Low-power-consumption chemical cleaning machine for reflector production

By designing a clamping jacket to rotate the mounting frame and engage with the toothed plate, the problem of existing low-power mirror cleaning machines being able to only clean one side is solved, achieving a fully automated and efficient mirror cleaning process.

CN121624152APending Publication Date: 2026-03-10苏州浩联光电科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-18
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing chemical cleaning machines used in the production of low-power reflectors can only clean the front of the reflector and need to be flipped periodically to complete a thorough cleaning, which affects cleaning efficiency.

Method used

A low-power chemical cleaning machine for mirror production was designed. By using a clamping jacket to drive the mounting frame to rotate on a toothed plate, combined with the meshing of a guide plate and gears, the machine achieves all-round cleaning and transfer of mirrors, ensuring the stability and automation of the cleaning process.

Benefits of technology

It achieves fully automated cleaning of low-power reflectors, improving cleaning efficiency and resource utilization, and ensuring thorough removal of impurities from the reflector surface.

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Abstract

The invention relates to the technical field of low-power-consumption reflector production devices, and discloses a low-power-consumption reflector production chemical cleaning machine which comprises a chemical cleaning box, a flushing box and a drying box, and the chemical cleaning box, the flushing box and the drying box are sleeved with a protective cover. And a chemical flushing device is mounted in the protective cover and located at the upper end of the chemical cleaning box through a hydraulic telescopic rod. According to the chemical cleaning machine for low-power-consumption reflector production, in the chemical cleaning box, a chemical cleaning agent is driven by a chemical flushing device to flush a low-power-consumption reflector, and meanwhile the low-power-consumption reflector moves into the flushing box through a clamping outer sleeve; the distilled water in the flushing box flushes the residual chemical cleaning agent on the surface of the low-power-consumption reflecting mirror, the low-power-consumption reflecting mirror is transferred into the drying box after flushing is finished, the drying box dries the low-power-consumption reflecting mirror, and full automation of cleaning of the low-power-consumption reflecting mirror is ensured.
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Description

Technical Field

[0001] This invention relates to the field of low-power mirror production equipment technology, specifically a chemical cleaning machine for low-power mirror production. Background Technology

[0002] Low-power mirrors, as the name suggests, are mirrors that reflect light with minimal energy loss through special design and material selection. These mirrors are commonly used in optical systems, laser devices, communication systems, and other fields, especially in scenarios where energy saving and system efficiency improvement are required.

[0003] Low-power reflectors are coated with a special material on one side and require polishing during production, resulting in impurities on the reflector surface. Therefore, chemical cleaning agents are needed to clean these impurities. Common cleaning devices achieve a rinsing effect by placing the reflector on a specific slide rail and spraying cleaning fluid onto it. However, these devices can only clean the front of the reflector. After cleaning, the reflector needs to be flipped periodically to continue rinsing, which affects the cleaning efficiency. Therefore, we propose a chemical cleaning machine for the production of low-power reflectors. Summary of the Invention

[0004] To address the shortcomings of existing low-power chemical cleaning machines used in the production of mirrors, this invention provides a low-power chemical cleaning machine for mirror production. This machine features a design where, when the clamping sleeve moves the mounting frame to the upper end of the toothed plate, the gears mesh with the toothed plate, allowing the mounting frame to rotate inside the clamping sleeve. This means the transverse guide plate remains in a flipped state during the cleaning process, thereby improving rinsing efficiency and solving the problems mentioned in the background art.

[0005] This invention provides the following technical solution: a low-power chemical cleaning machine for mirror production, comprising a chemical cleaning tank, a rinsing tank, and a drying tank. A protective cover is fitted externally to the chemical cleaning tank, rinsing tank, and drying tank. A chemical rinsing device is installed inside the protective cover at the upper end of the chemical cleaning tank via a hydraulic telescopic rod. A distilled water rinsing device is also installed inside the protective cover at the upper end of the rinsing tank via a hydraulic telescopic rod. A first transmission pipe is installed at the upper end of both the chemical rinsing device and the distilled water rinsing device. A first water pump is installed inside the first transmission pipe. Two sets of first lead screws are installed on the sides of the cleaning tank, rinsing tank, and drying tank. A clamping sleeve is installed on the outside of the first lead screw through a position adjustment device. A clamping structure for clamping the reflector is installed on the inside of the clamping sleeve. A gear is fixed on the side of the clamping mechanism. A bottom guide plate is installed at the lower end of the interior of the chemical cleaning tank and rinsing tank. A vertical guide plate is fixed inside the chemical cleaning tank and rinsing tank and above the bottom guide plate. A top guide plate is installed at the upper end of the vertical guide plate. A horizontal guide plate is installed inside the drying tank and on one side of the top guide plate.

