Tool for machining box body

By designing tooling for frame-type boxes, and utilizing a base, fixing device, and unloading mechanism, the efficiency problem in the connection operation between the top frame and the bottom frame was solved, achieving efficient and stable box processing.

CN224088844UActive Publication Date: 2026-04-07BYD CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing technologies cannot effectively improve the processing efficiency of frame-type boxes, especially in the connection operation between the top frame and the bottom frame, where there is a lack of appropriate clamping and splicing tooling.

Method used

A tooling was designed, including a base, a first fixing device and a second fixing device, which are used to fix the top frame and the bottom frame respectively, and to realize the automated unloading of the box through the unloading mechanism, and to realize the automated operation in conjunction with the electrical controller.

Benefits of technology

It improves the processing accuracy and stability of the frame-type box, reduces structural complexity, and enhances processing efficiency and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a tool for machining a box body, relates to the technical field of frame type box body machining, and aims to solve the problem of how to improve the machining efficiency of the box body. The tool comprises a base, a first fixing device and a second fixing device, the first fixing device and the second fixing device are arranged on the base, the first fixing device is suitable for limiting and fixing a top frame to a first position, and the second fixing device is suitable for limiting and fixing a bottom frame to a second position opposite to the first position, so that the top frame and the bottom frame are connected to form a box body.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of frame box processing, and particularly relates to a tool for box processing. BACKGROUND

[0002] At present, a frame box (such as a server box, a cargo shelf or an energy storage cabinet) can include a top frame and a bottom frame and a plurality of connecting beams connected between the top frame and the bottom frame. In the processing of the frame box, a tool capable of clamping and splicing is needed to cooperate with the connecting operation between the top frame and the bottom frame, so as to improve the processing efficiency of the box. However, the prior art often cannot meet this demand. CONTENT OF THE UTILITY MODEL

[0003] The present application aims to provide a tool for box processing, and aims to solve the problem of how to improve the processing efficiency of the box.

[0004] In a first aspect, a tool for box processing is provided, and the box includes a top frame and a bottom frame. The tool includes a base and a first fixing device and a second fixing device arranged on the base. The first fixing device is adapted to limit and fix the top frame at a first position, and the second fixing device is adapted to limit and fix the bottom frame at a second position opposite to the first position, so that the top frame and the bottom frame are connected to form the box.

[0005] In this way, the top frame and the bottom frame are fixed at the opposite first position and second position by means of the first fixing device and the second fixing device respectively, which has high strength and better stability while ensuring accuracy. By means of the tool cooperating with the processing operation, the processing efficiency of the box can be improved.

[0006] Optionally, the first fixing device includes a first support and a first limiting component and a first clamping component arranged on the first support. The first limiting component is adapted to limit the top frame at the first position, and the first clamping component is adapted to cooperate with the first limiting component to clamp and fix the top frame at the first position.

[0007] Optionally, the first limiting component includes a first limiting structure, and the first clamping component includes a first clamping structure; the first limiting structure and the first clamping structure are located on opposite sides of the first position arranged in a first direction, and the first direction is parallel to the surface of the first support facing the second fixing device. The first limiting structure is arranged on the first support and is adapted to limit the position of the top frame in the first direction, and the first clamping structure is capable of moving towards the first limiting structure to cooperate with the first limiting structure to clamp and fix the top frame at the position in the first direction.

[0008] Optionally, the first limiting component further comprises a second limiting structure, and the first clamping component comprises a second clamping structure; the second limiting structure and the second clamping structure are located on opposite sides of the first position along a second direction; the second direction is parallel to a surface of the first support facing the second fixing device and is perpendicular to the first direction. The second limiting structure is arranged on the first support and is adapted to limit the position of the top frame in the second direction; the second clamping structure is capable of moving towards the second limiting structure to clamp and fix the position of the top frame in the second direction in cooperation with the second limiting structure.

[0009] Optionally, the first limiting component further comprises a third limiting structure, and the first clamping component comprises a third clamping structure; the third limiting structure and the third clamping structure are located on opposite sides of the first position along a third direction; the third direction is perpendicular to the first direction and the second direction. The third limiting structure is arranged on the first support and is adapted to limit the position of the top frame in the third direction; the third clamping structure is capable of moving towards the third limiting structure to clamp and fix the position of the top frame in the third direction in cooperation with the third limiting structure.

[0010] Optionally, the second fixing device comprises a second support, and a second limiting component and a second clamping component arranged on the second support; the second limiting component is adapted to limit the bottom frame in the second position; the second clamping component is adapted to cooperate with the second limiting component to clamp and fix the bottom frame in the second position.

[0011] Optionally, the second limiting component comprises a fourth limiting structure, and the second clamping component comprises a fourth clamping structure; the fourth limiting structure and the fourth clamping structure are located on opposite sides of the second position along a fourth direction; the fourth direction is parallel to a surface of the second support facing away from the first fixing device. The fourth limiting structure is arranged on the second support and is adapted to limit the position of the bottom frame in the fourth direction; the fourth clamping structure is capable of moving towards the fourth limiting structure to clamp and fix the position of the bottom frame in the fourth direction in cooperation with the fourth limiting structure.

[0012] Optionally, the second clamping component comprises two fifth clamping structures; the two fifth clamping structures are located on opposite sides of the second position along a fifth direction; the fifth direction is parallel to the surface of the second support facing away from the first fixing device and is perpendicular to the fourth direction. The two fifth clamping structures are capable of moving towards each other to clamp and fix the position of the bottom frame in the fifth direction.

[0013] Optionally, the second limiting assembly further comprises a fifth limiting structure, and the second clamping assembly comprises a sixth clamping structure; the fifth limiting structure and the sixth clamping structure are located on opposite sides of the second position along a sixth direction; the sixth direction is perpendicular to the fourth direction and the fifth direction. The fifth limiting structure is fixed to the second support and is adapted to limit the position of the bottom frame in the sixth direction, and the sixth clamping structure is capable of moving towards the fifth limiting structure to clamp and fix the position of the bottom frame in the sixth direction together with the fifth limiting structure.

[0014] Optionally, the number of the fifth limiting structures is multiple, and the number of the sixth clamping structures is multiple, and the multiple sixth clamping structures are respectively arranged opposite to the multiple fifth limiting structures.

[0015] Optionally, the tool further comprises a third support, the third support is located on the side of the second support opposite to the first fixing device, and the multiple sixth clamping structures are arranged on the third support.

