Punching and cleaning device for V pole of output copper plate

By designing a copper plate V-type punching and cleaning device, the processing platform was automatically flipped and debris was scraped off, solving the problems of high manual cleaning intensity and difficulty in scraping debris, improving cleaning efficiency and resource utilization, and ensuring processing safety.

CN223761909UActive Publication Date: 2026-01-06CHIZHOU MOXIN ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202520195760.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2026-01-06
Estimated Expiration
2035-02-08

AI Technical Summary

Technical Problem

During the V-type punching process for bronze plates, the processing platform is fixed on the frame and requires manual cleaning, which is labor-intensive. Furthermore, the residual debris on the surface is difficult to remove automatically, affecting the cleaning effect.

Method used

A punching and cleaning device for output copper plate V-type plates was designed, including a flipping component, a cleaning component, and a collection component. The processing platform is flipped by a support shaft, and combined with a locking component, a gear component, a suction component, and a scraping component, the device achieves automated waste collection and debris cleaning.

Benefits of technology

It significantly improves cleaning efficiency, reduces labor intensity, enhances resource utilization and environmental protection, and ensures the safety of the processing process and the centralized collection of debris.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an output copper plate V pole punching and cleaning device, and relates to the technical field of cleaning devices. Comprising a supporting frame, the supporting frame is provided with a cleaning mechanism used for outputting copper plate V pole punched holes, the cleaning mechanism comprises an overturning assembly, and the overturning assembly comprises a supporting shaft connected with the interior of the supporting frame in a penetrating mode. The surface of the machining platform is turned to the lower portion to be aligned with the interior of the collecting shell, then an adjusting plate is rotated to the position right opposite to a threaded hole in a fixing block through a supporting shaft, a bolt and the threaded hole are locked, and therefore waste on the machining platform can be directly poured into the collecting shell conveniently to be cleaned; according to the waste cleaning device, the tedious process of manual waste cleaning is avoided, the cleaning efficiency is remarkably improved, the waste collected in a centralized mode is easier to recycle and reuse, and resource saving and environment protection are facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of cleaning device technology, specifically a punching and cleaning device for output copper plate V poles. Background Technology

[0002] During the punching process of the copper plate V electrode, a large amount of debris and waste is often generated due to the processing characteristics and material properties.

[0003] The process of punching the bronze V-type plate mainly involves the operation of the CNC machine tool and the specific execution of the punching. The plate is processed and fixed through a machining support and machining platform.

[0004] However, when cleaning the processing platform of an object, the processing platform is usually fixed on the frame, and its surface needs to be cleaned manually, which is labor-intensive. In addition, the residual debris on the surface tends to stick to the worktable, which is not convenient for automated scraping and collection, thus affecting the cleaning effect. Therefore, this utility model provides a copper plate V-pole punching and cleaning device. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a copper plate V-pole punching and cleaning device, which solves the problems that when cleaning the processing platform of an object, the processing platform is usually fixed on the frame, requiring manual cleaning of its surface, which is labor-intensive, and the residual debris on the surface is easy to stick to the worktable, making it difficult to automatically scrape and collect, thus affecting the cleaning effect.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a punching and cleaning device for output copper plate V-pole holes, comprising a support frame, wherein the support frame is provided with a cleaning mechanism for punching holes in the output copper plate V-pole, the cleaning mechanism comprising:

[0007] The flipping assembly includes a support shaft that runs through the inside of a support frame, a processing platform that is fixed to the outer wall of the support shaft, and a locking assembly for fixing that is provided at one end of the support shaft;

[0008] The cleaning component includes a groove on the upper surface of a support frame, a protective housing connected by a gear assembly inside the groove, a suction assembly for dust adsorption on one side of the protective housing, a movable groove on the lower surface of the support frame, a movable block connected by a threaded assembly inside the movable groove, a drive shaft running through the movable block, a scraper fixed to one end of the drive shaft, and a collection assembly for scraping waste material on the lower surface of the support frame.

[0009] Preferably, the locking assembly includes an adjusting plate fixed at one end of a support shaft, a fixing block fixed to the side wall of the support frame, and a set of threaded holes inside the fixing block.

[0010] Preferably, the gear assembly includes a slider that is slidably connected inside a groove, a protective housing that is fixedly connected to the upper end of the slider, a vertical plate that is fixed to the rear side wall of the support frame, a drive shaft that is connected through the interior of the vertical plate, a drive gear that is fixed to one end of the drive shaft, a slide rod that is fixed to one side of the drive gear on the protective housing, and a first tooth block that is uniformly fixed to the lower end face of the slide rod, the first tooth block being meshed with the drive gear.

