly deform under pressure to follow the deformation of the adaptive assembly 40, meeting the adjustment needs of the containing area 14; at the same time, when subjected to external impact, the gel filling layer 53 can be hardened instantly and keep a certain rigidity, cooperating with the silica gel material outside to support and buffer the contents and fully maintain the posture of the contents, reducing the damage caused by impact.

[0061] Preferably, as shown in the drawings, Figure 8 The two adaptive plates 41 are recessed in the direction of approaching each other to form a pair of clamping grooves 43 with opposite positions and a depth of half the width of the adaptive plate 41, and the two clamping grooves 43 are oppositely inserted to form an X-shaped articulated adaptive assembly 40, so that the two adaptive plates 41 can form an X-shaped articulated relationship through the opposite insertion of the two clamping grooves 43, and the adjustment area 15 can be adjusted according to the actual size of the contents to reserve a suitable size of the containing area 14.

[0062] As shown in the drawings, Figure 9 The containing area 14 is in a reduced state, and the adaptive plates 41 of the adaptive assembly 40 are turned towards each other, so that the side margins on both sides are increased, thereby increasing the size of the adjustment area 15, and the elastic member 50 deforms correspondingly to follow the change of the deformation adaptation area 42, and always maintains the elastic contact with the wall surfaces of the deformation adaptation area 42, thereby realizing the size adjustment of the containing area 14.

[0063] The beneficial effects of the utility model are as follows:

[0064] The utility model discloses a elastic member 50 is arranged in the deformation adaptation area 42, and this component can deform when subjected to external impact, absorbs and disperses impact energy, thereby effectively protecting the internal articles from being damaged. Especially, the elastic member 50 is designed as sleeve-shaped and has an energy absorption groove 51, and this structure can better absorb impact force from all directions, further improving the shockproof effect.

[0065] In addition, the adaptive plate 41 is connected in an X-shaped hinged manner, and can automatically adjust the position according to the actual size of the packaging object, so that the packaging box can adapt to products of different sizes, without the need for manufacturers to perform additional customization, thereby saving costs and improving efficiency.

[0066] In addition, by increasing the decorative part 60 such as the cover plate 61 and the veneer 62, not only the appearance quality of the packaging box is improved, but also the adaptive assembly 40 inside is protected from damage, thereby prolonging the service life.

[0067] In addition, the elastic part 50 is made of rubber or silicone material, and in particular, the filling cavity 52 formed in the silicone part is filled with non-Newtonian fluid (such as gel), thereby not only enhancing the shockproof effect, but also improving the durability and environmental protection of the packaging box.

[0068] In addition, the adaptive plate 41 is connected in an X-shaped hinged manner, and can automatically adjust the position according to the actual size of the packaging object, so that the packaging box can adapt to products of different sizes, without the need for manufacturers to perform additional customization, thereby saving costs and improving efficiency.

[0069] In addition, since the packaging box can adapt to products of different sizes, the customized production demand caused by size changes is reduced, the production cost is reduced, unnecessary material waste is reduced, and the concept of sustainable development pursued by modern enterprises is met.

[0070] In summary, the shockproof packaging box not only solves the problems of the traditional packaging box, but also realizes significant improvement in shockproof performance, adaptability, aesthetics, user experience, economy and environmental protection.

[0071] The utility model is described above in conjunction with the drawings, and obviously, the specific implementation of the utility model is not limited by the above manner, as long as various non-essential improvements are adopted by using the method concept and technical scheme of the utility model, or the concept and technical scheme of the utility model is directly applied to other occasions without improvement, all of which are within the protection scope of the utility model.

Claims

1. A shockproof packaging box, characterized by, The utility model relates to a shock-absorbing box, comprising: a box body (10) with a cavity (11) with an open upper end; a box cover (20) for covering the box body (10) and closing the cavity (11); a baffle (30) symmetrically and movably erected on both sides of the cavity (11), separating the cavity (11) into a containing area (14) in the middle and an adjusting area (15) on both sides of the containing area (14); an adaptive assembly (40) composed of two X-shaped hinged adaptive plates (41) and arranged in the adjusting area (15), the two adaptive plates (41) forming a deformation adaptive area (42) between their adjacent surfaces; an elastic member (50) arranged one-to-one in the deformation adaptive area (42) for absorbing impact energy by deformation under pressure; wherein the baffle (30) is arranged to adapt to the distance between the two side walls of the cavity (11).

2. A shockproof packaging box according to claim 1, characterized in that It also includes a decorative part (60) comprising two cover plates (61) and a veneer (62) connected between the two cover plates (61), the two cover plates (61) are arranged on one side of the upper end of the adjusting area (15) away from the containing area (14), and the cover plate (61) covers the adaptive assembly (40), and the veneer (62) is attached to the upper end surface of the adjusting area (15), the side wall of the baffle (30) and the bottom of the containing area (14).

3. A shock-resistant packaging box according to claim 2, characterized in that The bottom of the containing area (14) is provided with a flexible cushion layer (70), and the veneer (62) is arranged on the upper end of the flexible cushion layer (70).

4. A shock-resistant packaging box according to claim 3, characterized in that The flexible cushion layer (70) has a plurality of honeycomb-shaped distribution of hollow guide holes (71).

5. The shock-resistant packaging box according to claim 1, wherein The elastic member (50) is in the form of a sleeve.

6. A shock-resistant packaging box according to claim 5, characterized in that The elastic member (50) has an energy-absorbing groove (51) penetrating along the lengthwise centerline.

7. A shock-resistant packaging box according to claim 6, characterized in that The elastic member (50) is a rubber member or a silicone member.

8. The shock-resistant packaging box according to claim 6, wherein The elastic member (50) is a silicone member with a hollow filling cavity (52) formed inside, and the filling cavity (52) is provided with a non-Newtonian fluid filling layer.

9. A shock-resistant packaging box according to claim 8, characterized in that The non-Newtonian fluid filling layer is a gel filling layer (53).

10. The shock-resistant packaging box according to claim 1, wherein The two adaptive plates (41) are recessed towards each other to form a pair of positionally opposite and half-width deep clamping grooves (43), and the two clamping grooves (43) are inserted opposite to each other to form an X-shaped hinged adaptive assembly (40).