[0016] Optionally, the first position is located on the side of the first support facing the second fixing device, and the second position is located on the side of the second support opposite to the first fixing device.

[0017] Optionally, the tool further comprises a material returning mechanism, the material returning mechanism is used to push the box formed after the top frame is connected with the bottom frame in the direction in which the first fixing device points to the second fixing device, so as to separate the box from the first fixing device and the second fixing device.

[0018] Optionally, the material returning mechanism comprises a driving structure and a contact structure, the driving structure is fixed to the first support, the contact structure is connected with the driving structure, and the driving structure is capable of driving the contact structure to move in the direction in which the first fixing device points to the second fixing device, so as to push the box formed after the top frame is connected with the bottom frame.

[0019] Optionally, the material returning mechanism further comprises a guide structure, the guide structure is used to guide the contact structure in the direction in which the first fixing device points to the second fixing device.

[0020] Optionally, the guide structure comprises a linear bearing and a guide shaft which is slidably arranged in the linear bearing, one of the linear bearing and the guide shaft is arranged on the first support, and the other is arranged on the contact part.

[0021] Optionally, the tool further comprises an electrical controller, the electrical controller is electrically connected with the first fixing device, the second fixing device and the material returning mechanism.

[0022] Optionally, the electrical controller is located between the first fixing device and the second fixing device, and the tool further comprises a fourth support, the fourth support is located between the first fixing device and the second fixing device, the fourth support is fixedly connected with the second support of the second fixing device, and the electrical controller is fixed to the fourth support. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0024] Figure 1 A structural schematic diagram of a frame type box provided by the present application is shown in the figure;

[0025] Figure 2 A structural schematic diagram of a tool provided by some embodiments of the present application is shown in the figure;

[0026] Figure 3 A structural schematic diagram of a base in the tool shown in the figure is shown in the figure; Figure 2

[0027] A structural schematic diagram of a first fixing device in the tool shown in the figure is shown in the figure; Figure 4 Figure 2 A structural schematic diagram of the first fixing device shown in the figure is shown in the figure;

[0028] Figure 5 Figure 4 A structural schematic diagram of the first fixing device shown in the figure is shown in the figure;

[0029] Figure 6 A structural schematic diagram of the first fixing device shown in the figure is shown in the figure; Figure 4

[0030] A structural schematic diagram of the first fixing device shown in the figure is shown in the figure; Figure 7 Figure 4 A structural schematic diagram of the first fixing device shown in the figure is shown in the figure;

[0031] Figure 8 Figure 2 A structural schematic diagram of a second fixing device in the tool shown in the figure is shown in the figure;

[0032] Figure 9 A structural schematic diagram of the second fixing device shown in the figure is shown in the figure; Figure 8

[0033] A structural schematic diagram of the second fixing device shown in the figure is shown in the figure; Figure 10 Figure 8 A structural schematic diagram of the second fixing device shown in the figure is shown in the figure;

[0034] Figure 11 Figure 8 A structural schematic diagram of the second fixing device shown in the figure is shown in the figure;

[0035] Figure 12 A structural schematic diagram of the second fixing device shown in the figure is shown in the figure; Figure 8 ​​​​​​Structure schematic view of the second fixing device in another perspective view;

[0036] Figure 13 For Figure 8 Structure schematic view of the second fixing device in another perspective view;

[0037] Figure 14 For Figure 2 Structure schematic view of the material returning mechanism in the tool in a perspective view;

[0038] Figure 15 For Figure 14 Structure schematic view of the material returning mechanism in the tool in another perspective view.

[0039] Reference signs:

[0040] 100, box body; 101, top frame; 102, bottom frame; 103, connecting beam;

[0041] 10, tool; 1, base; 2, first fixing device; 3, second fixing device; 4, material returning mechanism; 5, electrical controller;

[0042] 11, bottom frame; 12, first movable support frame; 13, second movable support frame;

[0043] 21, first support; 01, first limiting assembly; 02, first clamping assembly;

[0044] 22, first limiting structure; 221, first bottom adjusting block; 222, first bottom support block; 223, second bottom adjusting block; 224, second bottom support block;

[0045] 23, first clamping structure; 231, first cylinder mounting plate; 232, first clamping cylinder; 233, second cylinder mounting plate; 234, second clamping cylinder;

[0046] 24, second limiting structure; 241, first positioning plate; 242, second positioning plate;

[0047] 25, second clamping structure; 251, third clamping cylinder; 252, third cylinder mounting plate; 253, fourth clamping cylinder; 254, fourth cylinder mounting plate;

[0048] 26, third limiting structure; 261, cylinder mounting seat; 262, height positioning block; 263, cylinder mounting seat; 264, height positioning block; 265, cylinder mounting seat; 266, height positioning block; 267, cylinder mounting seat; 268, height positioning block;

[0049] 27, third clamping structure; 271, rotary pressing cylinder; 272, height pressing block; 273, rotary pressing cylinder; 274, height pressing block; 275, rotary pressing cylinder; 276, height pressing block; 277, rotary pressing cylinder; 278, height pressing block;

[0050] 31, second support; 03, second limiting assembly; 04, second clamping assembly;

[0051] 32, fourth limiting structure; 33, fourth clamping structure; 34, fifth clamping structure; 35, fifth limiting structure; 37, sixth clamping structure;

[0052] 321, third bottom adjusting block; 322, first bottom positioning plate; 323, fourth bottom adjusting block; 324, second bottom positioning plate;

[0053] 331, clamping cylinder; 332, cylinder mounting plate; 333, clamping cylinder; 334, cylinder mounting plate;

[0054] 341, clamping cylinder; 342, dust cover; 343, L-shaped top frame fixing plate;

[0055] 351, height positioning block; 352, height positioning block; 353, height positioning block; 354, height positioning block;

[0056] 371, vertical pressing cylinder; 372, cylinder mounting plate; 373, vertical pressing cylinder; 374, cylinder mounting plate; 375, vertical pressing cylinder; 376, cylinder mounting plate; 377, vertical pressing cylinder; 378, cylinder mounting plate;

[0057] 36, third support;

[0058] 41, first material returning assembly; 42, second material returning assembly;

[0059] 05, driving structure; 06, contact structure;

[0060] 4107, left cylinder mounting plate; 4108, left material returning cylinder; 4207, right cylinder mounting plate; 4208, right material returning cylinder;

[0061] 4101, left discharging plate; 4102, left connecting plate; 4201, right discharging plate; 4202, right connecting plate;

[0062] 07, guide structure; 4103, upper guide shaft support; 4104, upper guide shaft; 4105, upper linear bearing; 4106, barrel-shaped dust cover; 4109, lower guide shaft support; 4110, lower guide shaft; 4111, lower linear bearing; 4112, barrel-shaped dust cover; 4203, upper guide shaft support; 4204, upper guide shaft; 4205, upper linear bearing; 4206, barrel-shaped dust cover; 4209, lower guide shaft support; 4210, lower guide shaft; 4211, lower linear bearing; 4212, barrel-shaped dust cover;

[0063] 6, fourth support. DETAILED DESCRIPTION

[0064] In the embodiments of the present application, the terms "first", "second", "third", "fourth", "fifth", and "sixth" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implying the number of the technical features indicated. Therefore, the features defined as "first", "second", "third", "fourth", "fifth", and "sixth" can explicitly or implicitly include one or more of the features.