[0011] Preferably, a positioning block is fixed to the inner wall of the vertical plate, and a positioning groove connected to the positioning block is provided on the side wall of the slide rod.

[0012] Preferably, the suction assembly includes a dust-collecting shell that is fixed through the side wall of the protective shell, and a dust-collecting pipe is fixed inside the dust-collecting shell. The collection assembly includes a collection shell fixed at the lower end of the support frame, and the other end of the dust-collecting pipe is connected to the collection shell in a flow manner. The lower end face of the collection shell is provided with an opening and closing plate that is rotatably connected by a rotating shaft. The upper inner wall of the protective shell is fixed with a processing bracket for outputting the V-pole punch of the copper plate.

[0013] Preferably, the threaded assembly includes a reciprocating screw rotatably connected inside the movable groove, a movable block slidably connected inside the movable groove, the movable block being threadedly connected to the reciprocating screw, a second tooth block being fixed at the lower end edge of the support frame, and a transmission gear being fixed at the other end of the transmission shaft, the transmission gear being meshed with the second tooth block.

[0014] Beneficial effects

[0015] This utility model provides a punching and cleaning device for the V-pole of the output copper plate. Compared with the prior art, it has the following advantages:

[0016] Firstly, the processing platform of this invention can be flipped inside the support frame via a support shaft, causing the surface of the processing platform to flip downwards and align with the inside of the collection shell. Then, the adjusting plate is rotated via the support shaft to face the threaded hole on the fixing block, and the bolt is locked with the threaded hole. This facilitates the direct pouring of waste from the processing platform into the inside of the collection shell for cleaning, avoiding the tedious process of manual waste cleaning, significantly improving cleaning efficiency. The centrally collected waste is easier to recycle and reuse, which helps to save resources and protect the environment.

[0017] Secondly, the movable block of this utility model slides along the inside of the movable groove, driving the scraper shaft connected to the movable block via the transmission shaft to slide on the lower surface of the flipped processing platform. Then, when the movable block slides, the transmission gear drives through the second tooth block, causing the scraper shaft on the transmission shaft to rotate and scrape off the debris on the surface of the processing platform, thereby effectively removing the debris, reducing manual intervention, lowering labor intensity, and greatly improving cleaning efficiency. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a cross-sectional view of the protective shell and the collection shell of this utility model;

[0020] Figure 3 This is a schematic diagram of the connection structure of the processing platform of this utility model;

[0021] Figure 4 This is a schematic diagram of the protective shell connection structure of this utility model;

[0022] Figure 5 This is a schematic diagram of the second tooth block connection structure of this utility model;

[0023] Figure 6 This is an enlarged schematic diagram of the connection structure at point A of this utility model.

[0024] In the diagram: 1. Support frame; 2. Machining platform; 201. Support shaft; 202. Fixing block; 203. Threaded hole; 204. Adjusting plate; 3. Slide groove; 301. Slider; 302. Protective shell; 303. Dust collection shell; 304. Dust collection pipe; 305. Collection shell; 306. Opening and closing plate; 4. Machining bracket; 5. Vertical plate; 501. Drive shaft; 502. Drive gear; 503. Slide rod; 504. First tooth block; 505. Positioning block; 506. Positioning groove; 6. Movable groove; 601. Reciprocating screw; 602. Movable block; 603. Transmission shaft; 604. Transmission gear; 605. Second tooth block; 606. Scraper shaft. Detailed Implementation

[0025] 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.

[0026] Please see Figures 1-6This utility model provides a technical solution: a punching and cleaning device for output copper plate V-pole, including a support frame 1, on which a cleaning mechanism for punching the V-pole of the output copper plate is provided, the cleaning mechanism including:

[0027] The flipping assembly includes a support shaft 201 that runs through the inside of the support frame 1, a processing platform 2 that is fixed to the outer wall of the support shaft 201, and a locking assembly for fixing is provided at one end of the support shaft 201.

[0028] The cleaning component includes a groove 3 on the upper surface of the support frame 1, a protective housing 302 connected by a gear assembly inside the groove 3, a suction component for dust adsorption on one side of the protective housing 302, a movable groove 6 on the lower surface of the support frame 1, a movable block 602 connected by a threaded assembly inside the movable groove 6, a drive shaft 603 through the movable block 602, a scraper shaft 606 fixed at one end of the drive shaft 603, and a collection component for scraping waste on the lower surface of the support frame 1.

