Shaping and riveting device for battery cover plate assembly
By designing a shaping and riveting device for battery cover assembly that integrates shaping and riveting, the production cycle extension problem caused by riveting and shaping separation in the prior art is solved, and a more efficient processing process is achieved.
Patent Information
- Application Number
- CN202420854039.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-24
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-04-24
AI Technical Summary
During the processing of existing battery cover assembly, riveting and shaping are two separate stations, resulting in extended production cycle and inefficient efficiency.
A battery cover assembly shaping and riveting device is designed to integrate shaping and riveting. Through the cooperation of the shaping floating tooling and riveting mechanism, the product shaping is realized during the riveting process.
The processing cycle is shortened, the shaping and riveting efficiency is improved, the process and equipment investment is reduced, and the production needs are met.
Smart Images

Figure CN222919461U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of battery cover plate processing, and particularly relates to a shaping and riveting device for a battery cover plate assembly. Background Technique
[0002] During the processing of the battery cover plate assembly, it is necessary to first assemble each component. After assembly, it is necessary to perform riveting, shaping, welding, quality inspection, etc. on it. The processes are numerous, the production line is long, and the floor area is large. In the existing production lines, riveting and shaping are mostly two separate and independent workstations. After riveting, the battery cover plate assembly is then transferred to the shaping workstation for shaping, which not only increases the transfer time, but also increases the production cycle of the battery cover plate assembly by completing it in two steps. Therefore, the existing riveting equipment still needs to be improved. Content of the Utility Model
[0003] Purpose of the utility model: In order to overcome the above deficiencies, the purpose of the utility model is to provide a shaping and riveting device for a battery cover plate assembly. By improving its mechanism, shaping and riveting are integrated into one, enabling the product to be shaped during the riveting process, shortening the processing cycle, and improving the shaping and riveting efficiency.
[0004] Technical solution: In order to achieve the above purpose, the utility model provides a shaping and riveting device for a battery cover plate assembly, including: a set of shaping support mechanisms, a set of second support columns, at least one shaping floating tooling, at least one shaping upper die assembly, and a riveting mechanism. The shaping support mechanisms are fixed on the workbench. The second support columns are arranged outside the shaping support mechanisms. A set of shaping conveying modules are arranged between the shaping support mechanisms. A riveting mounting plate is arranged on the second support columns. The top of the shaping floating tooling is arranged above the shaping support mechanisms, and the lower part is slidably connected to the shaping conveying modules;
[0005] The shaping upper die assembly is installed on the riveting mechanism. The riveting mechanism is installed on the riveting mounting plate, and the shaping upper die assembly cooperates with the shaping floating tooling. The shaping and riveting device for a battery cover plate assembly of the utility model integrates shaping and riveting by improving its mechanism, enables the product to be shaped during the riveting process, shortens the processing cycle, improves the shaping and riveting efficiency, reduces the processes in the processing of the battery cover plate assembly, reduces the investment in equipment and the floor area of the production line, and better meets the production needs.
[0006] Further, the riveting mechanism includes at least one riveting plate and at least one set of riveting driving mechanisms. The riveting plate is arranged below the riveting mounting plate and is connected to the riveting mounting plate through a set of guiding columns. The riveting driving mechanisms are installed above the riveting mounting plate, and their output ends are connected to the riveting plate. The shaping upper die assembly is arranged below the riveting plate.
[0007] Furthermore, the shaping floating tooling includes a tooling support frame, a floating plate, a floating mounting plate, and at least one shaping lower fixture. The bottom of the tooling support frame is slidably connected to the shaping conveying module. A set of vertical slide rails is provided on the vertical support frame of the tooling support frame. The floating plate is slidably connected to the vertical slide rails through a set of sliding blocks, and the lower part of the floating plate is pin-connected to the bottom plate of the tooling support frame through a set of springs. The floating mounting plate is arranged on the top of the floating plate, and the shaping lower fixture is arranged on the floating mounting plate.
[0008] Preferably, the shaping lower fixture includes a fixture bottom plate, a lower shaping adjustment block, and a set of bearing edge mechanisms. A set of chutes is provided on the fixture bottom plate. The lower shaping adjustment block is arranged on the fixture bottom plate and is connected to the fixture bottom plate through a T-shaped bolt. The lower part of the T-shaped bolt is arranged in the chute, and the bearing edge mechanisms are arranged circumferentially on the fixture bottom plate.
[0009] Further preferably, the shaping upper die assembly includes an upper shaping plate and a set of upper shaping adjustment blocks. A shaping buffer block is arranged above the upper shaping plate. The upper shaping plate and the shaping buffer block are connected to the riveting pressure plate through bolts. The upper shaping adjustment blocks are arranged below the upper shaping plate, and the upper shaping adjustment blocks cooperate with the lower shaping adjustment blocks.
