Anti-deformation detachable box and disassembling and placing method thereof

Through the integrated molding of long and short side plates and reinforcement body design, combined with the locking parts and the bottom cavity structure, the problem of low strength at the splicing after the box is disassembled is solved, the deformation resistance and stability are improved, and the transportation and storage efficiency are optimized.

CN120440434APending Publication Date: 2025-08-08DASEN PLASTIC IND (SUZHOU) CO LTD
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Patent Information

Application Number
CN202510698127.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

After disassembly, the structural strength of the existing box is low, which leads to easy deformity at the corners of the box, affecting the stability of use.

Method used

The integrated long side plate and short side plate are adopted, combined with the horizontal and vertical reinforcement bodies, to enhance the structural strength at the corners, and stable connection is achieved through locking components. The cavity is arranged at the bottom to store the disassembled side plate.

Benefits of technology

It improves deformation resistance and connection stability at the corners of the box, optimizes space utilization, reduces transportation costs and improves storage efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of boxes, in particular to an anti-deformation detachable box and a disassembling and placing method thereof.The anti-deformation detachable box comprises a box body, the box body comprises a box bottom, two long side plates and two short side plates, the two long side plates and the two short side plates are installed on the box bottom, and the two long side plates and the two short side plates jointly define the side faces of the box body; each long side plate comprises a long plate body and a long connecting part which are integrally formed, each short side plate comprises a short plate body and a short connecting part which are integrally formed, and locking parts for locking the long plate bodies and the short connecting parts and locking the short plate bodies and the long connecting parts are mounted on the box body. The corners of the box body and part of the side faces of the box body are of the integrally-formed structure, the structural strength of the corners of the box body is guaranteed, and it is guaranteed that the box can keep good deformation resistance in the using process.
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Description

Technical Field

[0001] The present application relates to the technical field of boxes, and in particular to a deformation-resistant detachable box and a method for disassembling the box. Background Art

[0002] Boxes, as a common container, are usually made of hard materials, have enclosed spaces, can store, protect and transport various items, and are widely used in daily life and commercial activities.

[0003] During the process of transporting boxes to their destinations after production, they are stacked and stored, which takes up a lot of space and the number of boxes that can be transported is extremely limited. A box is composed of two long sides, two short sides and a bottom. Existing boxes are disassembled into four side panels and a bottom panel. When in use, the side panels are assembled with the side panels and the side panels with the bottom panel. However, the structural strength of the joints of the assembled boxes is low, which makes the corners of the boxes easily deformed, affecting the normal use of the boxes.

[0004] Therefore, a deformation-resistant detachable box and a disassembly method thereof are needed to solve the problems of low strength at the joints of existing boxes and easy deformation at the corners of the boxes. Summary of the Invention

[0005] In order to enhance the structural strength of the box corners and ensure the overall stability of the assembled box, the present application provides an anti-deformation detachable box and a disassembly method thereof.

[0006] The above-mentioned invention objective of this application is achieved through the following technical solutions: A deformation-proof detachable box includes a box body, which includes a box bottom, two long side panels and two short side panels installed on the box bottom, the two long side panels and short side panels together form the side of the box body, each of the long side panels includes an integrally formed long panel body and a long connecting part, and each of the short side panels includes an integrally formed short panel body and a short connecting part, and locking components for locking the long panel body and the short connecting part, and locking the short panel body and the long connecting part are installed on the box body, the long panel body is integrally formed with a first transverse reinforcement extending to the outer edge of the long connecting part, the short panel body is integrally formed with a second transverse reinforcement extending to the outer edge of the short connecting part, the outer edge of the short connecting part is provided with a first vertical reinforcement extending along the height direction of the box body, and the outer edge of the long connecting part is provided with a second vertical reinforcement extending along the height direction of the box body.