[0029] In a preferred embodiment, the locking assembly includes an adjusting plate 204 fixed at one end of a support shaft 201, a fixing block 202 fixed to the side wall of the support frame 1, and a set of threaded holes 203 inside the fixing block 202. The processing platform 2 is mainly used as a platform for processing objects. After processing, the processing platform 2 can be flipped inside the support frame 1 via the support shaft 201, so that the surface of the processing platform 2 is flipped downwards and aligned with the inside of the collection shell 305. Then, the adjusting plate 204 is rotated via the support shaft 201 to face the threaded hole 203 on the fixing block 202, and the bolt is locked with the threaded hole 203. This facilitates the direct pouring of waste from the processing platform 2 into the inside of the collection shell 305 for cleaning, avoiding the tedious process of manually cleaning waste, significantly improving cleaning efficiency, and making the centrally collected waste easier to recycle and reuse, which helps to save resources and protect the environment.

[0030] In a preferred embodiment, the gear assembly includes a slider 301 slidably connected inside the slide groove 3, a protective shell 302 fixedly connected to the upper end of the slider 301, a vertical plate 5 fixed to the rear side wall of the support frame 1, a drive shaft 501 penetrating inside the vertical plate 5, a drive gear 502 fixed to one end of the drive shaft 501, a slide rod 503 fixed to one side of the protective shell 302, a first tooth block 504 evenly fixed to the lower end face of the slide rod 503, the first tooth block 504 meshing with the drive gear 502, a positioning block 505 fixed to the inner wall of the vertical plate 5, and a positioning groove 506 connected to the positioning block 505 on the side wall of the slide rod 503. The drive gear 502 is driven by a motor. The first toothed block 504 is driven to move, so that the protective shell 302 slides along the slide groove 3 on the support frame 1 via the slider 301, thereby closing the processing area and preventing the debris from causing damage to the workers during punching, as well as avoiding the splashing of debris. This significantly improves the safety of the processing process, and makes it fall better onto the processing platform 2, which helps to collect the debris and reduces the situation where the debris is scattered everywhere, thereby improving the collection efficiency of the debris and bringing convenience to the subsequent cleaning work. In addition, the protective shell 302 slides along the positioning block 505 on the inner wall of the vertical plate 5 via the positioning groove 506 of the slide rod 503, which prevents the protective shell 302 from falling off and ensures the stability during sliding.

[0031] In a preferred embodiment, the suction assembly includes a dust-collecting shell 303 fixed through the side wall of the protective shell 302, and a dust-collecting pipe 304 fixed inside the dust-collecting shell 303. The collection assembly includes a collection shell 305 fixed at the lower end of the support frame 1, and the other end of the dust-collecting pipe 304 is connected to the collection shell 305. The lower end face of the collection shell 305 is provided with an opening and closing plate 306 rotatably connected via a rotating shaft. The upper inner wall of the protective shell 302 is fixed with a processing bracket 4 for punching the V-pole of the copper plate. The dust-collecting pipe 304 is a flexible rubber hose that can be bent at will, and the dust-collecting pipe 304 is used to collect dust. Adsorption is typically achieved using a fan, which is existing technology and will not be elaborated upon further. When the protective housing 302 is closed, the debris and dust generated during processing can be sucked into the collection housing 305 through the suction housing 303 and suction pipe 304. Then, the connecting opening and closing plate 306 is rotated to open the collection housing 305, allowing for centralized collection of debris. This simplifies the debris collection process, improves the efficiency of debris handling, reduces the residue of debris and dust, and reduces the risk of workers inhaling harmful dust, providing a healthier and safer working environment for workers.

[0032] In a preferred embodiment, the threaded assembly includes a reciprocating screw 601 rotatably connected inside the movable groove 6, a movable block 602 slidably connected inside the movable groove 6, and a threaded connection between the movable block 602 and the reciprocating screw 601. A second toothed block 605 is fixed at the lower end edge of the support frame 1, and a transmission gear 604 is fixed at the other end of the transmission shaft 603. The transmission gear 604 meshes with the second toothed block 605. The reciprocating screw 601 is driven by a motor, causing the movable block 602 to slide along the interior of the movable groove 6. The scraper 606, connected to the movable block 602 via the drive shaft 603, slides on the lower surface of the flipped processing platform 2. As the movable block 602 slides, the drive gear 604 drives the second tooth block 605, causing the scraper 606 on the drive shaft 603 to rotate and scrape away the debris on the surface of the processing platform 2. This effectively removes the debris, reduces manual intervention, lowers labor intensity, and greatly improves cleaning efficiency. To add, when flipping the processing platform 2, the scraper 606 can be moved to one side.

[0033] Furthermore, any content not described in detail in this specification is existing technology known to those skilled in the art.