[0065] In the embodiments of the present application, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the element defined by the statement "including a" does not exclude the presence of another identical element in the process, method, article or device including the element.

[0066] Please refer to Figure 1 , Figure 1 A structural schematic diagram of a frame type box is provided in the present application. The box 100 includes a top frame 101, a bottom frame 102, and a plurality of connecting beams 103 connected between the top frame and the bottom frame. The top frame and the bottom frame can be in the form of a plate, a net, a grid, etc. The present application is exemplarily described with the top frame and the bottom frame in the form of a plate.

[0067] During the processing of the box, the top frame and the bottom frame can be arranged opposite and spaced apart, and then a plurality of connecting beams are connected between the top frame and the bottom frame. Specifically, the top frame, the bottom frame and the connecting beams can be fixed by welding, or can be fixed by clamping, threaded connection, etc. The present application is exemplarily described with the top frame, the bottom frame and the connecting beams being fixed by welding.

[0068] In order to facilitate the processing of the frame type box, a tool capable of clamping and splicing can be used to cooperate with the connecting operation between the top frame and the bottom frame, so as to improve the processing efficiency of the box.

[0069] Please refer to Figure 2 , Figure 2 The structural schematic diagram of the tool 10 provided for some embodiments of the present application can be used for processing Figure 1 The box described above, of course, can also be used for processing frame-type boxes of other structural forms.

[0070] The tool 10 can include a base 1, a first fixing device 2, a second fixing device 3, a material returning mechanism 4, and an electrical controller 5.

[0071] It should be noted that Figure 2 The shapes, sizes, and arrangement positions of the partial structures of the tool 10 are not limited Figure 2 Meanwhile, the tool 10 can also not be provided with some of the partial structures in Figure 2 For example, the tool 10 can not be provided with the material returning mechanism 4 or the electrical controller 5 in Figure 2 In addition to the structures shown in Figure 2 , the tool 10 can also include other structures, which are not specifically limited by the present application.

[0072] The first fixing device 2 and the second fixing device 3 are arranged on the base 1. Specifically, the first fixing device 2 can be arranged on the left upper surface of the base 1, and the second fixing device 3 can be arranged on the right upper surface of the base 1. The first fixing device 2 is suitable for limiting and fixing the top frame at a first position, and the second fixing device 3 is suitable for limiting and fixing the bottom frame at a second position opposite to the first position, so as to connect a plurality of connecting beams between the top frame and the bottom frame to form a box. In this way, the top frame and the bottom frame are fixed at the opposite first position and second position by means of the first fixing device 2 and the second fixing device 3 respectively, which has high strength and better stability while ensuring accuracy. By means of the tool 10 cooperating with the processing operation, the processing efficiency of the box can be improved.

[0073] The material returning mechanism 4 is used to push the box formed after the top frame and the bottom frame are connected in the direction (i.e., the X-axis direction) in which the first fixing device 2 points to the second fixing device 3, so as to separate the box from the first fixing device 2 and the second fixing device 3. In this way, the unloading operation is realized, and after unloading, the box can be taken out in the Z-axis direction to complete the processing of the box. The material returning mechanism 4 is beneficial to improving the operation convenience.

[0074] The electrical controller 5 is electrically connected with the first fixing device 2, the second fixing device 3, and the material returning mechanism 4 respectively, so as to realize automatic control. In this way, the processing efficiency is improved.

[0075] The structures of the tool 10 will be introduced respectively as follows.

[0076] In some embodiments, please refer to Figure 3 ,Figure 3 for Figure 2 The schematic diagram of the base 1 in the tooling 10 shown illustrates that the base 1 may include a bottom frame 11, a first movable support frame 12, and a second movable support frame 13. The bottom frame 11 may be a frame with a two-horizontal and five-vertical structure welded from square tubing. The first movable support frame 12 and the second movable support frame 13 are for facilitating the movement and fixing of the welded fixing device. This structure is simple and facilitates the handling of the tooling.

[0077] In some embodiments, please refer to Figure 4 and Figure 5 , Figure 4 for Figure 2 A schematic diagram of the structure of the first fixing device 2 in the tooling 10 from one perspective. Figure 5 for Figure 4 The diagram shows the structure of the first fixing device 2 from another perspective. The first fixing device 2 includes a first bracket 21 and a first limiting component 01 and a first clamping component 02 disposed on the first bracket 21. The first bracket 21 can be a frame with a three-horizontal and three-vertical structure made of square tubes and can be disposed on the upper left side of the bottom frame 11.

[0078] The first limiting component 01 is adapted to limit the top frame to a first position, and the first clamping component 02 is adapted to cooperate with the first limiting component 01 to clamp and fix the top frame to the first position.

[0079] In this way, by using the first limiting component 01 to limit the top frame, the positional accuracy of the top frame can be guaranteed. By using the first clamping component 02 in conjunction with the first limiting component 01 to clamp and fix the top frame in the first position, the positional stability of the top frame can be guaranteed. At the same time, compared with the solution of clamping mechanisms on both sides, the structural complexity can be reduced and the cost can be reduced.

[0080] In some embodiments, please continue reading Figure 4 and Figure 5 The first limiting component 01 includes a first limiting structure 22. The number of first limiting structures 22 can be one or more. For example, there are two first limiting structures 22, which are respectively disposed at both ends of the upper left side surface of the bottom frame 11.

[0081] The first clamping assembly 02 includes a first clamping structure 23. The number of first clamping structures 23 can be one or more. For example, there are two first clamping structures 23, which are respectively disposed on the inner surfaces of the two ends of the top crossbeam of the first bracket 21.