[0007] By adopting the above technical scheme, the long side panel includes an integrally formed long panel body and a long connecting part, and the short side panel includes an integrally formed short panel body and a short connecting part, ensuring that the structural strength at the corners of the box is stable, and the long panel body and the short connecting part, the short panel body and the long connecting part are connected by locking components, which improves the structural strength and assembly stability of the box. The first transverse reinforcement body extends from the long panel body to the outer edge of the long connecting part, and the second transverse reinforcement body extends from the short panel body to the outer edge of the short connecting part, further enhancing the deformation resistance at the corners of the box. The outer edge of the short connecting part is provided with a first vertical reinforcement body, and the outer edge of the long connecting part is provided with a second vertical reinforcement body, which further improves the rigidity of the corners of the box. Compared with the existing technology, the corners of the box and part of the side surfaces of the box are an integrally formed structure, which ensures the structural strength of the corners of the box. The first transverse reinforcement body, the second transverse reinforcement body, the first vertical reinforcement body, and the second vertical reinforcement body arranged at the corners of the box further enhance the structural strength of the corners of the box, ensuring that the box can maintain good deformation resistance during use.

[0008] Optionally, the locking component includes a lower locking assembly, which includes a lower buckle arranged at the lower end of the long board body and the lower end of the short board body, a lower slot arranged at the lower end of the short connection part and the lower end of the long connection part, the lower buckle and the lower slot are snapped together, and the bottom end of the lower buckle is provided with a first guide slope, the first guide slope slides into contact with the lower inner edge of the lower slot at the lower end of the short connection part and the lower end of the long connection part, and the first guide slope slides down to drive the long board body close to the short connection part to seal and fit each other, and drives the short board body close to the long connection part to seal and fit each other.

[0009] By adopting the above technical solution, the setting of the lower locking assembly ensures the connection strength of the lower end of the box connection. The design of the first guide slope makes the fit between the long board body and the short board connection, and the short board body and the long connection part better during the installation process, effectively enhancing the stability of the box connection.

[0010] Optionally, the lower snap is provided with a connecting section that slides with the lower snap groove, and an elastic blocking member with an inverted triangular cross-section is fixedly installed on the connecting section. The lower snap groove includes a first vertical slot section and a second vertical slot section that are connected end to end. The lower snap groove is provided with a transverse slot that is cross-set and connected to the second vertical slot section. The elastic blocking member passes through the first vertical slot section, the second vertical slot section, and the transverse slot in sequence, and the lower snap slides downward to drive the elastic blocking member into the transverse slot and conflicts with the inner wall of the transverse slot.

[0011] By adopting the above technical solution, the elastic blocking member passes through the first vertical groove section, the second vertical groove section in sequence and finally enters the horizontal groove during the downward sliding process of the lower clip, and conflicts with the inner wall of the horizontal groove, effectively preventing the lower clip from accidentally detaching when subjected to external force, and further improving the structural stability of the box connection.

[0012] Optionally, a telescopic blocking member is installed in the transverse groove, and the telescopic blocking member is positioned and matched with the elastic blocking member after sliding.

[0013] By adopting the above technical solution, the elastic blocking member is positioned and matched with the telescopic blocking member in the transverse groove, which can effectively prevent the telescopic blocking member from detaching from the elastic blocking member, further enhancing the stability of the box connection.

[0014] Optionally, the locking component also includes an upper locking assembly, which includes an upper buckle arranged at the upper end of the long board body and the upper end of the short board body, and an upper slot arranged at the upper end of the short connection part and the upper end of the long connection part. The upper buckle is engaged with the upper slot, and the upper slot is provided with a second guide slope for guiding the upper buckle to be inserted into the upper slot. The bottom end of the upper buckle is provided with a third guide slope that slides in contact with the lower edge of the inner side of the upper slot. The third guide slope descends and drives the long board body close to the short connection part to seal and fit with each other, and drives the short board body close to the long connection part to seal and fit with each other.

[0015] By adopting the above technical solution, the setting of the upper locking assembly ensures the stability of the box connection, the setting of the second guide slope can guide the upper buckle to be accurately inserted into the upper slot, and the design of the third guide slope drives the long board body and the short connection part to achieve a sealed fit, and the short board body and the long connection part to achieve a sealed fit during the sliding process, further enhancing the strength and sealing of the box connection.

[0016] Optionally, the box body is also equipped with a bottom locking assembly for locking the long side panels and the box bottom, and locking the short side panels and the box bottom. The bottom locking assembly is arranged on the end faces of the long side panels and the box bottom, and the end faces of the short side panels and the box bottom.

