Storage battery pressing plate machining punching machine with scrap removing structure

By designing an adjustable dust-collecting shell and brush assembly in the stamping production process, the problem of incomplete cleaning in the existing technology has been solved, achieving efficient all-round cleaning of the processing platform and ensuring the cleanliness of the mold base and product quality.

CN224058476UActive Publication Date: 2026-03-31GUANGDONG FENGYU PRECISION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In current stamping production, the position of the dust collection component is fixed and cannot be flexibly adjusted according to the distribution of debris. This makes it difficult to achieve comprehensive cleaning of all areas of the processing platform, resulting in poor cleaning effect. Debris easily gets trapped in the gaps of the equipment and is difficult to remove completely.

Method used

A battery platen processing punch press with a debris-removing structure was designed. By incorporating an adjustable dust-collecting housing and brush assembly, combined with negative pressure suction and an electric push rod, flexible cleaning of the processing platform can be achieved. The dust-collecting housing can be adjusted in position and angle via the electric push rod, while the brushes penetrate deep into the gaps of the mold seat to remove debris. Combined with negative pressure suction, this improves cleaning efficiency and thoroughness.

Benefits of technology

It achieves efficient and comprehensive cleaning of the processing platform, ensuring that there are no residual debris on the surface of the mold base, improving cleaning efficiency and thoroughness, and guaranteeing product processing quality and equipment versatility.

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Abstract

The utility model discloses a storage battery pressing plate machining punching machine with a scrap removing structure, and relates to the technical field of machining punching machines. Comprising a machining platform, the machining platform is provided with a stamping mechanism used for machining the storage battery pressing plate, the stamping mechanism comprises a cleaning assembly, the cleaning assembly comprises a vertical plate fixed to the upper end face of the machining platform, and a pair of second connecting rods are fixed to the inner wall of the vertical plate; according to the dust collection device, the first electric push rod drives the dust collection shell to rotate, the position of the dust collection shell can be flexibly adjusted, the dust collection shell is made to be closer to chippings on a machining platform, and the dust collection device is more convenient to use. The chip removal device can effectively remove chips on the machining platform and control the angle of the dust collection shell, can better align to a chip area, is matched with negative pressure generated by the dust collection pump, achieves efficient suction of the chips on the machining platform, and is higher in chip removal efficiency compared with a traditional chip removal mode.
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Description

Technical Field

[0001] This utility model relates to the field of punching technology, specifically a punching machine for processing battery pressure plates with a chip removal structure. Background Technology

[0002] Stamping production involves using a stamping press to press products into different shapes using various dies. In other words, different dies are used for different products. Therefore, stamping production is essentially the research and development of dies. A die typically consists of an upper die assembly and a lower die assembly. The stamping press drives the upper die assembly to move towards the lower die assembly, placing the raw material sheet to be stamped onto the lower die assembly. The upper and lower dies then work together to compress and shape the raw material sheet.

[0003] During cleaning, the dust is adsorbed by the suction pipe. However, the position of the suction component is fixed and cannot be flexibly adjusted according to the distribution of dust. It is difficult to achieve all-round cleaning of all areas of the processing platform, and the dust is easy to get into the gaps of the equipment, resulting in poor cleaning effect and difficulty in achieving thorough dust removal. Therefore, this utility model provides a battery pressure plate processing punch press with a dust removal structure. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a battery pressure plate processing punch press with a chip removal structure. This solves the problems of using a dust suction pipe to adsorb debris during cleaning, where the dust suction component is fixed in position and cannot be flexibly adjusted according to the distribution of debris. This makes it difficult to achieve comprehensive cleaning of all areas of the processing platform and for debris to easily accumulate in the gaps of the equipment, resulting in poor cleaning effect and difficulty in achieving thorough chip removal.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a battery pressure plate processing punch press with a chip removal structure, comprising a processing platform, wherein a stamping mechanism for processing battery pressure plates is provided on the processing platform, the stamping mechanism comprising:

[0006] A cleaning assembly includes a vertical plate fixed to the upper surface of a processing platform. A pair of second connecting rods are fixed to the inner wall of the vertical plate. The end of the second connecting rod away from the vertical plate is rotatably connected to a first connecting rod via a rotating shaft. A dust-collecting shell is fixed to the lower end of the first connecting rod. A push-pull assembly for support is provided on the inner wall of the dust-collecting shell. A brush connected by a telescopic assembly is provided through the interior of the vertical plate.

