Corrosion-resistant self-cleaning aluminum veneer polishing mechanism

By using a dual-head motor clamp for fixing, a negative pressure pump for cleaning, and an adjustable docking structure, the problem of polishing the angle of aluminum panels has been solved, achieving stable clamping, dust removal, and quick sandpaper replacement, thus improving the efficiency and quality of aluminum panel polishing.

CN223734611UActive Publication Date: 2025-12-30ZHEJIANG FENGYUAN NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202520185713.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2025-12-30
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

Existing aluminum panel polishing equipment cannot effectively solve the polishing problem at the corners of irregularly shaped corrosion-resistant self-cleaning aluminum panels, and it is easy to scratch the coating during polishing and difficult to quickly replace sandpaper.

Method used

A dual-head motor drives the clamp to fix the aluminum panel, and a negative pressure pump and brush are used to clean the dust. A hydraulic device and motor drive the sandpaper for polishing, and an adjustable docking structure enables angled polishing and quick sandpaper replacement.

Benefits of technology

It achieves stable clamping of aluminum panels, effectively removes dust, prevents scratches on the coating, and allows for flexible adjustment of the sandpaper angle for angled polishing and quick sandpaper replacement, thus improving polishing efficiency and effect.

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Abstract

The utility model relates to the technical field of polishing and grinding mechanisms, and discloses a corrosion-resistant self-cleaning aluminum veneer polishing mechanism which comprises an equipment bottom plate, a motor base is fixedly connected to the upper surface of the equipment bottom plate, and a fixed motor, a disc, an auxiliary rod and a supporting frame are fixedly connected to the interior of the motor base. The device is reasonable in structure, the corrosion-resistant self-cleaning aluminum veneer is placed between the two clamps, the two fixing lead screws are driven by the double-end motor, the two clamps move towards the middle of the connecting frame, then the corrosion-resistant self-cleaning aluminum veneer can be clamped and fixed, the movable lead screws are driven by the movable motor to enable the movable sliding blocks and the brushes to move in parallel, and therefore the corrosion-resistant self-cleaning aluminum veneer can be clamped and fixed. The surface, needing to be polished, of the corrosion-resistant self-cleaning aluminum veneer can be cleaned, negative pressure is generated in the adsorption box through the negative pressure pump while cleaning is conducted, and due to the fact that the negative pressure is generated in the adsorption box, dust and impurities generated in the cleaning process can enter the adsorption box through the adsorption opening and the adsorption pipe and then are intercepted and collected through the filter plate.
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Description

Technical Field

[0001] This utility model relates to the technical field of polishing and grinding mechanisms, specifically a polishing mechanism for corrosion-resistant self-cleaning aluminum single panels. Background Technology

[0002] The main purpose of polishing and grinding aluminum panels is to remove the oxide film, dirt, and uneven parts from the surface of the aluminum panels through mechanical or chemical methods, making the surface smoother, more beautiful, and more aesthetically pleasing. Polishing after spraying aluminum panels can improve the smoothness and aesthetics of the surface.