[0017] By adopting the above technical solution and setting the bottom locking assembly, the long side panels and the short side panels are prevented from loosening or separating from the bottom of the box during use, thereby improving the overall structural strength of the box and enhancing the box's anti-deformation ability.

[0018] Optionally, a first cavity for placing the disassembled long side panels and short side panels is provided on the bottom of the box.

[0019] By adopting the above technical solution, the setting of the first cavity enables the box to effectively utilize the internal space, providing storage space for the long side panels and the short side panels after the box is disassembled, making it more convenient to store the disassembled box, and further facilitating the transportation of the box.

[0020] Optionally, after disassembly, the two ends of the two short side panels respectively conflict with the two opposite side walls of the first cavity, and the two ends of the two long side panels respectively conflict with the other two opposite side walls of the first cavity.

[0021] By adopting the above technical solution, the long side panels and the short side panels will conflict with the side walls of the first cavity after being disassembled, ensuring the stable positioning of the long side panels and the short side panels in the first cavity, preventing them from shifting during transportation or storage, and effectively avoiding mutual collision between the long side panels and the short side panels.

[0022] The second object of the present invention is achieved through the following technical solutions: 14. The method for disassembling a deformation-proof detachable box, wherein the disassembly steps are as follows: S1: first placing a short side panel in the first cavity, and the short panel body fits the bottom of the box; S2: stacking one of the long side panels on the short side panel; S3: stacking the other long side panel on the long side panel, the two long side panels are staggered and the long panel body surfaces of the two long side panels fit together; S4: stacking the other short side panel on the second long side panel, the short panel body of the other short side panel fits the long panel body surface of the second long side panel, the second short side panel and the first short side panel are staggered and a second cavity for placing the two long side panels is formed therebetween; S5: the bottom end of the bottom of the box protrudes outward to form a base, stacking two identical boxes, stacking another box on the box, the base of the upper box fits into the first cavity of the lower box and the base of the upper box conflicts with the second short side panel in the lower box.

[0023] In summary, this application includes at least one of the following beneficial technical effects: 1. The corners of the box and part of the side of the box are integrally formed to ensure the structural strength of the box corners. The outer edges of the box corners are also provided with a first transverse reinforcement, a second transverse reinforcement, a first vertical reinforcement, and a second vertical reinforcement to further enhance the structural strength of the box corners and ensure that the box can maintain good deformation resistance during use; 2. The setting of the lower locking assembly ensures the connection strength between the long board body and the short connecting part, and between the short board body and the long connecting part. The design of the first guide slope makes the fit between the long board body and the long board connection, and between the short board body and the long connecting part better during the installation process, effectively enhancing the stability of the box connection; 3. The first and second cavities at the bottom of the box can reasonably accommodate the disassembled long and short side panels, optimizing space utilization. At the same time, the stacking design enables compact stacking of multiple boxes, reducing transportation costs and improving storage efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a schematic diagram of the overall structure of this application; Figure 2 This is an overall explosion diagram of this application; Figure 3 Schematic diagram of the local structure of the short connection part in this application Figure 1 , used to show the setting position of the upper card slot; Figure 4 This is a schematic diagram of the local structure of the longboard body in this application Figure 1 , used to show the setting position of the upper buckle; Figure 5 This is a schematic diagram of the local structure of the longboard body in this application Figure 2 , used to show the setting position of the lower buckle; Figure 6 This is a schematic diagram of the local structure of the short connection part in this application Figure 2 , used to show the setting position of the lower card slot; Figure 7 This is a partial cross-sectional view of the present application, used to illustrate the specific structure of the bottom locking assembly; Figure 8 This is a partial structural diagram of the box body in this application, used to show the placement of the long side panels and the short side panels in the box bottom; Figure 9 This is a partial exploded schematic diagram of the present application, used to illustrate the placement order of the long side panels and the short side panels; Figure 10 This is the cross section of the box after disassembly in this application Figure 1 , used to show the interference relationship between the long connecting part and the side wall of the box bottom; Figure 11 This is the cross section of the box after disassembly in this application Figure 2 , used to show the interference relationship between the short connection part and the side wall of the box bottom.