[0006] Preferably, the position adjustment device includes a first sleeve threaded onto the outside of a first lead screw, a second lead screw installed inside the first sleeve, and a second sleeve threaded onto the inside of the second lead screw, wherein a clamping outer sleeve is fixed to the lower end of the second sleeve, and the second sleeve is fitted against the inner wall of the chemical cleaning tank and the rinsing tank.

[0007] Preferably, the clamping mechanism includes a mounting frame movably sleeved inside the clamping outer sleeve, a first clamping plate fixed to the inner side of the mounting frame, a second clamping plate movably sleeved at the upper end of the first clamping plate, an adjusting nut installed between the first clamping plate and the second clamping plate, and a gear fixed to one side of the mounting frame.

[0008] Preferably, the chemical cleaning tank and rinsing tank are equipped with gear plates that mesh with the gears, and the gear plates are located at the lower end of the interior of the chemical cleaning tank and rinsing tank.

[0009] Preferably, the bottom guide plate and the vertical guide plate have openings inside, wherein the spacing between the openings is the same as the spacing between the two sets of second clamping plates, and the size of the openings is the same as the diameter of the gear.

[0010] Preferably, a guide slider is provided on the outer side of the gear, the bottom guide plate and the top guide plate are movably sleeved inside the bottom guide plate, and the vertical guide plate is opened in the middle of the openings inside the bottom guide plate and the top guide plate.

[0011] Preferably, a cleaning roller is installed inside the protective cover and at the upper end of the drying box, a drying box is installed inside the drying box, the cleaning roller is installed at the upper end of the drying box, and the drying box is installed at the upper and lower ends of the horizontal guide plate.

[0012] Preferably, a placement box is installed on the upper part of the protective cover, and a second transmission pipe is installed on the side of the chemical cleaning box and the rinsing box. A second water pump is installed in the middle of the second transmission pipe, and the ends of the first water pump and the second transmission pipe both extend into the interior of the placement box.

[0013] Preferably, nozzles are installed at equal intervals at the lower ends of the chemical rinsing device and the distilled water rinsing device, the upper end of the chemical rinsing device is fitted with a box filled with chemical cleaning agent, and the upper end of the distilled water rinsing device is fitted with a box filled with distilled water.

[0014] Compared with existing low-power chemical cleaning machines used in the production of mirrors, the present invention has the following advantages: 1. This chemical cleaning machine for producing low-power reflectors consists of a chemical cleaning tank, a rinsing tank, and a drying tank arranged at equal intervals. After the low-power reflector is moved into the rinsing tank by the clamping jacket, the distilled water inside the rinsing tank rinses off the residual chemical cleaning agent on the surface of the low-power reflector. After rinsing, the reflector is transferred to the drying tank for drying, ensuring full automation during the cleaning process.

[0015] 2. This chemical cleaning machine for producing low-power reflectors features a bottom guide plate, a vertical guide plate, and a top guide plate installed inside the chemical cleaning tank and rinsing tank. When the low-power reflector is fixed inside the clamping jacket and the first clamping plate moves downward, the vertical guide plate engages inside the guide slider, ensuring the stability of the mounting frame within the clamping jacket. Simultaneously, the bottom guide plate pulls the guide slider's position as the clamping jacket moves laterally, and the top guide plate pulls and fixes the top of the clamping jacket as it moves laterally, ensuring stability during transport. After the clamping jacket moves to the middle of the bottom of the chemical cleaning tank and rinsing tank, the gears mesh with the gear plate, causing the low-power reflector to rotate as it moves, ensuring thorough cleaning of the low-power reflector from all angles. Therefore, the low-power reflector remains rotated during cleaning. Furthermore, during transport, the bottom guide plate, vertical guide plate, and top guide plate engage with the guide slider to ensure stability during movement.