[0003] A polishing and grinding device for aluminum panels disclosed in Chinese Utility Model Patent Application Publication No. CN222244239U, while possessing mobility thanks to casters at the bottom and a housing that encloses the polishing structure to prevent dust spillage and protect the working environment, and an adsorption and fixing structure that adheres to the bottom of the aluminum panel allowing for simultaneous polishing and grinding of all four sides, and simultaneous grinding of the top and sides to reduce operation time and improve polishing efficiency, does not address the problem of dust and impurities accumulating on the surface of corrosion-resistant self-cleaning aluminum panels. Harder impurities can easily scratch the coating on the aluminum panel surface during polishing, affecting its corrosion resistance and self-cleaning properties. Furthermore, the aluminum panel is prone to displacement during polishing, making further polishing difficult. When the aluminum panel is L-shaped or other irregularly shaped, polishing the corners is inconvenient. Additionally, the polishing structure cannot quickly change the sandpaper based on the polishing progress. Therefore, we propose a novel device to solve these problems. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a polishing mechanism for corrosion-resistant self-cleaning aluminum panels. This solves the problems that the corner positions of irregularly shaped corrosion-resistant self-cleaning aluminum panels are not convenient for polishing operations, and that directly polishing the aluminum panel after spraying with dust and impurities can easily cause scratches on the spray coating and affect its performance.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model provides the following technical solution: a corrosion-resistant self-cleaning aluminum single-panel polishing mechanism, comprising a base plate, a motor base fixedly connected to the upper surface of the base plate, a fixed motor fixedly connected inside the motor base, a disc inserted into one end of the fixed motor, an auxiliary rod rotatably connected to the surface of the disc, a support frame rotatably connected inside the auxiliary rod, a base fixedly connected to one side of the support frame, a fixing bolt threaded through the internal thread of the base, a fixing plate threaded through the fixing bolt on the base, a docking motor fixedly connected inside the base, a docking seat inserted into one end of the docking motor, a docking bolt threaded through the internal thread of the docking seat, a docking plate threaded through the docking bolt on the docking seat, a hydraulic device fixedly connected to the upper surface of the base plate, a connecting frame fixedly connected to one side of the hydraulic device, a double-headed motor fixedly connected inside the connecting frame, a fixing screw inserted into one end of the double-headed motor, and a clamp threaded through the surface thread of the fixing screw.

[0008] Optionally, a fixed groove is provided on the upper surface of the equipment base plate, and the equipment base plate is slidably connected to the support frame through the fixed groove.

[0009] Optionally, the base has a connecting hole inside, and the docking seat has a connecting strip on one side, with the connecting hole and the connecting strip being rotatably connected.

[0010] Optionally, a limiting rod is provided on the lower surface of the base, and a limiting hole is provided inside the fixing plate. The limiting rod and the limiting hole are slidably connected to limit the fixing plate.

[0011] Optionally, a positioning rod is provided on the upper surface of the docking seat, and a positioning hole is provided inside the docking plate, with the positioning rod slidably connected to the positioning hole.

[0012] Optionally, an auxiliary frame is fixedly connected to the upper surface of the connecting frame, a movable motor is fixedly connected inside the auxiliary frame, a movable lead screw is inserted into one end of the movable motor, a movable slider is threaded through the surface of the movable lead screw, an auxiliary slide groove is provided on one side of the auxiliary frame, the auxiliary frame is slidably connected to the movable slider through the auxiliary slide groove, an auxiliary motor is fixedly connected inside the movable slider, an auxiliary seat is inserted into one end of the auxiliary motor, a brush is fixedly connected to one side of the auxiliary seat, and an adsorption port is provided on one side of the auxiliary seat.

[0013] Optionally, the number of adsorption ports is five, and all adsorption ports are located on one side of the auxiliary seat near the movable slider.

[0014] Optionally, an adsorption box is fixedly connected to one side of the movable slider, a negative pressure pump is fixedly connected to one side of the adsorption box, a filter plate is snapped into the inside of the adsorption box, an adsorption tube is inserted into one side of the adsorption box, and a hole is opened on one side of the auxiliary seat, and the auxiliary seat is fixedly connected to the adsorption tube through the hole.

[0015] In summary, the technical effects and advantages of this utility model are as follows:

[0016] 1. This utility model has a reasonable structure. By placing the corrosion-resistant self-cleaning aluminum panel between two clamps, and driving two fixed screws with a double-headed motor to move the two clamps towards the center of the connecting frame, the corrosion-resistant self-cleaning aluminum panel can be clamped and fixed. This reduces the possibility of displacement of the aluminum panel during polishing, which could hinder further polishing. It achieves the effect of clamping and fixing the aluminum panel with two clamps before polishing, preventing displacement during polishing. The moving motor drives the moving screws to move the moving slider and brush in parallel, thus polishing the required surface of the corrosion-resistant self-cleaning aluminum panel. During the cleaning process, a negative pressure pump creates negative pressure inside the adsorption box. This negative pressure draws dust and impurities generated during cleaning into the adsorption box through the adsorption port and tube. The dust and impurities are then intercepted and collected by the filter plate, reducing the accumulation of dust and impurities on the surface of the corrosion-resistant self-cleaning aluminum panel. During polishing, harder impurities can easily scratch the coating on the surface of the aluminum panel, thus affecting its corrosion resistance and self-cleaning performance. This process effectively cleans and adsorbs dust and impurities from the surface of the corrosion-resistant self-cleaning aluminum panel before polishing.