[0082] The first limiting structure 22 and the first clamping structure 23 are located on opposite sides of the first position arranged in a first direction (i.e., the Z-axis direction), and the first direction is parallel to the surface of the first support 21 facing the second fixing device 3.

[0083] The first limiting structure 22 is arranged on the first support 21 and is adapted to limit the position of the top frame in the Z-axis direction. The first clamping structure 23 is capable of moving towards the first limiting structure 22 to clamp and fix the position of the top frame in the Z-axis direction in cooperation with the first limiting structure 22.

[0084] In this way, the position accuracy of the top frame can be ensured by limiting the position of the top frame in the Z-axis direction by means of the first limiting structure 22. The position stability of the top frame in the Z-axis direction can be ensured by clamping and fixing the position of the top frame in the Z-axis direction in cooperation with the first limiting structure 22 by means of the first clamping structure 23. At the same time, compared with the scheme of two-sided clamping mechanisms, the structural complexity can be reduced and the cost can be reduced.

[0085] In some embodiments, please continue to refer to Figure 4 and Figure 5 The first limiting assembly 01 further comprises a second limiting structure 24. The number of the second limiting structure 24 can be one or multiple. For example, the number of the second limiting structure 24 is two, and the two second limiting structures 24 are arranged in the middle of the right side longitudinal beam of the first support 21.

[0086] The first clamping assembly 02 comprises a second clamping structure 25. The number of the second clamping structure 25 can be one or multiple. For example, the number of the second clamping structure 25 is two, and the two second clamping structures 25 are arranged in the middle of the left side longitudinal beam of the first support 21 and opposite to the two second limiting structures 24.

[0087] The second limiting structure 24 and the second clamping structure 25 are located on opposite sides of the first position arranged in a second direction (i.e., the Y-axis direction). The second direction is parallel to the surface of the first support facing the second fixing device 3 and perpendicular to the Z-axis direction.

[0088] The second limiting structure 24 is arranged on the first support 21 and is adapted to limit the position of the top frame in the Y-axis direction. The second clamping structure 25 is capable of moving towards the second limiting structure 24 to clamp and fix the position of the top frame in the Y-axis direction in cooperation with the second limiting structure 24.

[0089] In this way, the position accuracy of the top frame can be ensured by limiting the position of the top frame in the Y-axis direction by means of the second limiting structure 24. The position stability of the top frame in the Y-axis direction can be ensured by clamping and fixing the position of the top frame in the Y-axis direction in cooperation with the second limiting structure 24 by means of the second clamping structure 25. At the same time, compared with the scheme of two-sided clamping mechanisms, the structural complexity can be reduced and the cost can be reduced.

[0090] In some embodiments, please refer to Figure 4 and Figure 5 , the first limiting assembly 01 further comprises a third limiting structure 26. The number of the third limiting structure 26 can be one or multiple. For example, the number of the third limiting structure 26 is four, and the four third limiting structures 26 are respectively arranged on the inner surfaces of the two ends of the top beam and the two ends of the bottom beam of the first support 21.

[0091] The first clamping assembly comprises a third clamping structure 27. The number of the third clamping structure 27 can be one or multiple. For example, the number of the third clamping structure 27 is four, and the four third clamping structures 27 are respectively opposite to the four third limiting structures 26.

[0092] The third limiting structure 26 and the third clamping structure 27 are located on opposite sides of the first position arranged in the third direction (i.e. the X-axis direction). The third direction is perpendicular to the first direction and the second direction.

[0093] The third limiting structure 26 is arranged on the first support 21 and is adapted to limit the position of the top frame in the X-axis direction. The third clamping structure 27 can move towards the third limiting structure 26 to cooperate with the third limiting structure 26 to clamp and fix the position of the top frame in the X-axis direction.

[0094] In this way, by means of the third limiting structure 26 limiting the position of the top frame in the Z-axis direction, the position accuracy of the top frame can be ensured. By means of the third clamping structure 27 cooperating with the third limiting structure 26 to clamp and fix the position of the top frame in the Z-axis direction, the position stability of the top frame in the Z-axis direction can be ensured. At the same time, compared with the scheme of two-sided clamping mechanisms, the structural complexity can be reduced and the cost can be reduced.

[0095] The working process of the first fixing device 2 is as follows: before connecting the top frame and the bottom frame, first, the top frame is placed on the first limiting structure 22, then the horizontal and vertical directions of the top frame are positioned and clamped by the first clamping structure 23 and the second clamping structure 25, and then the third clamping structure 27 is used to complete the pressing work of the top frame. Through the above three processes, the positioning and clamping of the top frame are completed, and the repeated positioning accuracy of the top frame is ensured, so as to facilitate the subsequent connection operation of the top frame and the bottom frame.

[0096] The first limiting structure 22, the first clamping structure 23, the second limiting structure 24, the second clamping structure 25, the third limiting structure 26 and the third clamping structure 27 will be introduced in detail below.

[0097] In some embodiments, please refer to Figure 6 and Figure 7 , Figure 6For Figure 4 the structure of the first fixing device 2 in another perspective view, Figure 7 For Figure 4 the structure of the first fixing device 2 in another perspective view. The two first limiting structures 22 can include a first bottom adjusting block 221, a first bottom supporting block 222, a second bottom adjusting block 223 and a second bottom supporting block 224. The first bottom supporting block 222 and the second bottom supporting block 224 are respectively arranged at the two ends of the upper surface of the left side of the bottom frame 11. The first bottom adjusting block 221 and the second bottom adjusting block 223 are respectively arranged on the first bottom supporting block 222 and the second bottom supporting block 224, and a gasket is arranged between the bottom adjusting block and the bottom supporting block, which is used to adjust the height of the first bottom adjusting block 221 and the second bottom adjusting block 223, so as to ensure that the upper surfaces of the two are at the same horizontal height. This structure is simple and convenient to install.

[0098] In some embodiments, please continue to refer to Figure 6 and Figure 7 The two first clamping structures 23 can include a first cylinder mounting plate 231, a first clamping cylinder 232, a second cylinder mounting plate 233 and a second clamping cylinder 234. The first cylinder mounting plate 231 and the second cylinder mounting plate 233 are respectively arranged on the inner surfaces of the two ends of the top beam of the first support 21, and the first clamping cylinder 232 and the second clamping cylinder 234 are respectively arranged on the outer side surfaces of the first cylinder mounting plate 231 and the second cylinder mounting plate 233. This structure is simple and convenient to install.