[0007] The limiting component includes a pair of sliding grooves that run through the inside of the processing platform. A connecting plate connected by a threaded assembly is provided inside the sliding groove. The connecting plate extends to the upper end of the sliding groove and is fixed with a limiting bracket. A limiting roller is rotatably connected to the inner wall of the limiting bracket.

[0008] Preferably, the outer wall of the vertical plate is fixed with a collection shell for debris cleaning, a vacuum pump is provided at the lower end of the collection shell, a connecting hose runs through the interior of the vertical plate, one end of the connecting hose is connected to the collection shell, and the other end of the connecting hose is connected to the vacuum shell.

[0009] Preferably, the push assembly includes a first electric push rod rotatably connected to the inner wall of the vertical plate via a rotating shaft, and the telescopic end of the first electric push rod is rotatably connected to the dust collection housing via a rotating shaft.

[0010] Preferably, the upper surface of the processing platform is provided with a mold base for processing battery pressure plates, and the four ends of the mold base are provided with bolts for disassembly. The upper end of the vertical plate is fixed with a mounting plate, and a third electric push rod is fixed through the interior of the mounting plate. The lower end of the third electric push rod is fixed with a punch head, and a limit plate is fixed to the outer wall of the punch head. A rubber pad is fixed to the lower end of the limit plate.

[0011] Preferably, the threaded assembly includes a pair of fixing plates fixed to the lower end face of the processing platform, a bidirectional screw is rotatably connected to the inner wall of the fixing plate, the connecting plate is threadedly connected to the bidirectional screw, and the outer wall of the limiting bracket is provided with a limiting slide rail for support, the limiting slide rail is fixedly connected to the processing platform.

[0012] Preferably, the telescopic assembly includes a second electric push rod that is fixedly fixed inside the vertical plate, and a connecting bracket is fixed to the telescopic end of the second electric push rod. The brushes are evenly distributed on the lower end face of the connecting bracket.

[0013] Beneficial effects

[0014] This utility model provides a punch press for processing battery pressure plates with a chip removal structure. Compared with the prior art, it has the following advantages:

[0015] Firstly, this invention creates negative pressure within a channel comprised of a connecting hose, a dust collection housing, and a collection housing. One end of the connecting hose is connected to the collection housing, and the other end is connected to the dust collection housing. Air and debris from the dust collection housing are drawn into the collection housing through the connecting hose. The filter screen on the inner wall of the dust collection housing performs preliminary filtration of the drawn-in impurities, preventing larger impurities from entering the connecting hose and collection housing, thus preventing pipe blockage. Smaller debris and dust pass through the filter screen and are drawn into the collection housing through the connecting hose under negative pressure, ultimately being collected within the collection housing. The first electric push rod drives the dust collection housing to rotate, allowing for flexible adjustment of its position to bring it closer to the debris on the processing platform and control of its angle for better alignment with the debris area. Combined with the negative pressure generated by the dust pump, this achieves highly efficient debris extraction from the processing platform, resulting in higher debris removal efficiency compared to traditional methods.