[0017] 2. In this utility model, the docking motor rotates the docking seat, allowing the angle of the docking seat to be adjusted according to the inclination of the corrosion-resistant self-cleaning aluminum panel to be polished. One end of the sandpaper to be polished is placed between the docking plate and the docking seat. The docking plate is moved downwards by rotating the docking bolts, thus clamping and fixing one end of the sandpaper between the docking plate and the docking seat. The other end of the sandpaper is then placed between the fixing plate and the base. The fixing plate is moved upwards by rotating the fixing bolts, thus clamping and fixing the other end of the sandpaper between the fixing plate and the base. A hydraulic device moves the connecting frame and the corrosion-resistant self-cleaning aluminum panel parallel to each other until they reach the desired polishing position. The paper position is controlled by a fixed motor rotating a disc, which causes the auxiliary rod to drive the support frame and sandpaper to move back and forth continuously, thus polishing the surface of the corrosion-resistant self-cleaning aluminum panel. This reduces the inconvenience of polishing the corners of the corrosion-resistant self-cleaning aluminum panel when it is L-shaped or other irregularly shaped, and also addresses the issue of the polishing structure not being able to quickly change the sandpaper according to the polishing condition. It achieves the effect of being able to polish the corners of the corrosion-resistant self-cleaning aluminum panel by adjusting the angle of the sandpaper according to the corner position of the aluminum panel, and also allows for quick sandpaper replacement by rotating the connecting bolts and fixing bolts. Attached Figure Description

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

[0019] Figure 2 This is an exploded view of the base plate structure of the equipment of this utility model;

[0020] Figure 3 This is an exploded view of the base structure of this utility model;

[0021] Figure 4 This is an exploded view of the connecting frame structure of this utility model;

[0022] Figure 5 This is an exploded view of the auxiliary frame structure of this utility model.

[0023] In the diagram: 1. Equipment base plate; 2. Motor base; 3. Fixed motor; 4. Disc; 5. Auxiliary rod; 6. Support frame; 7. Base; 8. Fixing bolt; 9. Fixing plate; 10. Connecting motor; 11. Connecting seat; 12. Connecting bolt; 13. Connecting plate; 14. Hydraulic device; 15. Connecting frame; 16. Double-headed motor; 17. Fixed lead screw; 18. Clamp; 19. Auxiliary frame; 20. Moving motor; 21. Moving lead screw; 22. Moving slider; 23. Auxiliary motor; 24. Auxiliary seat; 25. Brush; 26. Adsorption port; 27. Adsorption box; 28. Negative pressure pump; 29. ​​Filter plate; 30. Adsorption tube. Detailed Implementation

[0024] 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.

[0025] Example: Reference Figures 1-5 The corrosion-resistant self-cleaning aluminum single-panel polishing mechanism shown includes a base plate 1, a motor base 2 fixedly connected to the upper surface of the base plate 1, a fixed motor 3 fixedly connected inside the motor base 2, a disc 4 inserted into one end of the fixed motor 3, an auxiliary rod 5 rotatably connected to the surface of the disc 4, a support frame 6 rotatably connected inside the auxiliary rod 5, a base 7 fixedly connected to one side of the support frame 6, a fixing bolt 8 threaded through the inside of the base 7, a fixing plate 9 threaded through the base 7 via the fixing bolt 8, a docking motor 10 fixedly connected inside the base 7, a docking seat 11 inserted into one end of the docking motor 10, a docking bolt 12 threaded through the inside of the docking seat 11, a docking plate 13 threaded through the docking seat 11 via the docking bolt 12, a hydraulic device 14 fixedly connected to the upper surface of the base plate 1, a connecting frame 15 fixedly connected to one side of the hydraulic device 14, a double-headed motor 16 fixedly connected inside the connecting frame 15, a fixing screw 17 inserted into one end of the double-headed motor 16, and a clamp 18 threaded through the surface of the fixing screw 17.