[0099] In some embodiments, please continue to refer to Figure 6 and Figure 7 The two second limiting structures 24 include a first positioning plate 241 and a second positioning plate 242. The first positioning plate 241 and the second positioning plate 242 are arranged in the middle of the right side of the longitudinal beam of the first support 21. The two second clamping structures 25 include a third clamping cylinder 251, a third cylinder mounting plate 252, a fourth clamping cylinder 253 and a fourth cylinder mounting plate 254. The third cylinder mounting plate 252 and the fourth cylinder mounting plate 254 are arranged in the middle of the left side of the longitudinal beam of the first support 21, and the third clamping cylinder 251 and the fourth clamping cylinder 253 are respectively arranged on the third cylinder mounting plate 252 and the fourth cylinder mounting plate 254. This structure is simple and convenient to operate.

[0100] In some embodiments, please continue to refer to Figure 6 and Figure 7The four third limiting structures 26 include a cylinder mounting seat 261, a height positioning block 262, a cylinder mounting seat 263, a height positioning block 264, a cylinder mounting seat 265, a height positioning block 266, a cylinder mounting seat 267, and a height positioning block 268. Cylinder mounting seats 261, 263, 265, and 267 are respectively disposed on the inner surfaces of the top and bottom ends of the top crossbeam and the bottom crossbeam of the first bracket 21. Height positioning blocks 262, 264, 266, and 268 are respectively mounted on cylinder mounting seats 261, 263, 265, and 267. Shims are provided between each height positioning block and the cylinder mounting seat to adjust the height of the blocks, ensuring that the upper surfaces of all four blocks are in the same plane and guaranteeing the flatness of the top frame. This ensures the positioning accuracy of the top frame.

[0101] Please continue reading. Figure 6 and Figure 7 The four third clamping structures 27 include a rotary clamping cylinder 271, a height clamping block 272, a rotary clamping cylinder 273, a height clamping block 274, a rotary clamping cylinder 275, a height clamping block 276, a rotary clamping cylinder 277, and a height clamping block 278. The rotary clamping cylinders 271, 273, 275, and 277 are respectively disposed on the outer surfaces of cylinder mounting seats 261, 263, 265, and 267. Height clamping blocks 272, 274, 276, and 278 are respectively installed on the top pressure rod surfaces of rotary clamping cylinders 271, 273, 275, and 277. Shims are provided between the height clamping blocks and the pressure rods of the rotary clamping cylinders to adjust the height of the lower surfaces of the height clamping blocks 272, 274, 276, and 278. This ensures that the lower surfaces of the four height clamping blocks are in the same plane during the clamping process of the top frame, so that the four third clamping structures 27 have the same clamping force. This ensures the flatness of the top frame and reduces the deformation of the top frame during the connection with the bottom frame to form the box body.

[0102] In some embodiments, please refer to Figure 8 and Figure 9 , Figure 8 for Figure 2 The diagram shows the structure of the second fixing device 3 in the tooling 10 from one perspective. Figure 9 for Figure 8 The diagram shows the structure of the second fixing device 3 from another perspective.

[0103] The second fixing device 3 comprises a second support 31, and a second limiting assembly 03 and a second clamping assembly 04 arranged on the second support 31. The second support 31 can be a frame with a three-cross and three-longitudinal structure welded by square tubes, and the second support 31 can be arranged on the upper surface of the right side of the bottom frame 11.

[0104] The second limiting assembly 03 is adapted to limit the bottom frame at the second position, and the second clamping assembly 04 is adapted to cooperate with the second limiting assembly 03 to clamp and fix the bottom frame at the second position.

[0105] In this way, the position accuracy of the bottom frame can be ensured by limiting the bottom frame by the second limiting assembly 03, and the position stability of the bottom frame can be ensured by clamping and fixing the bottom frame at the second position by the cooperation of the second clamping assembly 04 and the second limiting assembly 03, while compared with the scheme of the two-side clamping mechanism, the structural complexity can be reduced and the cost can be reduced.

[0106] In some embodiments, please continue to refer to Figure 8 and Figure 9 The second limiting assembly 03 comprises a fourth limiting structure 32. The number of the fourth limiting structure 32 can be one or multiple. For example, the number of the fourth limiting structure 32 is two, and the two fourth limiting structures 32 are arranged on the bottom of the right end surface of the second support 31.

[0107] The second clamping assembly 04 comprises a fourth clamping structure 33. The number of the fourth clamping structure 33 can be one or multiple. For example, the number of the fourth clamping structure 33 is two, and the two fourth clamping structures 33 are arranged on the top of the right end surface of the second support 31.

[0108] The fourth limiting structure 32 and the fourth clamping structure 33 are located on opposite sides of the second position arranged in the fourth direction (i.e. the Z-axis direction), and the fourth direction is parallel to the surface of the second support 31 facing away from the first fixing device 2.

[0109] The fourth limiting structure 32 is arranged on the second support 31 and is adapted to limit the position of the bottom frame in the Z-axis direction, and the fourth clamping structure 33 can move towards the fourth limiting structure 32 to cooperate with the fourth limiting structure 32 to clamp and fix the position of the bottom frame in the Z-axis direction.

[0110] In this way, the position accuracy of the bottom frame can be ensured by limiting the bottom frame by the fourth limiting structure 32 in the Z-axis direction, and the position stability of the bottom frame in the Z-axis direction can be ensured by clamping and fixing the position of the bottom frame in the Z-axis direction by the cooperation of the fourth clamping structure 33 and the fourth limiting structure 32, while compared with the scheme of the two-side clamping mechanism, the structural complexity can be reduced and the cost can be reduced.

[0111] It should be noted that the above is an example of the fourth direction being consistent with the first direction. Of course, the fourth direction can also be inconsistent with the first direction, which is not limited in the present application.

[0112] In some embodiments, please continue to refer to Figure 8 and Figure 9 The second limiting assembly 03 can further include two fifth clamping structures 34. The two fifth clamping structures 34 are respectively symmetrically arranged on both sides of the middle part of the right end surface of the second support 31.

[0113] The two fifth clamping structures 34 are located on opposite sides along the fifth direction (i.e. the Y-axis direction) at the second position. The fifth direction is parallel to the surface of the second support 31 facing away from the first fixing device 2, and is perpendicular to the Z-axis direction.

[0114] The two fifth clamping structures 34 can move towards each other to clamp and fix the bottom frame in the Y-axis direction.