[0016] Secondly, the connecting bracket of this utility model is telescopic via a second electric push rod. After one processing cycle is completed, the brush at the lower end of the connecting bracket cleans the mold base by telescopically extending the electric push rod. The brush can penetrate deep into the gaps and grooves of the mold base, loosening the debris tightly adhering to the surface of the mold base. This loosens the originally firmly adhered debris, and then the dust collection shell starts working. The loosened debris is more easily sucked into the dust collection shell, greatly improving the thoroughness of debris removal and ensuring that there are no residual debris on the surface and surrounding area of ​​the mold base. This provides a clean working environment for the next processing cycle and ensures the quality of product processing. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the stamping head connection structure of this utility model;

[0019] Figure 3 For the present utility model Figure 2 Enlarged structural diagram at point A in the middle;

[0020] Figure 4 This is a schematic diagram of the connection structure of the connecting bracket of this utility model;

[0021] Figure 5 This is a schematic diagram of the bottom structure of the processing platform of this utility model.

[0022] In the diagram: 1. Processing platform; 2. Slide groove; 201. Connecting plate; 202. Limiting bracket; 203. Limiting roller; 204. Limiting slide rail; 205. Fixing plate; 206. Bidirectional screw; 3. Vertical plate; 301. Collection shell; 302. Dust pump; 303. Connecting hose; 304. Dust collection shell; 305. First connecting rod; 306. Second connecting rod; 307. First electric push rod; 4. Second electric push rod; 401. Connecting bracket; 402. Brush; 5. Mounting plate; 501. Third electric push rod; 502. Limiting plate; 503. Rubber pad; 504. Punching head; 505. Mold base. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figures 1-5This utility model provides a technical solution: a battery pressure plate processing punch press with a chip removal structure, including a processing platform 1, on which a stamping mechanism for processing battery pressure plates is provided, the stamping mechanism including:

[0025] The cleaning assembly includes a vertical plate 3 fixed to the upper surface of the processing platform 1. A pair of second connecting rods 306 are fixed to the inner wall of the vertical plate 3. The end of the second connecting rod 306 away from the vertical plate 3 is rotatably connected to a first connecting rod 305 via a rotating shaft. A dust collection shell 304 is fixed to the lower end of the first connecting rod 305. A push assembly for support is provided on the inner wall of the dust collection shell 304. A brush 402 connected by a telescopic assembly is provided through the interior of the vertical plate 3.

[0026] The limiting component includes a pair of slides 2 that are opened through the inside of the processing platform 1. The slides 2 are provided with a connecting plate 201 connected by a threaded assembly. The connecting plate 201 extends to the upper end of the slides 2 and is fixed with a limiting bracket 202. The inner wall of the limiting bracket 202 is rotatably connected to a limiting roller 203.

[0027] In a preferred embodiment, a collection housing 301 for debris cleaning is fixed to the outer wall of the vertical plate 3. A vacuum pump 302 is provided at the lower end of the collection housing 301. A connecting hose 303 passes through the interior of the vertical plate 3. One end of the connecting hose 303 is connected to the collection housing 301, and the other end of the connecting hose 303 is connected to the vacuum housing 304. The pushing assembly includes a first electric push rod 307 rotatably connected to the inner wall of the vertical plate 3 via a rotating shaft. The telescopic end of the first electric push rod 307 is rotatably connected to the vacuum housing 304 via a rotating shaft. The inner wall of the vacuum housing 304 is provided with a device for larger... After the battery pressure plate is stamped on the processing platform 1, the dust removal process begins. First, the first electric push rod 307 starts operating. Since one end of the first electric push rod 307 is rotatably connected to the inner wall of the vertical plate 3 via a rotating shaft, and the other end is rotatably connected to the dust collection housing 304 via a rotating shaft, the extension and retraction of the first electric push rod 307 will cause the dust collection housing 304 to rotate around the rotating shaft between the first connecting rod 305 and the second connecting rod 306. By controlling the extension and retraction length of the first electric push rod 307, the dust collection housing 304 is rotated at an angle and moved closer to the processing platform. In areas with debris, the vacuum pump 302 is activated. The vacuum pump 302 is installed at the lower end of the collection housing 301. When the vacuum pump 302 is working, a negative pressure is created in the channel formed by the connecting hose 303, the vacuum housing 304, and the collection housing 301. One end of the connecting hose 303 is connected to the collection housing 301, and the other end is connected to the vacuum housing 304. Air and debris from the vacuum housing 304 are drawn into the collection housing 301 through the connecting hose 303. The filter on the inner wall of the vacuum housing 304 performs preliminary filtration of the drawn-in impurities, preventing larger impurities from entering the connecting hose 303 and the collection housing 301. The outer casing 301 prevents pipe blockage, while smaller debris and dust are drawn into the collection casing 301 through the filter screen and under negative pressure via the connecting hose 303. The debris and dust are then collected within the collection casing 301. The first electric push rod 307 drives the suction casing 304 to rotate, allowing for flexible adjustment of its position to bring it closer to the debris on the processing platform 1 and control of its angle to better align with the debris area. Combined with the negative pressure generated by the suction pump 302, this achieves highly efficient debris removal from the processing platform 1, resulting in higher debris removal efficiency compared to traditional methods.