[0016] 3. This low-power reflector production chemical cleaning machine has a first transmission pipe installed at the top of the chemical rinsing device and the distilled water rinsing device. The first water pump drives the liquid inside the placement box to be transported downwards. At the same time, the second transmission pipe and the second water pump drive the cleaning liquid at the bottom of the chemical cleaning box and the rinsing box to be transferred to the inside of the placement box, ensuring the circulation of chemical cleaning agent and distilled water and improving resource utilization. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the main structure of the present invention; Figure 2 For the present invention Figure 1 Rear view structural diagram; Figure 3 For the present invention Figure 1 Schematic diagram of cross-section structure; Figure 4 For the present invention Figure 1 A sectional view of the top cover structure is missing. Figure 5 This is a schematic diagram of the clamping structure in the moving state of the present invention; Figure 6 This is a partially enlarged schematic diagram of the clamping structure of the present invention; Figure 7 This is a partially enlarged structural schematic diagram of the position adjustment device of the present invention.

[0018] In the diagram: 1. Chemical cleaning tank; 2. Rinsing tank; 3. Drying tank; 4. Protective cover; 5. Hydraulic telescopic rod; 6. Chemical rinsing device; 7. Distilled water rinsing device; 8. First transmission pipe; 9. First water pump; 10. Placement box; 11. Second transmission pipe; 12. Second water pump; 13. First lead screw; 14. First clamp; 15. Second lead screw; 16. Second clamp; 17. Clamping outer sleeve; 18. Mounting frame; 19. First clamping plate; 20. Second clamping plate; 21. Adjusting nut; 22. Gear; 23. Guide slider; 24. Toothed plate; 25. Bottom guide plate; 26. Vertical guide plate; 27. Top guide plate; 28. Horizontal guide plate; 29. ​​Cleaning roller; 30. Drying tank. Detailed Implementation

[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 A chemical cleaning machine for producing low-power reflectors includes a chemical cleaning tank 1, a rinsing tank 2, and a drying tank 3. The chemical cleaning tank 1, rinsing tank 2, and drying tank 3 sequentially clean, rinse, and dry the low-power reflectors, improving the drying efficiency. A protective cover 4 is fitted onto the outside of the chemical cleaning tank 1, rinsing tank 2, and drying tank 3, providing external protection. A chemical rinsing device 6 is installed inside the protective cover 4, located at the upper end of the chemical cleaning tank 1, via a hydraulic telescopic rod 5. The chemical rinsing device 6 drives the chemical cleaning agent to clean the low-power reflector. Inside the protective cover 4, at the top of the rinsing tank 2, a distilled water rinsing device 7 is installed via a hydraulic telescopic rod 5. The distilled water rinsing device 7 rinses the surface of the low-power reflector with the cleaning solution after cleaning. A set of first transmission pipes 8 are respectively installed at the top of the chemical rinsing device 6 and the distilled water rinsing device 7. A first water pump 9 is installed inside the first transmission pipe 8. Two sets of first lead screws 13 are installed on the sides of the chemical cleaning tank 1, the rinsing tank 2, and the drying tank 3. The first lead screws 13 carry… The position of the clamping jacket 17 can be adjusted by moving it back and forth and up and down. The clamping jacket 17 is installed on the outside of the first lead screw 13 through a position adjustment device. A clamping structure for clamping the reflector is installed on the inside of the clamping jacket 17. A gear 22 is fixed on the side of the clamping mechanism. After the gear 22 meshes with the gear plate 24, it can drive the mounting frame 18 to rotate. A bottom guide plate 25 is installed at the lower end of the interior of the chemical cleaning tank 1 and the rinsing tank 2. The interior of the chemical cleaning tank 1 and the rinsing tank 2 is located on the bottom guide plate 25. A vertical guide plate 26 is fixed at one end, and a top guide plate 27 is installed at the upper end of the vertical guide plate 26. The bottom guide plate 25, the vertical guide plate 26 and the top guide plate 27 are movably sleeved inside the guide slider 23. That is, after the gear 22 stops meshing with the toothed plate 24, the bottom guide plate 25, the vertical guide plate 26 and the top guide plate 27 limit the movement trajectory of the gear 22, ensuring that the mounting frame 18 remains stable when it is confined inside the clamping outer sleeve 17. A horizontal guide plate 28 is installed inside the drying oven 3 and on one side of the top guide plate 27.