[0115] In this way, by moving the two fifth clamping structures 34 towards each other to clamp the bottom frame, the position accuracy of the bottom frame can be ensured. At the same time, after the two fifth clamping structures 34 clamp the bottom frame and the top frame and the bottom frame form a box, the two fifth clamping structures 34 can move away from each other to release the bottom frame, thereby facilitating the removal of the box.

[0116] It should be noted that the above is an example of the fifth direction being consistent with the second direction. Of course, the fifth direction can also be inconsistent with the second direction, which is not limited in the present application.

[0117] In some embodiments, please continue to refer to Figure 8 and Figure 9 The second limiting assembly 03 further includes a fifth limiting structure 35. The number of fifth limiting structures 35 can be one or more. For example, the number of fifth limiting structures 35 is four, and the four fifth limiting structures 35 are respectively arranged on both sides of the top and bottom of the right end surface of the second support 31.

[0118] The second clamping assembly includes a sixth clamping structure 37. The number of sixth clamping structures 37 can be one or more, for example, the number of sixth clamping structures 37 is four, and the four sixth clamping structures 37 are respectively opposite to the four fifth limiting structures 35.

[0119] The fifth limiting structure 35 and the sixth clamping structure 37 are located on opposite sides along the sixth direction (i.e. the X-axis direction) at the second position. The sixth direction is perpendicular to the fourth direction, and the sixth direction is also perpendicular to the fifth direction.

[0120] The fifth limiting structure 35 is arranged on the second support 31 and is adapted to limit the position of the bottom frame in the X-axis direction. The sixth clamping structure 37 is capable of moving towards the fifth limiting structure 35 to clamp and fix the position of the bottom frame in the X-axis direction in cooperation with the fifth limiting structure 35.

[0121] In this way, the position accuracy of the bottom frame can be ensured by limiting the position of the bottom frame in the Z-axis direction by means of the fifth limiting structure 35. The position stability of the bottom frame in the Z-axis direction can be ensured by clamping and fixing the position of the bottom frame in the Z-axis direction by means of the sixth clamping structure 37 in cooperation with the fifth limiting structure 35. In addition, compared with the scheme of two-sided clamping mechanisms, the structural complexity can be reduced and the cost can be reduced.

[0122] It should be noted that the above is an example of the sixth direction being consistent with the third direction. Of course, the sixth direction and the third direction can also be inconsistent, and the present application does not make a specific limitation in this regard.

[0123] The working process of the second fixing device 3 is as follows: before connecting the bottom frame and the bottom frame, first, the bottom frame is placed on the fourth limiting structure 32, and then the transverse and longitudinal positioning and clamping of the bottom frame are completed by the fourth clamping structure 33 and the fifth clamping structure 34. Next, the pressing work of the bottom frame is completed by the sixth clamping structure 37. Through the above three processes, the positioning and clamping of the bottom frame are completed, and the repeat positioning accuracy of the bottom frame is ensured, so as to facilitate the subsequent connection operation of the bottom frame and the bottom frame.

[0124] The fourth limiting structure 32, the fourth clamping structure 33, the fifth clamping structure 34, the fifth limiting structure 35 and the sixth clamping structure 37 will be introduced in detail below.

[0125] In some embodiments, please refer to Figures 10-13 , Figure 10 Fig. 6 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 8 Fig. 7 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 11 Fig. 8 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 8 Fig. 9 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 12 Fig. 10 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 8 Fig. 11 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 13 Fig. 12 is a structural schematic view of the second fixing device 3 in another perspective view, Figure 8The structure diagram of the second fixing device 3 in another view. Two fourth limiting structures 32 include a third bottom adjusting block 321, a first bottom positioning plate 322, a fourth bottom adjusting block 323 and a second bottom positioning plate 324. The first bottom positioning plate 322 and the second bottom positioning plate 324 are arranged at the bottom of the right end surface of the second support 31 respectively, and the third bottom adjusting block 321 and the fourth bottom adjusting block 323 are arranged on the upper surfaces of the first bottom positioning plate 322 and the second bottom positioning plate 324 respectively. Spacers are arranged between the bottom adjusting blocks and the bottom positioning plates for adjusting the heights of the third bottom adjusting block 321 and the fourth bottom adjusting block 323 to ensure that the upper surfaces thereof are at the same horizontal position. This structure is simple and convenient to install.

[0126] In some embodiments, please refer to Figures 10-13 Two fourth clamping structures 33 include clamping cylinders 331, cylinder mounting plates 332, clamping cylinders 333 and cylinder mounting plates 334. The cylinder mounting plates 332 and 334 are arranged at the top of the right end surface of the second support 31 respectively, and the clamping cylinders 331 and 333 are arranged on the upper end surfaces of the cylinder mounting plates 332 and 334 respectively. This structure is simple and convenient to install.

[0127] In some embodiments, please refer to Figures 10-13 Two fifth clamping structures 34 include clamping cylinders 341, dust covers 342 and L-shaped top frame fixing plates 343. The L-shaped top frame fixing plate 343 is arranged on the inner surface of the middle part of the right end of the second support 31, the guide rod of the clamping cylinder 341 is connected with the inner side of the L-shaped top frame fixing plate 343 and drives the L-shaped top frame fixing plate 343 to move horizontally, and the dust cover 342 is arranged outside the clamping cylinder 341. This structure is simple and convenient to operate.

[0128] In some embodiments, please refer to Figures 10-13The four fifth limiting structures 35 include a height positioning block 351, a height positioning block 352, a height positioning block 353, and a height positioning block 354, and the four height positioning blocks are symmetrically arranged at the top and bottom of the right end face of the second support 31. The four sixth clamping structures 37 include a vertical pressing cylinder 371, a cylinder mounting plate 372, a vertical pressing cylinder 373, a cylinder mounting plate 374, a vertical pressing cylinder 375, a cylinder mounting plate 376, a vertical pressing cylinder 377, and a cylinder mounting plate 378. The cylinder mounting plates 372, 374, 376, and 378 are symmetrically arranged at the top and bottom of the bottom frame pressing support frame 36, and the vertical pressing cylinders 371, 373, 375, and 377 are arranged on the cylinder mounting plates 372, 374, 376, and 378. In this way, with the cooperation of the four sixth clamping structures 37 and the four fifth limiting structures 35, the clamping stability of the bottom frame can be ensured. Of course, in other embodiments, the number of sixth clamping structures 37 and fifth limiting structures 35 can also be other numbers, which are not limited in the application.