[0025] Figure numerals: 1, box body; 11, long side panel; 111, long board body; 112, long connecting portion; 113, first transverse reinforcement; 114, second vertical reinforcement; 12, short side panel; 121, short board body; 122, short connecting portion; 123, second transverse reinforcement; 124, first vertical reinforcement; 13, box bottom; 131, base; 2, locking component; 21, upper locking assembly; 211, upper buckle; 212, upper slot; 213, second guide slope; 214, third guide slope; 22, lower locking assembly; 221, lower Buckle; 222, lower snap-in slot; 223, first guide slope; 224, connecting section; 225, elastic blocking member; 2251, groove; 226, first vertical slot section; 227, second vertical slot section; 228, transverse slot; 229, telescopic blocking member; 3, bottom locking assembly; 31, latch; 32, insertion hole; 33, snap-in slot; 34, interference protrusion; 4, first cavity; 5, second cavity; 6, first elongated slot; 7, second elongated slot; 8, upper handle; 81, first handle reinforcement; 9, lower handle; 91, second handle reinforcement. DETAILED DESCRIPTION

[0026] The following is combined with Figure 1-11 This application is described in further detail.

[0027] Example 1: A kind of anti-deformation detachable box, reference Figure 1 and Figure 2, including a box body 1, the box body 1 includes a box bottom 13, two long side panels 11 and two short side panels 12, the two long side panels 11 and the two short side panels 12 are staggered on the box bottom 13, and the two long side panels 11 and the short side panels 12 together surround the side of the box body 1, each long side panel 11 includes an integrally formed long board body 111 and a long connecting portion 112, each short side panel 12 includes an integrally formed short board body 121 and a short connecting portion 122, a locking component 2 is installed on the box body 1, the locking component 2 is used to lock the long board body 111 and the short connecting portion 122, the short board body 121 and the long connecting portion 112, the outer edge of the long board body 111 is integrally formed with a first transverse reinforcement 113, the first transverse reinforcement 113 includes a reinforcing rib, the first transverse reinforcement 113 extends from the long board body 111 to the long connecting portion 112, To strengthen the strength of the long connection part 112, a second transverse reinforcement 123 is integrally formed on the outer edge of the short board body 121, and the second transverse reinforcement 123 includes reinforcement ribs. The second transverse reinforcement 123 extends from the short board body 121 to the short connection part 122, thereby strengthening the strength of the short connection part 122. A first vertical reinforcement 124 is provided at the short connection part 122, and a second vertical reinforcement 114 is provided at the long connection part 112. The first vertical reinforcement 124 and the second vertical reinforcement 114 include reinforcement ribs. The first vertical reinforcement 124 and the second vertical reinforcement 114 extend along the height direction of the box body 1 and are respectively located at the outer edges of the short connection part 122 and the long connection part 112, thereby further strengthening the structural strength of the long connection part 112 and the short connection part 122, thereby ensuring the structural strength of the side corners of the box body 1.

[0028] refer to Figure 1 and Figure 3 The locking component 2 includes an upper locking assembly 21, and then combined with Figure 4 The upper locking assembly 21 includes an upper buckle 211 and an upper slot 212. The upper buckle 211 is provided at the upper end of the long board body 111 and the upper end of the short board body 121. The upper slot 212 is provided at the upper end of the short connection portion 122 and the upper end of the long connection portion 112. The upper buckle 211 of the long board body 111 is similar in structure and principle to the upper buckle 211 of the short board body 121. The upper slot 212 of the short connection portion 122 is similar in structure and principle to the upper slot 212 of the long connection portion 112. In this embodiment, the upper buckle 211 of the short board body 121 and the upper slot 212 of the long connection portion 112 are not described in detail. The upper buckle 211 of the long board body 111 and the upper slot 212 of the short connection portion 122 are engaged and matched to achieve locking of the upper end of the long board body 111 and the upper end of the short connection portion 122.

[0029] refer to Figure 3 and Figure 4The upper groove 212 of the short connecting part 122 is provided with a second guide inclined surface 213, and the second guide inclined surfaces 213 are arranged on the inner walls on both sides of the upper groove 212 of the short connecting part 122. The arrangement of the second guide inclined surface 213 facilitates centering and guiding when the upper buckle 211 of the long board body 111 is inserted into the upper groove 212 of the short connecting part 122. A third guide inclined surface 214 is provided at the bottom end of the upper buckle 211 of the long board body 111. When the upper buckle 211 of the long board body 111 slides down, the third guide inclined surface 214 slides and contacts the lower edge of the inner side of the upper groove 212 of the short connecting part 122, so that the long board body 111 and the short connecting part 122 have a better fit and a stronger sealing.