[0028] In a preferred embodiment, the upper surface of the processing platform 1 is provided with a mold base 505 for processing battery pressing plates, and the four ends of the mold base 505 are provided with bolts for disassembly. The upper end of the vertical plate 3 is fixed with a mounting plate 5, and a third electric push rod 501 is fixed through the interior of the mounting plate 5. The lower end of the third electric push rod 501 is fixed with a punch head 504, and a limit plate 502 is fixed to the outer wall of the punch head 504. A rubber pad 503 is fixed to the lower end of the limit plate 502. On the processing platform 1, the mold base 505 is fixedly installed in a suitable position by bolts to ensure that the mold base 505 is stable and facilitates the subsequent installation of the mold required for processing the battery pressing plate. After the mold is installed, the battery pressing plate is pressed into place. The plate is placed in the mold on the mold base 505, completing the pre-processing preparation. On the mounting plate 5 at the upper end of the vertical plate 3, the third electric push rod 501 is activated. The third electric push rod 501 passes through the mounting plate 5 and is fixed. Its lower end is connected to the punch head 504. The third electric push rod 501 extends and retracts downward, driving the punch head 504 to move vertically downward. The limiting plate 502 on the outer wall of the punch head 504 descends together with the punch head 504. The rubber pad 503 at the lower end of the limiting plate 502 first contacts the battery pressure plate, which plays a buffering role and avoids the punch head 504 directly hitting the pressure plate and causing damage. Then, the punch head 504 continues to press down to punch the battery pressure plate until the predetermined punching depth and shape requirements are achieved. After stamping is completed, the third electric push rod 501 retracts, driving the stamping head 504, the limiting plate 502, and the rubber pad 503 to return upwards and move away from the pressure plate. The limiting plate 502 and the rubber pad 503 can limit and buffer the stamping head 504 during stamping, preventing the stamping head 504 from pressing down excessively and damaging the pressure plate. At the same time, they prevent the pressure plate from shifting during stamping, further ensuring the processing quality. The detachable design of the mold base 505 makes it easy to replace molds of different specifications to meet the processing needs of various battery pressure plates, thus improving the versatility of the punch press.

[0029] In a preferred embodiment, the threaded assembly includes a pair of fixing plates 205 fixed to the lower end face of the processing platform 1. A bidirectional screw 206 is rotatably connected to the inner wall of each fixing plate 205. A connecting plate 201 is threadedly connected to the bidirectional screw 206. A limiting slide rail 204 for support is provided on the outer wall of the limiting bracket 202. The limiting slide rail 204 is fixedly connected to the processing platform 1. By rotating the bidirectional screw 206, the limiting bracket 202 at the upper end of the connecting plate 201 opens and closes along the slide groove 2 and the limiting slide rail 204 on the processing platform 1, thereby processing the battery pressure plate. The material is limited and can be precisely fixed in a designated position on the processing platform 1 according to the size of the battery plate material. This avoids processing errors caused by positional deviation during the stamping process, thus significantly improving the processing accuracy of the battery plate. Whether the battery plate material is small or large, it can be quickly adapted by rotating the bidirectional screw 206. This greatly improves the adaptability of the punch press to processing materials of different specifications, eliminates the need for frequent changes of complex tooling fixtures, reduces production costs, and enhances the versatility and practicality of the equipment.

