Wallboard processing device for pseudo-classic building maintenance

By designing an automated wall panel processing device, the integration of cutting and palletization is achieved, solving the problem of time and effort of manual palletization, and improving processing efficiency and accuracy.

CN120287436APending Publication Date: 2025-07-11HUAINAN UNITED UNIVERSITY
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Patent Information

Application Number
CN202510488967.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing wall panel processing devices require manual palletization after cutting, which is time-consuming and labor-intensive and can easily lead to damage to the wall panel and affect processing efficiency.

Method used

A wall panel processing device for antique building maintenance is designed, including drive shaft, cutting blade, plywood, screw and carrier plate. Through the flexible control of the plywood and the deflection function of the carrier plate, automatic cutting and palletization are achieved to avoid manual intervention.

Benefits of technology

Improve cutting accuracy and processing efficiency, reduce manual intervention, save manpower, and ensure the integrity of wall panels during cutting and palletization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of wallboard processing, and discloses a wallboard processing device for pseudo-classic architecture maintenance, which comprises a processing table, a driving shaft is arranged below one end of the processing table, the outer wall of the driving shaft is fixedly sleeved with a cutting blade, the two sides of the driving shaft are provided with clamping plates sliding on the top side of the processing table, and a screw rod is arranged above the cutting blade. A penetrating hole is formed in the top end of each clamping plate, each lead screw penetrates through the corresponding penetrating hole in a sliding mode, a connecting sleeve connected to the outer wall of the corresponding lead screw in a threaded sleeving mode is arranged on the side, away from the cutting blade, of each clamping plate, a plurality of connecting holes formed in the clamping plates are formed in the outer sides of the penetrating holes, and screws fixed to the adjacent connecting sleeves penetrate through the connecting holes in a sliding mode. According to the wallboard cutting and stacking device, wallboards can be rapidly cut and machined, the machined wallboards can be stacked, manpower is saved, the machined wallboards can be deflected out of the device, workers can conveniently take and use the machined wallboards, and use is convenient.
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Description

Technical Field

[0001] The present invention relates to the technical field of wall panel processing, and particularly to a wall panel processing device for the repair of ancient imitation buildings. Background Art

[0002] In the repair project of ancient imitation buildings, it is necessary to process the wall panels for repair, and process the wall panels for repair into dimensions and shapes that exactly match the original wall structure to ensure that the repaired wall is consistent with the original building style and structure.

[0003] Although the existing wall panel processing devices can cut and process wall panels, after cutting, it is often necessary to manually stack the cut wall panels. In this process, it not only takes time and effort, but also is prone to damage to the wall panels due to improper manual operation, thus affecting the overall processing efficiency. To solve this problem, we propose a wall panel processing device for the repair of ancient imitation buildings. Summary of the Invention

[0004] To solve the technical problem of the poor working performance of the existing wall panel processing devices, the present invention provides a wall panel processing device for the repair of ancient imitation buildings.

[0005] The present invention is realized by the following technical solutions: A wall panel processing device for the repair of ancient imitation buildings, including a processing table. A drive shaft is provided below one end of the processing table. A cutting blade is fixedly sleeved on the outer wall of the drive shaft. Clamping plates are provided on both sides of the drive shaft and slide on the top side of the processing table. A lead screw is provided above the cutting blade. A through hole is opened at the top end of the clamping plate. The lead screw slidably penetrates through the interior of the through hole. A connecting sleeve is provided on the side of the clamping plate away from the cutting blade and is threadedly sleeved on the outer wall of the lead screw. A plurality of connecting holes are opened on the clamping plate outside the through hole. A screw rod fixed on the adjacent connecting sleeve slidably penetrates through the interior of the connecting hole. A limiting sleeve in contact with the adjacent clamping plate is threadedly sleeved on the outer wall of the end of the screw rod away from the connecting sleeve. A chute is opened at the other end of the processing table. A carrier plate is slidably connected in the interior of the chute. Through the cooperation of the above components, the wall panel can be cut and processed, the cut wall panel can be limited, the corresponding position of the clamping plate can be flexibly adjusted according to the size of the wall panel, and the cut wall panel can be stacked.

[0006] As a further improvement of the above solution, a notch is opened on the processing table. The cutting blade rotatably penetrates through the interior of the notch. Through the notch, the cutting blade can rotate, avoiding the processing table interfering with the rotation of the cutting blade.