[0030] refer to Figure 1 and Figure 5 The locking component 2 also includes a lower locking assembly 22, combined with Figure 6 The lower locking assembly 22 includes a lower buckle 221 and a lower slot 222. The lower buckle 221 is provided at the lower end of the long board body 111 and the lower end of the short board body 121. The lower slot 222 is provided at the lower end of the short connection portion 122 and the lower end of the long connection portion 112. The lower buckle 221 of the long board body 111 and the lower buckle 221 of the short board body 121 have similar structures and principles. The lower slot 222 of the short connection portion 122 and the lower slot 222 of the long connection portion 112 have similar structures and principles. In this embodiment, the lower buckle 221 of the short board body 121 and the lower slot 222 of the long connection portion 112 are not described in detail. The lower buckle 221 of the long board body 111 and the lower slot 222 of the short connection portion 122 engage with each other to achieve locking of the lower end of the long board body 111 and the lower end of the short connection portion 122.

[0031] refer to Figure 5 and Figure 6 The bottom end of the lower buckle 221 of the long board body 111 is provided with a first guide slope 223, and the inner lower edge of the lower groove 222 of the short connection part 122 is inclined. The first guide slope 223 slides and contacts with the inner lower edge of the lower groove 222 of the short connection part 122. During the sliding process of the first guide slope 223, the long board body 111 is driven close to the short connection part 122, thereby realizing the fitting and sealing between the long board body 111 and the short connection part 122.

[0032] refer to Figure 5 and Figure 6The lower buckle 221 is provided with a connecting section 224, which is slidably matched with the lower slot 222. An elastic blocking member 225 with an inverted triangular cross section is fixedly installed on the connecting section 224. In this embodiment, the elastic blocking member 225 includes a rubber pad. The elastic blocking member 225 has stable elastic deformation performance. The lower slot 222 includes a first vertical slot section 226 and a second vertical slot section 227 connected end to end. The first vertical slot section 226 and the second vertical slot section 227 are connected end to end. The groove sections 227 are arranged in sequence along the direction in which the lower buckle 221 slides down. The groove width of the first vertical groove section 226 is greater than the width of the lower buckle 221, so that the lower buckle 221 can pass through the first vertical groove section 226. The groove width of the second vertical groove section 227 is less than the width of the lower buckle 221, so as to prevent the lower buckle 221 from detaching from the second vertical groove section 227 during the sliding process. During the sliding process of the lower buckle 221, the connecting section 224 of the lower buckle 221 slides along the inner wall of the second vertical groove section 227.

[0033] refer to Figure 5 and Figure 6 The lower card slot 222 is provided with a transverse groove 228, and the transverse groove 228 is cross-arranged and connected with the second vertical groove section 227. During the sliding of the lower buckle 221, the elastic blocking member 225 passes through the first vertical groove section 226, the second vertical groove section 227, and the transverse groove 228 in sequence. The lower buckle 221 slides downward and drives the elastic blocking member 225 to enter the transverse groove 228, and the elastic blocking member 225 conflicts with the inner wall of the transverse groove 228, restricting the lower buckle 221 from disengaging from the lower card slot 222. A groove 2251 is provided on the elastic blocking member 225, and a telescopic blocking member 229 is installed in the transverse groove 228. In this embodiment, the telescopic blocking member 229 includes a spring steel ball. The telescopic blocking member 229 is positioned and matched with the groove 2251 to strengthen the degree of connection between the lower buckle 221 and the lower card slot 222.