[0021] Please see Figure 7The position adjustment device includes a first sleeve 14 threaded onto the outside of a first lead screw 13, a second lead screw 15 installed inside the first sleeve 14, and a second sleeve 16 threaded onto the inside of the second lead screw 15. A clamping outer sleeve 17 is fixed to the lower end of the second sleeve 16. The second sleeve 16 is fitted against the inner walls of the chemical cleaning tank 1 and the rinsing tank 2. When the first lead screw 13 is activated, the threaded movement between the first lead screw 13 and the first sleeve 14 causes the first lead screw 13 to move the first sleeve 14 laterally within the chemical cleaning tank 1, the rinsing tank 2, and the drying tank 3. Simultaneously, the second lead screw 15 is activated, causing the threaded movement between the second lead screw 15 and the second sleeve 16, thus adjusting the height of the second sleeve 16. This ensures that the reflector can be moved to the cleaning area, achieving the effect of position adjustment during the cleaning process.

[0022] Please see Figure 6 The clamping mechanism includes a mounting frame 18 that is movably sleeved inside the clamping outer sleeve 17. A first clamping plate 19 is fixed inside the mounting frame 18. A second clamping plate 20 is movably sleeved on the upper end of the first clamping plate 19. An adjusting nut 21 is installed between the first clamping plate 19 and the second clamping plate 20. A gear 22 is fixed on one side of the mounting frame 18. By placing the low-power reflector between the first clamping plate 19 and the second clamping plate 20, the adjusting nut 21 is rotated according to the different thicknesses of the low-power reflector to ensure that the first clamping plate 19 and the second clamping plate 20 press and limit the low-power reflector, thus ensuring the stability of the low-power reflector during positioning.

[0023] Please see Figure 4 and Figure 6 The chemical cleaning tank 1 and the rinsing tank 2 are equipped with toothed plates 24 that mesh with gear 22. The toothed plates 24 are located at the lower end of the chemical cleaning tank 1 and the rinsing tank 2. When the first clamping plate 19 drives the gear 22 to mesh with the toothed plate 24, the clamping sleeve 17 moves laterally at the same time. The clamping sleeve 17 drives the gear 22 to mesh with the toothed plate 24. That is, the gear 22 drives the mounting frame 18 to rotate inside the clamping sleeve 17. After the mounting frame 18 rotates, it fully contacts the chemical cleaning agent, thereby improving the cleaning effect.

[0024] Please see Figure 5The bottom guide plate 25 and the vertical guide plate 26 have openings inside, the spacing between which is the same as the spacing between the two sets of second clamping plates 20, and the size of the opening is the same as the diameter of the gear 22. The bottom guide plate 25 is installed on one side of the toothed plate 24. When the gear 22 rotates and moves to one side of the bottom guide plate 25, the bottom guide plate 25 is engaged inside the guide slider 23. That is, when the bottom guide plate 25 moves into the guide slider 23, the toothed plate 24 limits the gear 22, preventing the gear 22 from rotating and ensuring the stability of the mounting frame 18 in the clamping sleeve 17. This avoids the problem of the mounting frame 18 shifting position after rotation. After the gear 22 moves into the bottom guide plate 25, the vertical guide plate 26 extends into the vertical mounting guide slider 23, and at the same time controls the clamping sleeve 17 to extend into the top guide plate 27. After being pulled by the top guide plate 27, the movement trajectory of the clamping sleeve 17 is limited, ensuring the stability of the clamping sleeve 17 during movement and positioning. Please see Figure 5 A guide slider 23 is provided on the outer side of the gear 22. The bottom guide plate 25 and the top guide plate 27 are movably sleeved inside the bottom guide plate 25. The vertical guide plate 26 is opened in the middle of the openings inside the bottom guide plate 25 and the top guide plate 27. The vertical guide plate 26 is installed between the bottom guide plate 25 and the top guide plate 27. The vertical guide plate 26 pulls the guide slider 23 vertically to ensure that the mounting frame 18 remains stable inside the clamping jacket 17 when the clamping jacket 17 is moved up and down.

[0025] Please see Figure 3 A cleaning roller 29 is installed inside the protective cover 4 and at the top of the drying chamber 3. A drying chamber 30 is installed inside the drying chamber 3. The cleaning roller 29 is installed at the top of the drying chamber 30. The drying chamber 30 is installed at the top and bottom of the horizontal guide plate 28. When the drying chamber 30 is installed at the top of the drying chamber 3, the drying chamber 30 is started. The drying chamber 30 dries the product that has passed through the clamping jacket 17. At the same time, the drying chamber 30 contacts the outside of the clamping jacket 17, that is, the drying chamber 30 effectively cleans the water droplets on the surface of the clamping jacket 17, thereby improving its drying efficiency.