[0129] In some embodiments, referring to Figures 8-13 , the tool 10 further includes a third support 36. The third support 36 is located on the side of the second support 31 facing away from the first fixing device 2, and a plurality of sixth clamping structures 37 are arranged on the third support 36. In this way, the integration of the plurality of sixth clamping structures 37 is facilitated, which helps to reduce the assembly difficulty.

[0130] In some embodiments, the first position is located on the side of the first support 21 facing the second fixing device 3, and the second position is located on the side of the second support 31 facing away from the first fixing device 2. In this way, it is convenient to push the box formed by connecting the top frame and the bottom frame in the direction of the first fixing device 2 pointing to the second fixing device 3, so as to facilitate the separation of the box and the tool.

[0131] In some embodiments, referring to Figure 14 and Figure 15 , Figure 14 is a structural schematic view of the material returning mechanism 4 in the tool 10 shown in Figure 2 from a certain perspective, Figure 15 is a structural schematic view of the material returning mechanism 4 in the tool 10 shown in Figure 14 from another perspective.

[0132] The material returning mechanism 4 can include at least one material returning assembly. In some embodiments, the at least one material returning assembly can include a first material returning assembly 41 and a second material returning assembly 42. The first material returning assembly 41 and the second material returning assembly 42 have the same structural effect and are symmetrically arranged on both sides of the middle longitudinal beam of the first support 21. After the cabinet frame is welded, the frame is pushed to a discharging position by the material returning mechanism, which facilitates workers to unload the material.

[0133] In some embodiments, the material returning mechanism 4 can include a driving structure 05 and a contact structure 06. The driving structure 05 is fixed to the first support 21, and the contact structure 06 is connected to the driving structure 05. The driving structure 05 can drive the contact structure 06 to move in the direction in which the first fixing device 2 points to the second fixing device 3 (i.e., the X-axis direction), so as to push the cabinet formed after the top frame and the bottom frame are connected, and separate the cabinet from the first fixing device 2 and the second fixing device 3. This structure is simple and easy to implement.

[0134] In some embodiments, please refer to Figure 15 , the driving structure 05 can include a left cylinder mounting plate 4107, a left material returning cylinder 4108 in the first material returning assembly 41, and a right cylinder mounting plate 4207, a right material returning cylinder 4208 in the second material returning assembly 42. The left cylinder mounting plate 4107 and the right cylinder mounting plate 4207 are fixed to the first support 21, and the left material returning cylinder 4108 and the right material returning cylinder 4208 are arranged on the left cylinder mounting plate 4107 and the right cylinder mounting plate 4207, respectively. The contact structure 06 can include a left discharging plate 4101, a left connecting plate 4102 in the first material returning assembly 41, and a right discharging plate 4201, a right connecting plate 4202 in the second material returning assembly 42. The left connecting plate 4102 and the right connecting plate 4202 are connected to the left cylinder mounting plate 4107 and the right cylinder mounting plate 4207, respectively. The left discharging plate 4101 and the right discharging plate 4201 are connected to the left connecting plate 4102 and the right connecting plate 4202, respectively, so as to increase the contact area and improve the material returning stability.

[0135] In some embodiments, please refer to Figure 15 , the material returning mechanism 4 further includes a guide structure 07 for guiding the contact structure 06 in the direction in which the first fixing device 2 points to the second fixing device 3. In this way, the material returning accuracy and stability can be ensured.

[0136] In some embodiments, please continue to refer to Figure 15The guide structure 07 can include the upper guide shaft support 4103, the upper guide shaft 4104, the upper linear bearing 4105, the barrel-shaped dust cover 4106, the lower guide shaft support 4109, the lower guide shaft 4110, the lower linear bearing 4111, the barrel-shaped dust cover 4112 in the first material returning assembly 41, and the upper guide shaft support 4203, the upper guide shaft 4204, the upper linear bearing 4205, the barrel-shaped dust cover 4206, the lower guide shaft support 4209, the lower guide shaft 4210, the lower linear bearing 4211, the barrel-shaped dust cover 4212 in the second material returning assembly 42. The upper guide shaft support 4103 and the lower guide shaft support 4109 are symmetrically arranged at the top and bottom of the left connecting plate 4102, respectively, and are arranged on the same side as the left material returning cylinder 4108. The right ends of the upper guide shaft 4104 and the lower guide shaft 4110 are arranged in the upper guide shaft support 4103 and the lower guide shaft support 4109, respectively, and penetrate the upper linear bearing 4105 and the lower linear bearing 4111. The upper linear bearing 4105 and the lower linear bearing 4111 are symmetrically arranged on the outer surface of the middle beam of the first support 21, respectively. The barrel-shaped dust cover 4106 and the barrel-shaped dust cover 4112 are arranged on the left end face of the upper linear bearing 4105 and the lower linear bearing 4111, respectively. The structure and function of the second material returning assembly 42 are the same as those of the first material returning assembly 41. Here, the part of the guide structure 07 located in the second material returning assembly 42 will not be described. This structure is simple and easy to implement.

[0137] Please refer back to Figure 2 The electrical controller 5 is located between the first fixing device 2 and the second fixing device 3, and the tool further includes a fourth support 6 located between the first fixing device 2 and the second fixing device 3, and the fourth support 5 is fixedly connected with the second support 31. The electrical controller 5 is fixed to the fourth support 6. In this way, the gap between the multiple connecting beams of the box body can avoid the electrical controller 5, so as to facilitate the box body to be taken out, and at the same time, the electrical connection path of the electrical controller 5 and the first fixing device 2, the second fixing device 3 and the material returning mechanism 4 can be shortened, and the volume of the tool can be reduced.

[0138] In the description of the embodiments of the present application, specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.

[0139] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical scope disclosed in the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A tooling (10) for machining a box body (100), characterized in that, The housing (100) includes a top frame (101) and a bottom frame (102). The tooling (10) includes a base (1) and a first fixing device (2) and a second fixing device (3) disposed on the base (1). The first fixing device (2) is adapted to restrict and fix the top frame (101) in a first position, and the second fixing device (3) is adapted to restrict and fix the bottom frame (102) in a second position opposite to the first position, so that the top frame and the bottom frame are connected to form a box.

2. The tooling (10) according to claim 1, characterized in that, The first fixing device (2) includes a first bracket (21) and a first limiting component (01) and a first clamping component (02) disposed on the first bracket (21); The first limiting component (01) is adapted to limit the top frame (101) at the first position, and the first clamping component (02) is adapted to cooperate with the first limiting component (01) to clamp and fix the top frame (101) at the first position.