[0034] refer to Figure 1 and Figure 7A bottom locking assembly 3 is also installed on the box body 1, and the bottom locking assembly 3 is arranged at the end surface of the long side panel 11 and the box bottom 13 and the end surface of the short side panel 12 and the box bottom 13. The principle of the bottom locking assembly 3 arranged at the long side panel 11 and the box bottom 13 is similar to that of the bottom locking assembly 3 arranged at the short side panel 12 and the box bottom 13. In this embodiment, the bottom locking assembly 3 arranged at the short side panel 12 and the box bottom 13 is not described in detail. The bottom locking assembly 3 includes a latch 31 and a socket 32. The latch 31 is arranged at the bottom end of the long side plate 11 and protrudes from the end surface of the bottom of the long side plate 11. The socket 32 is arranged on the end surface of the box bottom 13. The position and size of the socket 32 are adapted to the latch 31. The corners of the latch 31 are chamfered to facilitate the insertion of the latch 31 into the socket 32. The inner wall of the socket 32 is protruding with a resistance protrusion 34. In this embodiment, the resistance protrusion 34 is made of rubber material with stable elastic properties. One end of the latch 31 is recessed to form a snap-fitting groove 33 of equal size and shape to the resistance protrusion 34. The resistance protrusion 34 is snap-fitted with the snap-fitting groove 33 to prevent the latch 31 from detaching from the socket 32, thereby strengthening the connection strength between the long side plate 11 of the box body 1 and the box bottom 13.

[0035] refer to Figure 8 and Figure 10 The first cavity 4 is provided on the bottom 13 of the box. The two long side panels 11 and the two short side panels 12 are disassembled and stacked in the first cavity 4. The first cavity 4 includes two long side walls and two short side walls. The long side walls and the short side walls are staggered. Figure 11 The side ends of the short plate body 121 and the side ends of the short connecting portion 122 respectively conflict with the two long side walls, and the side ends of the two long connecting portions 112 respectively conflict with the two short side walls.

[0036] refer to Figure 9 and Figure 10 The two long side plates 11 are located between the two short side plates 12, and the two short connecting parts 122 of the short side plates 12 are located between the two short plate bodies 121. Figure 11 The short connection part 122 of one short side plate 12 conflicts with the short plate body 121 of the other short side plate 12. Under the support of the two short connection parts 122, a second cavity 5 is formed between the two short plate bodies 121 and the two long connection parts 112, and the two long side plates 11 are placed in the second cavity 5.

[0037] refer to Figure 9The opposite ends of the two long side panels 11 are recessed to form first long strip grooves 6 that are positioned opposite to each other. By placing the partition in the first long strip grooves 6 on the two long side panels 11, the box body 1 can be divided into multiple independent spaces along the short side direction of the box body 1. The opposite ends of the two short side panels 12 are recessed to form second long strip grooves 7 that are positioned opposite to each other. By clamping the partition in the second long strip grooves 7 on the two short side panels 12, the box body 1 can be divided into multiple independent spaces along the long side direction of the box body 1. It can be divided as needed to facilitate the classification and storage of items in the box body 1.

[0038] refer to Figure 1 , upper handles 8 are provided on the two short side panels 12, which facilitate the transportation of the box body 1 as a whole. A first handle reinforcement body 81 extending along the height direction of the box body 1 is integrally formed on the short side panel 12 located at the upper handle 8, and a lower handle 9 is provided on the box bottom 13. A second handle reinforcement body 91 extending along the short side of the box body 1 is integrally formed on the short side wall of the box bottom 13. The lower handle 9 is provided on the second handle reinforcement body 91 and the cross-section of the lower handle 9 is arc-shaped. The setting of the lower handle 9 facilitates the transportation of the box bottom 13 after disassembly.