[0034] During operation, the processing platform 2 is mainly used for processing objects. The drive gear 502 is driven by a motor, which in turn drives the first tooth block 504 for transmission. This causes the protective shell 302 to slide open and close along the slide groove 3 on the support frame 1 via the slider 301, thereby closing the processing area. This prevents debris from damaging workers during punching and avoids debris splashing, significantly improving the safety of the processing process. The debris falls better onto the processing platform 2, which helps to collect the debris. Finally, the processing platform 2 can be flipped inside the support frame 1 via the support shaft 201, so that the surface of the processing platform 2 is flipped downwards and aligned with the inside of the collection shell 305. Then, the adjusting plate 204 is rotated via the support shaft 201 to face the threaded hole 203 on the fixing block 202. The bolt is then locked to the threaded hole 203, making it easy to pour the waste from the processing platform 2 directly into the inside of the collection shell 305 for cleaning. This avoids the tedious process of manually cleaning the waste and significantly improves the cleaning efficiency.

[0035] The reciprocating screw 601 is driven by a motor, causing the movable block 602 to slide along the inside of the movable groove 6. This causes the scraper shaft 606 connected to the movable block 602 via the transmission shaft 603 to slide on the lower surface of the flipped processing platform 2. As the movable block 602 slides, the transmission gear 604 drives the second tooth block 605, causing the scraper shaft 606 on the transmission shaft 603 to rotate and scrape away the debris on the surface of the processing platform 2. This effectively removes the debris, reduces manual intervention, lowers labor intensity, and greatly improves cleaning efficiency.

[0036] 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.

[0037] 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 copper medal V-pole punching cleaning device output, comprising a support frame (1), characterized in that: The support frame (1) is provided with a cleaning mechanism for outputting bronze medal V-pole punching. The turnover assembly comprises a support shaft (201) connected through the inside of the support frame (1), and the outer wall of the support shaft (201) is fixed with a processing platform (2), and one end of the support shaft (201) is provided with a locking assembly for fixing; The cleaning assembly comprises a sliding groove (3) opened on the upper end surface of the support frame (1), the inside of the sliding groove (3) is provided with a protective shell (302) connected through a gear assembly, one side of the protective shell (302) is provided with a suction assembly for dust adsorption, the lower end surface of the support frame (1) is provided with a movable groove (6), the inside of the movable groove (6) is provided with a movable block (602) connected through a screw assembly, the inside of the movable block (602) is through-connected with a transmission shaft (603), one end of the transmission shaft (603) is fixed with a scraping shaft (606), and the lower end surface of the support frame (1) is provided with a collection assembly for waste scraping.

2. A copper medal V-pole punching cleaning device according to claim 1, characterized in that: The locking assembly comprises an adjusting plate (204) fixed at one end of the support shaft (201), and the side wall of the support frame (1) is fixed with a fixed block (202), and a group of threaded holes (203) are opened in the inside of the fixed block (202).

3. A copper medal V-pole punching cleaning device according to claim 1, characterized in that: The gear assembly comprises a sliding block (301) slidingly connected in the sliding groove (3), the protective shell (302) is fixedly connected to the upper end of the sliding block (301), the rear side wall of the support frame (1) is fixed with a vertical plate (5), the inside of the vertical plate (5) is through-connected with a driving shaft (501), one end of the driving shaft (501) is fixed with a driving gear (502), the protective shell (302) is fixed with a slide rod (503) on one side of the driving gear (502), the lower end surface of the slide rod (503) is uniformly fixed with a first tooth block (504), and the first tooth block (504) is in meshing connection with the driving gear (502).

4. A copper medal V-pole punching cleaning device according to claim 3, characterized in that: The inner wall of the vertical plate (5) is fixed with a positioning block (505), and the side wall of the slide rod (503) is provided with a positioning groove (506) connected with the positioning block (505).

5. A copper medal V-pole punching cleaning device according to claim 1, characterized in that: The suction assembly comprises a dust suction shell (303) fixed through the side wall of the protective shell (302), the inside of the dust suction shell (303) is fixed with a dust suction pipe (304), the collection assembly comprises a collection shell (305) fixed at the lower end of the support frame (1), the other end of the dust suction pipe (304) is in flow connection with the collection shell (305), the lower end surface of the collection shell (305) is rotatably connected with an opening and closing plate (306) through a rotating shaft, and the inside of the protective shell (302) is fixed with a processing support (4) for outputting bronze medal V-pole punching.

6. A copper medal V-pole punching cleaning device according to claim 1, characterized in that: The threaded assembly comprises a reciprocating screw (601) rotatably connected inside a movable groove (6), a movable block (602) slidably connected inside the movable groove (6), and the movable block (602) is in threaded connection with the reciprocating screw (601), and the lower end face edge of the support frame (1) is fixed with a second tooth block (605), the other end of the transmission shaft (603) is fixed with a transmission gear (604), and the transmission gear (604) is in meshing connection with the second tooth block (605).