[0026] Please see Figure 1 and Figure 2A placement box 10 is installed on the upper part of the protective cover 4. A second transmission pipe 11 is installed on the side of the chemical cleaning box 1 and the rinsing box 2. A second water pump 12 is installed in the middle of the second transmission pipe 11. The ends of the first water pump 9 and the second transmission pipe 11 extend into the interior of the placement box 10. The lower end of the second transmission pipe 11 is installed at the lower end of the chemical cleaning box 1 and the rinsing box 2. When the first transmission pipe 8 is started, the first water pump 9 pulls and transports the chemical cleaning agent inside the placement box 10 to the interior of the chemical rinsing device 6 through the first transmission pipe 8. The chemical rinsing device 6 sprays the chemical cleaning agent onto the low-power reflector, thereby improving the external cleaning efficiency of the low-power reflector. This allows the chemical cleaning agent to circulate and be transported within the chemical cleaning box 1, improving the recycling rate of the chemical cleaning agent.

[0027] Please see Figure 1 and Figure 3 The lower ends of the chemical rinsing device 6 and the distilled water rinsing device 7 are equipped with nozzles at equal intervals. The upper end of the chemical rinsing device 6 is equipped with a placement box 10 filled with chemical cleaning agent, and the upper end of the distilled water rinsing device 7 is equipped with a placement box 10 filled with distilled water. The nozzles installed inside the chemical rinsing device 6 and the distilled water rinsing device 7, along with the first transmission pipe 8, the first water pump 9, the placement box 10, the second transmission pipe 11, and the second water pump 12, drive the chemical cleaning agent and distilled water to circulate and spray inside the chemical cleaning box 1 and the rinsing box 2. The chemical cleaning agent cleans the low-power reflector. At the same time, after the low-power reflector moves into the rinsing box 2, the distilled water rinses the cleaned low-power reflector, effectively cleaning the low-power reflector and avoiding the need to remove the cleaning agent, thus improving the rinsing efficiency of the low-power reflector.

[0028] Working Principle: In use, the low-power reflector is installed inside the mounting frame 18 and the first clamping plate 19. Simultaneously, the adjusting nut 21 is rotated to ensure that the mounting frame 18 and the first clamping plate 19 clamp and fix the low-power reflector. The first lead screw 13 and the second lead screw 15 are activated, driving the clamping sleeve 17 to move horizontally and vertically. Initially, the clamping sleeve 17 moves the gear 22 to the inside of the vertical guide plate 26 installed on the left side of the chemical cleaning tank 1. The vertical guide plate 26 extends into the inside of the guide slider 23, guiding the movement trajectory of the guide slider 23 and ensuring that the position of the second clamping plate 20 is limited inside the clamping sleeve 17. Simultaneously, the vertical guide plate 26 pulls the clamping sleeve 17 to the inside of the bottom guide plate 25, which pulls the guide slider 23 along its lateral movement trajectory. When gear 22 moves, it remains stable. When clamping sleeve 17 moves to the upper end of gear plate 24, it meshes with gear 22, ensuring that gear 22 remains rotating. Clamping sleeve 17 rotates after moving into chemical cleaning tank 1 and rinsing tank 2. At the same time, chemical cleaning tank 1 drives chemical cleaning agent to rinse the surface of low-power reflector. After the low-power reflector moves into rinsing tank 2, distilled water rinses the residual cleaning liquid on the surface of the low-power reflector, improving the full rinsing efficiency of the low-power reflector. At the same time, the low-power reflector moves into drying tank 3. The horizontal guide plate 28 limits the position of clamping sleeve 17, and the cleaning roller 29 emits heated gas to dry the surface of the low-power reflector. Drying tank 30 cleans the water stains on the surface of the low-power reflector, realizing the fully automatic cleaning efficiency of the low-power reflector.