[0030] In a preferred embodiment, the telescopic component includes a second electric push rod 4 fixedly through the interior of the vertical plate 3. A connecting bracket 401 is fixed to the telescopic end of the second electric push rod 4. Brushes 402 are evenly distributed on the lower end face of the connecting bracket 401. The connecting bracket 401 is telescopically extended by the second electric push rod 4. After one processing is completed, the brushes 402 at the lower end of the connecting bracket 401 clean the mold base 505 by telescopically extending the electric push rod. The brushes 402 can penetrate into the gaps and grooves of the mold base 505, brushing away and loosening the debris that is tightly attached to the surface of the mold base 505. This loosens the originally firmly adhered debris. Subsequently, the dust collection shell 304 starts working, and the loose debris is more easily sucked in by the dust collection shell 304, greatly improving the thoroughness of debris removal. This ensures that there are no residual debris on the surface and around the mold base 505, providing a clean working environment for the next processing and ensuring the quality of product processing.

[0031] Furthermore, any content not described in detail in this specification is existing technology known to those skilled in the art.

[0032] During operation, the mold base 505 is fixedly installed in a suitable position on the processing platform 1 using bolts, ensuring the mold base 505 is stable and facilitating the subsequent installation of the mold required for processing the battery pressure plate. After the mold is installed, the battery pressure plate to be processed is placed in the mold on the mold base 505, completing the pre-processing preparation. On the mounting plate 5 at the upper end of the vertical plate 3, the third electric push rod 501 is activated. The third electric push rod 501 is fixed through the mounting plate 5, and its lower end is connected to the punch head 504. The third electric push rod 501 extends and retracts downward, driving the punch head 504 to move vertically downward, punching. The limiting plate 502 on the outer wall of the head 504 descends together with the stamping head 504. The rubber pad 503 at the lower end of the limiting plate 502 first contacts the battery pressure plate, which plays a buffering role and prevents the stamping head 504 from directly hitting the pressure plate and causing damage. Then, the stamping head 504 continues to press down to stamp the battery pressure plate until the predetermined stamping depth and shape requirements are reached. By rotating the bidirectional screw 206, the limiting bracket 202 at the upper end of the connecting plate 201 opens and closes along the slide groove 2 and the limiting slide rail 204 on the processing platform 1, thereby limiting the material being processed on the battery pressure plate.

[0033] During cleaning, the first electric push rod 307 starts operating. One end of the first electric push rod 307 is rotatably connected to the inner wall of the vertical plate 3 via a rotating shaft, and the other end is rotatably connected to the dust collection housing 304 via a rotating shaft. The extension and retraction of the first electric push rod 307 causes the dust collection housing 304 to rotate around the rotating shaft between the first connecting rod 305 and the second connecting rod 306. By controlling the extension and retraction length of the first electric push rod 307, the dust collection housing 304 rotates at an angle and approaches the area with debris on the processing platform 1. The dust pump 302 starts. The dust pump 302 is installed at the lower end of the collection housing 301. When the dust pump 302 is working, it fills the channel formed by the connecting hose 303, the dust collection housing 304, and the collection housing 301. A negative pressure is formed inside. One end of the connecting hose 303 is connected to the collection housing 301, and the other end is connected to the dust collection housing 304. Air and debris at the dust collection housing 304 are drawn into the collection housing 301 through the connecting hose 303. The filter screen on the inner wall of the dust collection housing 304 will perform preliminary filtration of the drawn-in impurities, preventing larger impurities from entering the connecting hose 303 and the collection housing 301 to prevent pipe blockage. Smaller debris and dust pass through the filter screen and are drawn into the collection housing 301 through the connecting hose 303 under the action of negative pressure. Finally, they are collected in the collection housing 301. The dust collection housing 304 is rotated by the first electric push rod 307, which can flexibly adjust the position of the dust collection housing 304 to make it closer to the debris on the processing platform 1.