[0039] The implementation principle of Example 1 of the present application is as follows: when assembling the box body 1, the upper buckle 211 of the long board body 111 is snap-fitted with the upper slot 212 of the short connection part 122, and the lower buckle 221 of the long board body 111 is snap-fitted with the lower slot 222 of the short connection part 122, so as to achieve stable splicing of the long board body 111 and the short connection part 122. Similarly, stable splicing of the short board body 121 and the long connection part 112 is achieved. The latch 31 of the long side panel 11 is plugged into and matched with the socket 32 of the box bottom 13. Similarly, the latch 31 of the short side panel 12 is plugged into and matched with the socket 32 of the box bottom 13, so as to achieve stable splicing of the long side panel 11, the short side panel 12 and the box bottom 13, thereby forming a box body 1 with stable structural strength. When disassembling the above-mentioned box body 1, remove the two long side panels 11 and the two short side panels 12 in sequence, first place one of the short side panels 12 in the first cavity 4, with the short panel body 121 fitting against the box bottom 13, and the short connecting portion 122 facing the opening of the box body 1, then stack one of the long side panels 11 on the short side panel 12, with the long connecting portion 112 facing the opening of the box body 1, and then stack the second long side panel 11 on the first long side panel 11, the two long side panels 11 are staggered and the long panel bodies 111 of the two long side panels 11 fit together, the long connecting portion 112 of the second long side panel 11 faces the box bottom 13, stack the second short side panel 12 on the second long side panel 11, and the short panel body 121 of the second short side panel 12 is aligned with the second long side panel 11 The long board body 111 is fitted with the long board body 111, the second short side panel 12 is staggered with the first short side panel 12 and the short connecting part 122 of the second short side panel 12 faces the bottom 13 of the box, the side ends of the short board body 121 and the side ends of the short connecting part 122 respectively conflict with the two long side walls opposite to the first cavity 4, and the side ends of the two long connecting parts 112 respectively conflict with the two short side walls opposite to the first cavity 4. Finally, another box 1 is stacked on the box 1 with the long side panels 11 and the short side panels 12, and the two boxes 1 are stacked, the bottom end of the upper box 1 is adapted to the first cavity 4 of the lower box 1, and after the upper box 1 is stacked on the lower box 1, the bottom end of the upper box 1 conflicts with the second short side panel 12 in the lower box 1.

[0040] Example 2: A method for disassembling and placing an anti-deformation detachable box, reference Figure 8 and Figure 9 , dismantle Example 1, and the dismantling steps are as follows: S1: first place a short side panel 12 in the first cavity 4, and the short panel body 121 is in contact with the bottom 13 of the box; S2: stack a long side panel 11 on the short side panel 12; S3: stack another long side panel 11 on the long side panel 11, and the two long side panels 11 are staggered and the long panel bodies 111 of the two long side panels 11 are in contact with each other; S4: stack another short side panel 12 on the second long side panel 11, and the short panel body 121 of the other short side panel 12 is in contact with the second long side panel The long board body 111 of the side panel 11 is fitted on the surface, and the second short side panel 12 is staggered with the first short side panel 12 and a second cavity 5 for placing the two long side panels 11 is formed therebetween; S5: the bottom end of the box bottom 13 protrudes outward to form a base 131, and two identical boxes 1 are stacked, and another box 1 is stacked on the box 1, and the base 131 of the upper box 1 is adapted to the first cavity 4 of the lower box 1 and the base 131 of the upper box 1 conflicts with the second short side panel 12 in the lower box 1.

[0041] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A deformation-resistant detachable box, comprising a box body (1), wherein the box body (1) comprises a box bottom (13), two long side panels (11) and two short side panels (12) mounted on the box bottom (13), wherein the two long side panels (11) and the short side panels (12) together form the side of the box body (1), characterized in that: Each of the long side panels (11) includes an integrally formed long panel body (111) and a long connecting portion (112), and each of the short side panels (12) includes an integrally formed short panel body (121) and a short connecting portion (122). The box body (1) is provided with a locking member (2) for locking the long panel body (111) and the short connecting portion (122), and for locking the short panel body (121) and the long connecting portion (112). The long panel body (111) is integrally formed with a locking member extending to A first transverse reinforcement body (113) is formed on the outer edge of the long connecting portion (112); the short plate body (121) is integrally formed with a second transverse reinforcement body (123) extending to the outer edge of the short connecting portion (122); the outer edge of the short connecting portion (122) is provided with a first vertical reinforcement body (124) extending along the height direction of the box body (1); and the outer edge of the long connecting portion (112) is provided with a second vertical reinforcement body (114) extending along the height direction of the box body (1).

2. The anti-deformation detachable box according to claim 1, characterized in that: The locking component (2) includes a lower locking assembly (22), and the lower locking assembly (22) includes a lower buckle (221) provided at the lower end of the long board body (111) and the lower end of the short board body (121), and a lower groove (222) provided at the lower end of the short connecting portion (122) and the lower end of the long connecting portion (112). The lower buckle (221) is engaged with the lower groove (222), and the bottom end of the lower buckle (221) is provided with a first guiding inclined surface (223). The first guiding inclined surface (223) is in sliding contact with the lower inner edge of the lower groove (222) at the lower end of the short connecting portion (122) and the lower end of the long connecting portion (112), and the first guiding inclined surface (223) slides down to drive the long board body (111) close to the short connecting portion (122) to seal with each other, and drives the short board body (121) close to the long connecting portion (112) to seal with each other.