[0026] As a preferred embodiment of this example, Figure 4 and Figure 5As shown, a hydraulic device 14 is fixedly connected to the upper surface of the equipment base plate 1. A connecting frame 15 is fixedly connected to one side of the hydraulic device 14. A double-headed motor 16 is fixedly connected inside the connecting frame 15. A fixed lead screw 17 is inserted into one end of the double-headed motor 16. A clamp 18 passes through the threaded surface of the fixed lead screw 17. An auxiliary frame 19 is fixedly connected to the upper surface of the connecting frame 15. A moving motor 20 is fixedly connected inside the auxiliary frame 19. A moving lead screw 21 is inserted into one end of the moving motor 20. A moving slider 22 passes through the threaded surface of the moving lead screw 21. An auxiliary slide groove is provided on one side of the auxiliary frame 19. The auxiliary frame 19 is slidably connected to the moving slider 22 through the auxiliary slide groove. An auxiliary motor 23 is fixedly connected inside the movable slider 22. One end of the auxiliary motor 23 is inserted into an auxiliary seat 24. A brush 25 is fixedly connected to one side of the auxiliary seat 24. Five suction ports 26 are located on one side of the auxiliary seat 24, near the movable slider 22. An adsorption box 27 is fixedly connected to one side of the movable slider 22. A negative pressure pump 28 is fixedly connected to one side of the adsorption box 27. A filter plate 29 is snapped into the inside of the adsorption box 27. An adsorption tube 30 is inserted into one side of the adsorption box 27. A hole is opened on one side of the auxiliary seat 24, through which the auxiliary seat 24 is fixedly connected to the adsorption tube 30. During use... In this process, by placing the corrosion-resistant self-cleaning aluminum panel between two clamps 18, and driving two fixed screws 17 with a double-headed motor 16, the two clamps 18 are moved towards the center of the connecting frame 15, thus clamping and fixing the corrosion-resistant self-cleaning aluminum panel. This reduces the possibility of displacement of the aluminum panel during polishing, which could hinder further polishing. The two clamps 18 are used to clamp and fix the aluminum panel before polishing, preventing displacement during the polishing process. The moving motor 20 drives the moving screw 21 to move the moving slider 22 and brush 25 in parallel, thus cleaning the surface of the corrosion-resistant self-cleaning aluminum panel that needs polishing. During cleaning, a negative pressure is generated inside the adsorption box 27 by the negative pressure pump 28. Due to the negative pressure inside the adsorption box 27, the dust and impurities generated during cleaning can enter the adsorption box 27 through the adsorption port 26 and the adsorption tube 30. Then, the dust and impurities are intercepted and collected by the filter plate 29, which reduces the accumulation of dust and impurities on the surface of the corrosion-resistant self-cleaning aluminum panel. When polishing, harder impurities can easily scratch the coating on the surface of the aluminum panel, thus affecting the corrosion resistance and self-cleaning performance of the corrosion-resistant self-cleaning aluminum panel. This achieves the effect of cleaning the dust and impurities on the surface of the corrosion-resistant self-cleaning aluminum panel before polishing and adsorbing and collecting the dust and impurities on its surface.