[0029] Although embodiments of the 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 invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A low-power chemical cleaning machine for producing mirrors, comprising a chemical cleaning tank (1), a rinsing tank (2), and a drying tank (3), wherein a protective cover (4) is sleeved on the outside of the chemical cleaning tank (1), the rinsing tank (2), and the drying tank (3), and a chemical rinsing device (6) is installed inside the protective cover (4) and at the upper end of the chemical cleaning tank (1) via a hydraulic telescopic rod (5), characterized in that: The inside of the protective cover (4) and the upper end of the flushing tank (2) are provided with a distilled water flushing device (7) through a hydraulic telescopic rod (5), and the upper end of the chemical flushing device (6) and the distilled water flushing device (7) is respectively provided with a group of first transmission pipes (8), the inside of the first transmission pipe (8) is provided with a first water pump (9), the side of the chemical cleaning tank (1), the flushing tank (2) and the drying tank (3) is provided with two groups of first lead screws (13), the outside of the first lead screw (13) is provided with a clamping sleeve (17) through a position adjusting device, the inside of the clamping sleeve (17) is provided with a clamping structure for clamping the mirror, the side of the clamping mechanism is fixed with a gear (22), the lower end inside the chemical cleaning tank (1) and the flushing tank (2) is provided with a bottom guide plate (25), the inside of the chemical cleaning tank (1) and the flushing tank (2) and the upper end of the bottom guide plate (25) is fixed with a vertical guide plate (26), the upper end of the vertical guide plate (26) is matched with a top guide plate (27), the inside of the drying tank (3) and one side of the top guide plate (27) is provided with a horizontal guide plate (28).

2. The low-power consumption chemical cleaning machine for mirrors according to claim 1, characterized in that: The position adjusting device comprises a first clamping sleeve (14) screwed on the outside of the first lead screw (13), the inside of the first clamping sleeve (14) is provided with a second lead screw (15), the inside of the second lead screw (15) is screwed with a second clamping sleeve (16), wherein the lower end of the second clamping sleeve (16) is fixed with a clamping sleeve (17), and the second clamping sleeve (16) is fitted on the inner wall of the chemical cleaning tank (1) and the flushing tank (2).

3. The chemical cleaning machine for low-power consumption mirror production according to claim 1, characterized in that: The clamping mechanism comprises a mounting frame (18) movably sleeved on the inside of the clamping sleeve (17), the inside of the mounting frame (18) is fixed with a first clamping plate (19), the upper end of the first clamping plate (19) is movably sleeved with a second clamping plate (20), and the first clamping plate (19) and the second clamping plate (20) are provided with an adjusting nut (21), and the gear (22) is fixed on one side of the mounting frame (18).

4. The chemical cleaning machine for low-power consumption mirror production according to claim 1, characterized in that: The inside of the chemical cleaning tank (1) and the flushing tank (2) is provided with a toothed plate (24) engaged with the gear (22), and the toothed plate (24) is located at the lower end inside the chemical cleaning tank (1) and the flushing tank (2).

5. The chemical cleaning machine for low-power consumption mirror production according to claim 1, characterized in that: The inside of the bottom guide plate (25) and the vertical guide plate (26) is provided with an opening, wherein the opening distance is the same as the distance between the two groups of second clamping plates (20), and the opening size is the same as the diameter of the gear (22).

6. The chemical cleaning machine for low-power consumption mirror production according to claim 1, characterized in that: The outside of the gear (22) is provided with a guide sliding block (23), the bottom guide plate (25) and the top guide plate (27) are movably sleeved in the inside of the bottom guide plate (25), and the vertical guide plate (26) is provided in the middle of the opening in the inside of the bottom guide plate (25) and the top guide plate (27).

7. The low-power consumption chemical cleaning machine for mirrors according to claim 1, characterized in that: The inside of the protective cover (4) and the upper end of the drying box (3) are provided with a cleaning roller (29), the inside of the drying box (3) is provided with a drying box (30), the cleaning roller (29) is installed at the upper end of the drying box (30), and the drying box (30) is installed at the upper and lower ends of the transverse guide plate (28).

8. The chemical cleaning machine for low-power consumption mirror production according to claim 1, characterized in that: The upper part of the protective cover (4) is provided with a placing box (10), the sides of the chemical cleaning box (1) and the flushing box (2) are provided with a second transmission pipe (11), the middle part of the second transmission pipe (11) is provided with a second water pump (12), and the ends of the first water pump (9) and the second transmission pipe (11) extend into the inside of the placing box (10).

9. The chemical cleaning machine for low-power consumption mirror production according to claim 1, characterized in that: The lower ends of the chemical flushing device (6) and the distilled water flushing device (7) are provided with spray heads at equal intervals, the upper end of the chemical flushing device (6) is provided with a placing box (10) filled with a chemical cleaning agent in the inside, and the upper end of the distilled water flushing device (7) is provided with a placing box (10) filled with distilled water in the inside.