[0010] In addition, both the upper shaping adjustment block and the lower shaping adjustment block include a shaping adjustment block body. Shaping convex blocks are arranged at both ends of the shaping adjustment block body, and arc-shaped grooves are arranged on the inner walls of the shaping convex blocks.
[0011] Furthermore, a set of L-shaped auxiliary support frames are arranged on both sides of the floating plate, which can further improve the stability of the floating mounting plate and the overall structural strength.
[0012] From the above technical solutions, it can be seen that the present utility model has the following beneficial effects:
[0013] 1. For the shaping and riveting device of a battery cover plate assembly described in the present utility model, by improving its mechanism, shaping and riveting are integrated into one. During the riveting process, the shaping of the product can be completed, the processing cycle is shortened, the shaping and riveting efficiency is improved, the processes in the processing of the battery cover plate assembly are reduced, the investment in equipment and the floor area of the production line are reduced, and it can better meet the production needs.
[0014] 2. In the shaping and riveting device, through the mutual cooperation of the upper shaping adjustment block in the shaping floating tooling and the lower shaping adjustment block in the shaping upper die assembly, multi-point shaping of the product can be achieved simultaneously during the riveting process, effectively improving the flatness of the product. Description of the Drawings
[0015] Figure 1Schematic structural diagram of the shaping and riveting device for the battery cover plate assembly of the present utility model;
[0016] Figure 2 Schematic structural diagram of the shaping floating tooling of the present utility model;
[0017] Figure 3 Top view of the shaping floating tooling in the present utility model;
[0018] Figure 4 Installation schematic diagram of the lower shaping adjustment block of the present utility model. Specific embodiments
[0019] The present utility model will be further illustrated below in conjunction with the accompanying drawings and specific embodiments. Embodiment
[0020] As Figures 1 to 4 shown, a shaping and riveting device for a battery cover plate assembly includes: a set of shaping support mechanisms 21, a set of second support columns 22, at least one shaping floating tooling 23, at least one shaping upper die assembly 24, and a riveting mechanism 25. The shaping support mechanisms 21 are fixed on the workbench. The second support columns 22 are arranged outside the shaping support mechanisms 21. A set of shaping conveying modules 26 are arranged between the shaping support mechanisms 21. A riveting mounting plate 27 is arranged on the second support columns 22. The top of the shaping floating tooling 23 is arranged above the shaping support mechanisms 21, and the lower part is slidably connected with the shaping conveying modules 26;
[0021] The shaping upper die assembly 24 is installed on the riveting mechanism 25. The riveting mechanism 25 is installed on the riveting mounting plate 27, and the shaping upper die assembly 24 cooperates with the shaping floating tooling 23.
[0022] The riveting mechanism 25 includes at least one riveting plate 251 and at least one set of riveting driving mechanisms 252. The riveting plate 251 is arranged below the riveting mounting plate 27 and is connected to the riveting mounting plate 27 through a set of guiding columns. The riveting driving mechanisms 252 are installed above the riveting mounting plate 27, and their output ends are connected to the riveting plate 251. The shaping upper die assembly 24 is arranged below the riveting plate 251.
[0023] As Figure 2 、 3The shown shaping floating tooling 23 includes a tooling support frame 231, a floating plate 232, a floating mounting plate 233, and at least one lower shaping fixture 234. The bottom of the tooling support frame 231 is slidably connected to the shaping conveying module 26. A set of vertical sliding rails are provided on the vertical support frame of the tooling support frame 231. The floating plate 232 is slidably connected to the vertical sliding rails through a set of sliding blocks, and the lower part of the floating plate 232 is pin-connected to the bottom plate of the tooling support frame 231 through a set of springs 235. The floating mounting plate 233 is arranged on the top of the floating plate 232, and the lower shaping fixture 234 is arranged on the floating mounting plate 233.
[0024] As Figure 1 , 4 shown, the lower shaping fixture 234 includes a fixture bottom plate 2341, a lower shaping adjustment block 2342, and a set of bearing edge mechanisms 2343. A set of chutes are provided on the fixture bottom plate 2341. The lower shaping adjustment block 2342 is arranged on the fixture bottom plate 2341 and is connected to the fixture bottom plate 2341 through a T-shaped bolt. The lower part of the T-shaped bolt is arranged in the chute, and the bearing edge mechanisms 2343 are arranged circumferentially on the fixture bottom plate 2341.
[0025] As Figure 4 shown, the upper shaping die assembly 24 includes an upper shaping plate 241 and a set of upper shaping adjustment blocks 242. A shaping buffer block 243 is arranged above the upper shaping plate 241. The upper shaping plate 241 and the shaping buffer block 243 are connected to the riveting pressure plate 251 through bolts. The upper shaping adjustment blocks 242 are arranged below the upper shaping plate 241, and the upper shaping adjustment blocks 242 and the lower shaping adjustment blocks 2342 cooperate with each other.