[0027] like Figures 1-3As shown, in this embodiment, a motor base 2 is fixedly connected to the upper surface of the equipment base plate 1, and a fixed motor 3 is fixedly connected inside the motor base 2. A disc 4 is inserted into one end of the fixed motor 3, and an auxiliary rod 5 is rotatably connected to the surface of the disc 4. A support frame 6 is rotatably connected inside the auxiliary rod 5. A fixed groove is provided on the upper surface of the equipment base plate 1, and the equipment base plate 1 is slidably connected to the support frame 6 through the fixed groove. A base 7 is fixedly connected to one side of the support frame 6, and a fixing bolt 8 is threaded through the inside of the base 7. A fixing plate 9 is threaded through the base 7 through the fixing bolt 8. A limit rod is provided on the lower surface of the base 7, and a limit rod is provided inside the fixing plate 9. The limiting rod and the limiting hole are slidably connected to limit the position of the fixed plate 9. A docking motor 10 is fixedly connected inside the base 7. One end of the docking motor 10 is inserted into a docking seat 11. A connecting hole is provided inside the base 7. A connecting strip is provided on one side of the docking seat 11. The connecting hole and the connecting strip are rotatably connected. A docking bolt 12 passes through the internal thread of the docking seat 11. A docking plate 13 passes through the docking seat 11 via the docking bolt 12. A positioning rod is provided on the upper surface of the docking seat 11. A positioning hole is provided inside the docking plate 13. The positioning rod and the positioning hole are slidably connected. During use, the docking motor 10 rotates the docking seat 11 to limit the position of the fixed plate 9. The angle of the connector 11 is adjusted according to the tilt of the corrosion-resistant self-cleaning aluminum panel to be polished. One end of the sandpaper to be polished is placed between the connector plate 13 and the connector 11. The connector plate 13 is moved downward by rotating the connector bolt 12, thereby clamping and fixing one end of the sandpaper between the connector plate 13 and the connector 11. The other end of the sandpaper is then placed between the fixing plate 9 and the base 7. The fixing plate 9 is moved upward by rotating the fixing bolt 8, thereby clamping and fixing the other end of the sandpaper between the fixing plate 9 and the base 7. The connecting frame 15 and the corrosion-resistant self-cleaning aluminum panel are moved parallel to each other by the hydraulic device 14 until they are in the position of the sandpaper. By rotating the disc 4 via the fixed motor 3, the auxiliary rod 5 drives the support frame 6 and the sandpaper to move back and forth continuously, thus polishing the surface of the corrosion-resistant self-cleaning aluminum panel. This reduces the inconvenience of polishing the corner positions of the corrosion-resistant self-cleaning aluminum panel when it is L-shaped or other irregularly shaped, and also addresses the issue of the polishing structure not being able to quickly change the sandpaper according to the polishing condition. This achieves the effect of being able to adjust the angle of the sandpaper according to the corner position of the aluminum panel when polishing the corner position, thus enabling polishing of the corner position. At the same time, the sandpaper can be quickly changed by rotating the connecting bolt 12 and the fixing bolt 8.

[0028] The working principle of this practical application is as follows:

[0029] During use, the corrosion-resistant self-cleaning aluminum panel is first placed between two clamps 18. The double-headed motor 16 drives two fixed lead screws 17, moving the clamps 18 towards the center of the connecting frame 15 to clamp and fix the panel. The moving motor 20 drives the moving lead screw 21, causing the moving slider 22 and brush 25 to move parallel, cleaning the surface of the aluminum panel requiring polishing. Simultaneously, the negative pressure pump 28 creates negative pressure inside the adsorption box 27. This negative pressure allows dust and impurities generated during cleaning to enter the adsorption box 27 through the adsorption port 26 and adsorption tube 30, where they are intercepted and collected by the filter plate 29. The docking motor 10 rotates the docking seat 11, causing the docking seat 11 to... The tilt angle of the corrosion-resistant self-cleaning aluminum panel to be polished is adjusted by placing one end of the sandpaper to be polished between the mating plate 13 and the mating seat 11, and rotating the mating bolt 12 to move the mating plate 13 downward, thereby clamping and fixing one end of the sandpaper between the mating plate 13 and the mating seat 11. Then, the other end of the sandpaper is placed between the fixing plate 9 and the base 7, and rotating the fixing bolt 8 to move the fixing plate 9 upward, thereby clamping and fixing the other end of the sandpaper between the fixing plate 9 and the base 7. The connecting frame 15 and the corrosion-resistant self-cleaning aluminum panel are moved parallel to each other by the hydraulic device 14 until they are in the position of the sandpaper. The fixed motor 3 rotates the disc 4, causing the auxiliary rod 5 to drive the support frame 6 and the sandpaper to move back and forth continuously, thus polishing the surface of the corrosion-resistant self-cleaning aluminum panel.