[0007] As a further improvement of the above scheme, support plates are fixed at both ends of the processing table, and a carrying plate located between the two supporting plates is provided under the processing table, a threaded rod 1 with opposite thread directions at both ends is provided on one side of the top side of the carrying plate, and a threaded rod 2 with opposite thread directions at both ends is provided on the other side of the top side of the carrying plate, and a driving sleeve is threadedly sleeved on the outer walls of both ends of the threaded rod 1 and the threaded rod 2, a driving plate is hingedly connected to the outer side of the driving sleeve, a fixing block is hingedly connected to the outer side of the driving plate away from one end of the driving sleeve, the fixing block is fixed to the bottom side of the carrying plate, a driving column is fixed to the top side of the carrying plate close to one end of the cutting blade, and the driving column is rotatably connected to the bottom side of the processing table at one end away from the carrying plate, and a transmission shaft is provided on one side of the driving column. The outer wall of the driving column is fixedly sleeved with a gear 1, the outer wall of the transmission shaft is fixedly sleeved with a gear 2 meshing with the gear 1, the external fixed sleeve of one end of the transmission shaft is fixedly sleeved with a transmission sleeve, the external movable sleeve of the transmission sleeve is provided with a transmission wheel 1, the outer side of the transmission wheel 1 is fixed with a plurality of limiting blocks, the interior of the limiting block is provided with a clamping block hinged on the transmission sleeve, the inner wall of the transmission wheel 1 is provided with a plurality of clamping grooves, the clamping blocks are clamped in adjacent clamping grooves, the outer wall of the driving shaft is fixedly sleeved with a transmission wheel 2, the exterior of the transmission wheels 1 and 2 are provided with a transmission belt 1, the transmission wheel 1, the transmission wheel 2 and the transmission belt 1 cooperate in transmission, and through the cooperation of the above components, the wall panels stacked on the top of the carrier plate can be driven to deflect out of the device.

[0008] As a further improvement of the above scheme, the diameter of the limiting sleeve is larger than the aperture of the connecting hole, a plurality of limiting blocks are fixed to the outer wall of the transmission sleeve, an annular groove is provided on the inner wall of the transmission wheel one, and the limiting block slides inside the annular groove. Through the cooperation of the limiting block and the annular groove, the transmission sleeve can be limited inside the transmission wheel one to prevent the transmission sleeve from escaping from the inside of the transmission wheel one.

[0009] As a further improvement of the above scheme, one end of the screw rod is transmission connected to motor 1, and the motor 1 is fixed on the inner side of the support plate located at one end of the processing table, and the other end of the screw rod is rotatably connected to the inner side of the support plate located at the other end of the processing table, one end of the drive shaft is transmission connected to motor 2, and a fixed plate 1 is fixed to the outer side of the motor 2, and the end of the drive shaft away from the motor 2 is rotatably connected to the fixed plate 2, and both ends of the transmission shaft are rotatably connected to the fixed plate 3, and the fixed plate 1, fixed plate 2 and fixed plate 3 are fixed on adjacent support plates. The operation of motor 1 can drive the screw rod to rotate, and the operation of motor 2 can drive the drive shaft to rotate.

[0010] As a further improvement of the above solution, one end of the first threaded rod is drivingly connected to a third motor. A fourth fixing plate is fixed outside the third motor, and the other end of the first threaded rod is rotatably connected to a fifth fixing plate. The fourth fixing plate and the fifth fixing plate are fixed on the top side of the bearing plate. One end of the second threaded rod is rotatably connected to the inside of the fourth fixing plate, and the other end of the second threaded rod is rotatably connected to the inside of the fifth fixing plate. By operating the third motor, the first threaded rod can be driven to rotate.

[0011] As a further improvement of the above solution, transmission wheels three are fixedly sleeved on the outer walls of the first threaded rod and the second threaded rod. A second transmission belt that is in transmission cooperation with the transmission wheels three is provided outside the transmission wheels three. When the first threaded rod rotates, the second threaded rod is driven to rotate through the transmission cooperation of the transmission wheels three and the second transmission belt.

[0012] As a further improvement of the above solution, a support plate is provided on the side of the bearing plate away from the processing table. The support plate is fixed on the adjacent support column. Through the support plate, the bearing plate can be supported, improving the stability performance of the bearing plate.

[0013] As a further improvement of the above solution, a plurality of return springs are fixed inside the clamping block. One end of the return spring away from the clamping block is fixed on the limiting block. Through the elasticity of the return spring, the displaced clamping block can be pushed to perform a return displacement.

[0014] As a further improvement of the above solution, an opening is provided at the bottom end of the clamping plate. The cutting blade is slidably matched with the opening. Through the opening, the rotating clamping plate can be prevented from interfering with the rotation of the cutting blade.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] 1. The present invention can quickly cut and process the wallboard, so as to cut the wallboard for repair into appropriate sizes. The cut wallboard can be limited to prevent the wallboard from shifting during the cutting process, improving the accuracy of cutting the wallboard. The limiting component can be flexibly adjusted according to the size of the wallboard, so as to limit wallboards of different sizes within a certain range, improving the processing range of the processing device and having high working performance.