3. The anti-deformation detachable box according to claim 2, characterized in that: The lower snap fastener (221) is provided with a connecting section (224) that is slidably matched with the lower snap fastener (222); an elastic blocking member (225) having an inverted triangular cross-section is fixedly mounted on the connecting section (224); the lower snap fastener (222) comprises a first vertical slot section (226) and a second vertical slot section (227) that are connected end to end; a transverse slot (228) that is cross-arranged and connected to the second vertical slot section (227) is provided at the lower snap fastener (222); the elastic blocking member (225) passes through the first vertical slot section (226), the second vertical slot section (227), and the transverse slot (228) in sequence; the lower snap fastener (221) slides downward, driving the elastic blocking member (225) to enter the transverse slot (228) and come into contact with the inner wall of the transverse slot (228).

4. The anti-deformation detachable box according to claim 3, characterized in that: A telescopic blocking member (229) is installed in the transverse groove (228), and the telescopic blocking member (229) is positioned and matched with the elastic blocking member (225) after sliding.

5. The anti-deformation detachable box according to claim 2, characterized in that: The locking component (2) further comprises an upper locking assembly (21), the upper locking assembly (21) comprising an upper buckle (211) provided at the upper end of the long plate body (111) and the upper end of the short plate body (121), and an upper clamping groove (212) provided at the upper end of the short connecting portion (122) and the upper end of the long connecting portion (112), the upper buckle (211) being engaged with the upper clamping groove (212), and the upper clamping groove (212) being provided with a buckle for engaging with the upper buckle (211). 1) Insert the second guiding inclined surface (213) of the upper card slot (212) for centering guidance, and the bottom end of the upper buckle (211) is provided with a third guiding inclined surface (214) that slides against the lower edge of the inner side of the upper card slot (212). The third guiding inclined surface (214) slides down to drive the long board body (111) close to the short connecting part (122) to seal and fit together, and drives the short board body (121) close to the long connecting part (112) to seal and fit together.

6. The anti-deformation detachable box according to claim 1, characterized in that: The box body (1) is also provided with a bottom locking assembly (3) for locking the long side panels (11) and the box bottom (13), and for locking the short side panels (12) and the box bottom (13). The bottom locking assembly (3) is arranged on the end faces of the long side panels (11) and the box bottom (13), and on the end faces of the short side panels (12) and the box bottom (13).

7. The anti-deformation detachable box according to claim 1, characterized in that: The box bottom (13) is provided with a first cavity (4) for placing the disassembled long side panels (11) and short side panels (12).

8. The anti-deformation detachable box according to claim 7, characterized in that: The two ends of the disassembled short side panels (12) respectively contact the two opposite side walls of the first cavity (4), and the two ends of the long side panels (11) respectively contact the other two opposite side walls of the first cavity (4).

9. A method for disassembling and placing an anti-deformation detachable box, characterized in that: The steps for disassembling the anti-deformation detachable box according to claim 8 are as follows: S1: First, place a short side panel (12) in the first cavity (4), with the short panel body (121) fitting with the box bottom (13); S2: stacking one of the long side panels (11) on the short side panels (12); S3: stacking another long side plate (11) on the long side plate (11), with the two long side plates (11) being staggered and the long plate bodies (111) of the two long side plates (11) being in contact with each other; S4: stacking the other short side panel (12) on the second long side panel (11), with the short panel body (121) of the other short side panel (12) being in contact with the long panel body (111) of the second long side panel (11), and the second short side panel (12) and the first short side panel (12) being arranged in an interlaced manner and forming a second cavity (5) for placing the two long side panels (11); S5: The bottom end of the box bottom (13) protrudes outward to form a base (131). Two identical boxes (1) are stacked, and another box (1) is stacked on the box (1). The base (131) of the upper box (1) is adapted to the first cavity (4) of the lower box (1), and the base (131) of the upper box (1) is in conflict with the second short side panel (12) in the lower box (1).