[0030] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that can control it.

[0031] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A polishing mechanism for corrosion-resistant self-cleaning aluminum veneer, comprising a device base plate (1), characterized in that: The upper surface of the equipment base plate (1) is fixedly connected with a motor seat (2), the inside of the motor seat (2) is fixedly connected with a fixed motor (3), one end of the fixed motor (3) is inserted with a disc (4), the surface of the disc (4) is rotatably connected with an auxiliary rod (5), the inside of the auxiliary rod (5) is rotatably connected with a support frame (6), one side of the support frame (6) is fixedly connected with a base (7), the inside of the base (7) is threadedly penetrated with a fixing bolt (8), the base (7) is threadedly penetrated with a fixed plate (9) through the fixing bolt (8), the inside of the base (7) is fixedly connected with a docking motor (10), one end of the docking motor (10) is inserted with a docking seat (11), the inside of the docking seat (11) is threadedly penetrated with a docking bolt (12), the docking seat (11) is threadedly penetrated with a docking plate (13) through the docking bolt (12), the upper surface of the equipment base plate (1) is fixedly connected with a hydraulic device (14), one side of the hydraulic device (14) is fixedly connected with a connecting frame (15), the inside of the connecting frame (15) is fixedly connected with a double-head motor (16), one end of the double-head motor (16) is inserted with a fixed lead screw (17), the surface of the fixed lead screw (17) is threadedly penetrated with a clamp (18).

2. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 1, characterized in that: The upper surface of the equipment base plate (1) is provided with a fixed sliding groove, and the equipment base plate (1) is slidably connected with the support frame (6) through the fixed sliding groove.

3. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 1, characterized in that: The inside of the base (7) is provided with a connecting hole, one side of the docking seat (11) is provided with a connecting strip, and the connecting hole is rotatably connected with the connecting strip.

4. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 1, characterized in that: The lower surface of the base (7) is provided with a limiting rod, the inside of the fixed plate (9) is provided with a limiting hole, and the limiting rod and the limiting hole are slidably connected to limit the fixed plate (9).

5. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 1, characterized in that: The upper surface of the docking seat (11) is provided with a positioning rod, the inside of the docking plate (13) is provided with a positioning hole, and the positioning rod and the positioning hole are slidably connected.

6. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 1, characterized in that: The upper surface of the connecting frame (15) is fixedly connected with an auxiliary frame (19), the inside of the auxiliary frame (19) is fixedly connected with a moving motor (20), one end of the moving motor (20) is inserted with a moving lead screw (21), the surface of the moving lead screw (21) is threadedly penetrated with a moving sliding block (22), one side of the auxiliary frame (19) is provided with an auxiliary sliding groove, the auxiliary frame (19) is slidably connected with the moving sliding block (22) through the auxiliary sliding groove, the inside of the moving sliding block (22) is fixedly connected with an auxiliary motor (23), one end of the auxiliary motor (23) is inserted with an auxiliary seat (24), one side of the auxiliary seat (24) is fixedly connected with a brush (25), and one side of the auxiliary seat (24) is provided with a suction port (26).

7. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 6, characterized in that: The number of the suction ports (26) is five, and the suction ports (26) are located on one side of the auxiliary seat (24) close to the moving sliding block (22).

8. The polishing mechanism for corrosion-resistant self-cleaning aluminum veneer according to claim 6, characterized in that: One side of the mobile slider (22) is fixedly connected with an adsorption box (27), one side of the adsorption box (27) is fixedly connected with a negative pressure pump (28), the inside of the adsorption box (27) is clamped with a filter plate (29), one side of the adsorption box (27) is inserted with an adsorption pipe (30), one side of the auxiliary seat (24) is provided with a hole, and the auxiliary seat (24) is fixedly connected with the adsorption pipe (30) through the hole.

Citation Information

Patent Citations

  • Polishing and grinding device for aluminum veneer

    CN222244239U