3. The tooling (10) according to claim 2, characterized in that, The first limiting component (01) includes a first limiting structure (22), and the first clamping component (02) includes a first clamping structure (23); the first limiting structure (22) and the first clamping structure (23) are located on opposite sides of the first position along a first direction (Z), and the first direction (Z) is parallel to the surface of the first bracket (21) facing the second fixing device (3); The first limiting structure (22) is disposed on the first bracket (21) and is adapted to limit the position of the top frame (101) in the first direction (Z). The first clamping structure (23) can move toward the first limiting structure (22) to cooperate with the first limiting structure (22) to clamp and fix the top frame (101) in the first direction (Z).

4. The tooling (10) according to claim 3, characterized in that, The first limiting component (01) further includes a second limiting structure (24), and the first clamping component (02) includes a second clamping structure (25); the second limiting structure (24) and the second clamping structure (25) are located on opposite sides of the first position along the second direction (Y); the second direction (Y) is parallel to the surface of the first bracket (21) facing the second fixing device (3) and perpendicular to the first direction (Z); The second limiting structure (24) is disposed on the first bracket (21) and is adapted to limit the position of the top frame (101) in the second direction (Y). The second clamping structure (25) is capable of moving toward the second limiting structure (24) to cooperate with the second limiting structure (24) to clamp and fix the position of the top frame (101) in the second direction (Y).

5. The tooling (10) according to claim 4, characterized in that, The first limiting component (01) further includes a third limiting structure (26), and the first clamping component (02) includes a third clamping structure (27); the third limiting structure (26) and the third clamping structure (27) are located on opposite sides of the first position along a third direction (X); the third direction (X) is perpendicular to the first direction (Z) and to the second direction (Y); The third limiting structure (26) is disposed on the first bracket (21) and is adapted to limit the position of the top frame (101) in the third direction (X). The third clamping structure (27) can move toward the third limiting structure (26) to cooperate with the third limiting structure (26) to clamp and fix the top frame (101) in the third direction (X).

6. The tooling (10) according to claim 2, characterized in that, The second fixing device (3) includes a second bracket (31) and a second limiting component (03) and a second clamping component (04) disposed on the second bracket (31); The second limiting component (03) is adapted to limit the bottom frame (102) in the second position, and the second clamping component (04) is adapted to cooperate with the second limiting component (03) to clamp and fix the bottom frame (102) in the second position.

7. The tooling (10) according to claim 6, characterized in that, The second limiting component (03) includes a fourth limiting structure (32), and the second clamping component (04) includes a fourth clamping structure (33); the fourth limiting structure (32) and the fourth clamping structure (33) are located on opposite sides of the second position along a fourth direction; the fourth direction is parallel to the surface of the second bracket (31) facing away from the first fixing device (2); The fourth limiting structure (32) is disposed on the second bracket (31) and is adapted to limit the position of the bottom frame (102) in the fourth direction. The fourth clamping structure (33) can move toward the fourth limiting structure (32) to cooperate with the fourth limiting structure (32) to clamp and fix the position of the bottom frame (102) in the fourth direction.

8. The tooling (10) according to claim 7, characterized in that, The second clamping assembly (04) includes two fifth clamping structures (34); the two fifth clamping structures (34) are located on opposite sides of the second position along a fifth direction; the fifth direction is parallel to the surface of the second bracket (31) facing away from the first fixing device (2) and perpendicular to the fourth direction; The two fifth clamping structures (34) can move toward each other to clamp and fix the bottom frame (102) in the fifth direction.

9. The tooling (10) according to claim 8, characterized in that, The second limiting component (03) further includes a fifth limiting structure (35), and the second clamping component (04) includes a sixth clamping structure (37); the fifth limiting structure (35) and the sixth clamping structure (37) are located on opposite sides of the second position along the sixth direction; the sixth direction is perpendicular to the fourth direction and to the fifth direction. The fifth limiting structure (35) is fixed to the second bracket (31) and is adapted to limit the position of the bottom frame (102) in the sixth direction. The sixth clamping structure (37) can move toward the fifth limiting structure (35) to cooperate with the fifth limiting structure (35) to clamp and fix the position of the bottom frame (102) in the sixth direction.

10. The tooling (10) according to claim 9, characterized in that, The number of the fifth limiting structure (35) is multiple, and the number of the sixth clamping structure (37) is multiple, with the multiple sixth clamping structures (37) respectively arranged opposite to the multiple fifth limiting structures (35).

11. The tooling (10) according to claim 10, characterized in that, It also includes a third bracket (36), which is located on the side of the second bracket (31) opposite to the first fixing device (2), and a plurality of the sixth clamping structures (37) are provided on the third bracket (36).

12. The tooling (10) according to claim 6, characterized in that, The first position is located on the side of the first bracket (21) facing the second fixing device (3), and the second position is located on the side of the second bracket (31) facing away from the first fixing device (2).

13. The tooling (10) according to claim 12, characterized in that, It also includes a material ejection mechanism (4), which is used to push the box (100) formed after the top frame (101) and the bottom frame (102) are connected in the direction from the first fixing device (2) to the second fixing device (3), so that the box (100) is separated from the first fixing device (2) and the second fixing device (3).

14. The tooling (10) according to claim 13, characterized in that, The unloading mechanism (4) includes a drive structure (05) and a contact structure (06). The drive structure (05) is fixed to the first bracket (21). The contact structure (06) is connected to the drive structure (05). The drive structure (05) can drive the contact structure (06) to move in the direction from the first fixing device (2) to the second fixing device (3) to push the box (100) formed after the top frame (101) and the bottom frame (102) are connected.

15. The tooling (10) according to claim 14, characterized in that, The material ejection mechanism (4) further includes a guide structure (07) for guiding the contact structure (06) in the direction from the first fixing device (2) to the second fixing device (3).

16. The tooling (10) according to claim 13, characterized in that, Also includes: An electrical controller (5) is electrically connected to the first fixing device (2), the second fixing device (3), and the unloading mechanism (4).

17. The tooling (10) according to claim 16, characterized in that, The electrical controller (5) is located between the first fixing device (2) and the second fixing device (3), and the tooling (10) further includes a fourth bracket (6), which is located between the first fixing device (2) and the second fixing device (3), and is fixedly connected to the second bracket (31) of the second fixing device (3). The electrical controller (5) is fixed to the fourth bracket (6).