[0026] Both the upper shaping adjustment blocks 242 and the lower shaping adjustment blocks 2342 include a shaping adjustment block body. Shaping convex blocks are arranged at both ends of the shaping adjustment block body, and arc-shaped grooves are arranged on the inner walls of the shaping convex blocks.
[0027] A set of L-shaped auxiliary support frames 2321 are arranged on both sides of the floating plate 232.
[0028] The working principle of the battery cover plate assembly shaping and riveting device in this embodiment is as follows: Place the battery cover plate assembly to be riveted on the lower shaping fixture 234 on the shaping floating tooling 23. The riveting driving mechanism 252 in the riveting mechanism 25 drives the riveting pressure plate 251 to move downward. During the downward movement of the riveting pressure plate 251, it will drive the upper shaping die assembly 24 to move downward together, so that the upper shaping die assembly 24 cooperates with the lower shaping fixture 234, and the product is shaped during the riveting process.
[0029] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements can still be made, and these improvements should also be regarded as the protection scope of the present utility model.
Claims
1. A battery cover assembly shaping and riveting device, characterized in that: include: A group of shaping support mechanisms (21), a group of second support columns (22), at least one shaping floating tool (23), at least one shaping upper mold assembly (24) and a riveting mechanism (25), wherein the shaping support mechanism (21) is fixed on a workbench, the second support columns (22) are arranged on the outside of the shaping support mechanism (21), a group of shaping conveying modules (26) are arranged between the shaping support mechanisms (21), a riveting mounting plate (27) is arranged on the second support columns (22), the top of the shaping floating tool (23) is arranged above the shaping support mechanism (21), and the lower part is slidably connected to the shaping conveying module (26); The shaping upper die assembly (24) is mounted on a riveting mechanism (25), the riveting mechanism (25) is mounted on a riveting mounting plate (27), and the shaping upper die assembly (24) cooperates with a shaping floating tooling (23).
2. The battery cover assembly shaping and riveting device according to claim 1, characterized in that: The riveting mechanism (25) comprises at least one riveting plate (251) and at least one group of riveting driving mechanisms (252); the riveting plate (251) is arranged below the riveting mounting plate (27) and is connected to the riveting mounting plate (27) via a group of guide columns; the riveting driving mechanism (252) is installed above the riveting mounting plate (27) and its output end is connected to the riveting plate (251); and the shaping upper die assembly (24) is arranged below the riveting plate (251).
3. The battery cover assembly shaping and riveting device according to claim 1, characterized in that: The shaping floating tooling (23) comprises a tooling support frame (231), a floating plate (232), a floating mounting plate (233) and at least one shaping lower fixture (234); the bottom of the tooling support frame (231) is slidably connected to the shaping conveying module (26); a group of vertical slide rails are provided on the vertical support frame of the tooling support frame (231); the floating plate (232) is slidably connected to the vertical slide rails via a group of sliding blocks; the bottom of the floating plate (232) is pin-connected to the bottom plate of the tooling support frame (231) via a group of springs (235); the floating mounting plate (233) is arranged on the top of the floating plate (232); and the shaping lower fixture (234) is arranged on the floating mounting plate (233).
4. The battery cover assembly shaping and riveting device according to claim 3, characterized in that: The shaping lower jig (234) comprises a jig base plate (2341), a lower shaping adjustment block (2342), and a group of bearing retaining edge mechanisms (2343); the jig base plate (2341) is provided with a group of slide grooves; the lower shaping adjustment block (2342) is arranged on the jig base plate (2341) and connected to the jig base plate (2341) via T-bolts; the lower part of the T-bolts is arranged in the slide grooves; and the jig base plate (2341) is provided with a bearing retaining edge mechanism (2343) in the circumferential direction of the jig base plate (2341).
5. The battery cover assembly shaping and riveting device according to claim 4, characterized in that: The shaping upper die assembly (24) comprises an upper shaping plate (241) and a group of upper shaping adjustment blocks (242); a shaping buffer block (243) is provided above the upper shaping plate (241); the upper shaping plate (241) and the shaping buffer block (243) are connected to a riveting plate (251) via bolts; the upper shaping adjustment block (242) is provided below the upper shaping plate (241), and the upper shaping adjustment block (242) cooperates with a lower shaping adjustment block (2342).
6. The battery cover assembly shaping and riveting device according to claim 5, characterized in that: The upper shaping adjustment block (242) and the lower shaping adjustment block (2342) both comprise a shaping adjustment block body, both ends of the shaping adjustment block body are provided with shaping protrusions, and the inner walls of the shaping protrusions are provided with arc grooves.
7. The battery cover assembly shaping and riveting device according to claim 3, characterized in that: A group of L-shaped auxiliary support frames (2321) are provided on both sides of the floating plate (232).