[0034] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A battery plate processing press with a scrap removal structure, comprising a processing table (1), characterized in that: The processing platform (1) is provided with a stamping mechanism for battery pressing plate processing, and the stamping mechanism comprises: The cleaning assembly comprises a vertical plate (3) fixed on the upper end face of the processing platform (1), a pair of second connecting rods (306) are fixed on the inner wall of the vertical plate (3), one end of the second connecting rod (306) away from the vertical plate (3) is rotatably connected with a first connecting rod (305) through a rotating shaft, and the lower end of the first connecting rod (305) is fixed with a dust suction shell (304). The inner wall of the dust suction shell (304) is provided with a push assembly for supporting, and a brush (402) connected through a telescopic assembly is arranged in the vertical plate (3). The limiting assembly comprises a pair of sliding grooves (2) penetrating through the inside of the processing platform (1), a connecting plate (201) connected through a threaded assembly is arranged in the sliding groove (2), the connecting plate (201) extends to the upper end of the sliding groove (2) and is fixed with a limiting support (202), and the inner wall of the limiting support (202) is rotatably connected with a limiting roller (203).

2. The battery clamp processing punch with a chip removing structure according to claim 1, characterized in that: The outer wall of the vertical plate (3) is fixed with a collection shell (301) for debris cleaning, the lower end of the collection shell (301) is provided with a dust suction pump (302), and the inside of the vertical plate (3) penetrates through a connecting hose (303), one end of the connecting hose (303) is connected with the collection shell (301), and the other end of the connecting hose (303) is connected with the dust suction shell (304).

3. The battery clamp processing punch with a chip removing structure according to claim 1, characterized in that: The push assembly comprises a first electric push rod (307) rotatably connected with the inner wall of the vertical plate (3) through a rotating shaft, and the telescopic end of the first electric push rod (307) is rotatably connected with the dust suction shell (304) through a rotating shaft.

4. The battery clamp processing punch with a chip removing structure according to claim 1, characterized in that: The upper end face of the processing platform (1) is provided with a mold seat (505) for battery pressing plate processing, and the four ends of the mold seat (505) are provided with bolts for disassembly, the upper end of the vertical plate (3) is fixed with a mounting plate (5), the inside of the mounting plate (5) penetrates and is fixed with a third electric push rod (501), the lower end of the third electric push rod (501) is fixed with a stamping head (504), the outer wall of the stamping head (504) is fixed with a limiting plate (502), and the lower end face of the limiting plate (502) is fixed with a rubber pad (503).

5. The battery clamp processing punch with a chip removing structure according to claim 1, characterized in that: The threaded assembly comprises a pair of fixed plates (205) fixed on the lower end face of the processing platform (1), the inner wall of the fixed plate (205) is rotatably connected with a bidirectional screw rod (206), the connecting plate (201) is in threaded connection with the bidirectional screw rod (206), and the outer wall of the limiting support (202) is provided with a limiting sliding rail (204) for supporting, and the limiting sliding rail (204) is in fixed connection with the processing platform (1).

6. The battery clamp processing punch with a chip removing structure according to claim 1, characterized in that: The telescopic assembly comprises a second electric push rod (4) fixedly penetrating through the inside of the vertical plate (3), the telescopic end of the second electric push rod (4) is fixed with a connecting support (401), and the brush (402) is uniformly distributed on the lower end face of the connecting support (401).