[0017] 2. The present invention can stack the processed wallboards, avoiding manual stacking of the cut wallboards, saving manpower. After a sufficient amount of wallboards are stacked inside the device, the wallboards can be deflected out of the device, facilitating the staff to pick up the processed wallboards, which is convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of a wallboard processing device for the maintenance of ancient imitation architecture;

[0019] Figure 2 Schematic diagram of a supporting plate in a wall panel processing device for the repair of antique buildings

[0020] Figure 3 Schematic diagram of a driving shaft in a wall panel processing device for the repair of antique buildings

[0021] Figure 4 Schematic diagram of a fixed connection block in a wall panel processing device for the repair of antique buildings

[0022] Figure 5 Cross-sectional view of a clamping plate in a wall panel processing device for the repair of antique buildings

[0023] Figure 6 is Figure 3 Enlarged structural schematic diagram of part A in

[0024] Main symbol description:

[0025] 1. Processing table; 2. Driving shaft; 3. Cutting blade; 4. Clamping plate; 5. Opening; 6. Lead screw; 7. Connecting sleeve; 8. Screw rod; 9. Limiting sleeve; 10. Carrier plate; 11. Bearing plate; 12. First threaded rod; 13. Driving sleeve; 14. Driving plate; 15. Fixed connection block; 16. Driving column; 17. Transmission shaft; 18. Second gear; 19. Transmission sleeve; 20. First transmission wheel; 21. Limiting block; 22. Block; 23. Card slot; 24. Return spring; 25. Second threaded rod; 26. Third motor; 27. Supporting plate; 28. Second fixing plate; 29. Third fixing plate; 30. First motor; 31. Support plate Specific implementation manners

[0026] Next, in combination with the accompanying drawings and specific implementation manners, the present invention will be further described. It should be noted that, on the premise of no conflict, the following-described embodiments or technical features can be arbitrarily combined with each other to form new embodiments

[0027] Embodiment 1:

[0028] In combination with Figure 1 、 Figure 2 and Figure 5, A wall panel processing device for ancient architecture maintenance in this embodiment includes a processing table 1. Below one end of the processing table 1, there is a driving shaft 2. The outer wall of the driving shaft 2 is fixedly sleeved with a cutting blade 3. On both sides of the driving shaft 2, there are clamping plates 4 sliding on the top side of the processing table 1. Above the cutting blade 3, there is a lead screw 6. A through hole is opened at the top end of the clamping plate 4, and the lead screw 6 slides through the inside of the through hole. On the side of the clamping plate 4 away from the cutting blade 3, there is a connecting sleeve 7 threadedly sleeved on the outer wall of the lead screw 6. Outside the through hole, there are a plurality of connecting holes opened on the clamping plate 4. Inside the connecting holes, there is a screw rod 8 fixed on the adjacent connecting sleeve 7 sliding through. The outer wall of the end of the screw rod 8 away from the connecting sleeve 7 is threadedly sleeved with a limiting sleeve 9 in contact with the adjacent clamping plate 4. At the other end of the processing table 1, there is a chute, and a carrier plate 10 is slidably connected inside the chute.

[0029] The implementation principle of a wall panel processing device for ancient architecture maintenance in an embodiment of this application is as follows: When wall panels need to be cut and processed, the distance between the two clamping plates 4 can be adjusted according to the size of the wall panels. Rotate the limiting sleeve 9. Through the cooperation of the limiting sleeve 9 and the screw rod 8, drive the limiting sleeve 9 to displace. When the limiting sleeve 9 disengages from the outside of the screw rod 8, the clamping plate 4 can be pulled to drive the clamping plate 4 to displace. When the clamping plate 4 is displaced near the appropriate position, the connecting sleeve 7 can be rotated. Through the cooperation of the connecting sleeve 7 and the lead screw 6, drive the connecting sleeve 7 to displace. When the connecting sleeve 7 approaches the clamping plate 4, the clamping plate 4 can be pushed to drive the clamping plate 4 to displace. When the connecting hole on the clamping plate 4 is sleeved on the outside of the screw rod 8, the limiting sleeve 9 can be screwed onto the outside of the screw rod 8. When the limiting sleeve 9 contacts the clamping plate 4, the distance between the two clamping plates 4 is fixed at this time. Then, the wall panels to be processed can be placed between the two clamping plates 4. Then, through the rotation of the lead screw 6, drive the two clamping plates 4 to displace, drive the wall panels between the two clamping plates 4 to displace. At the same time, through the rotation of the driving shaft 2, drive the cutting blade 3 to rotate. When the wall panel contacts the rotating cutting blade 3, at this time, the wall panel can be cut and processed by the rotating cutting blade 3. When the wall panel is cut by the cutting blade 3, the clamping plate 4 displaces, driving the cut wall panel to displace to the top side of the carrier plate 10. At this time, the carrier plate 10 displaces vertically downward, driving the cut wall panel on the top side of the carrier plate 10 to displace vertically downward. Then, the clamping plate 4 displaces back to its original position and repeats the above operations. At this time, the cut wall panels will be stacked on the top side of the carrier plate 10, avoiding manual stacking of the cut wall panels, thus saving manpower.

[0030] The processing table 1 is provided with a notch, and the cutting blade 3 rotates through the notch. Through the notch, the cutting blade 3 can rotate, avoiding the processing table 1 interfering with the rotation of the cutting blade 3.

[0031] Embodiment 2:

[0032] Combined with Figure 4And Figure 6 , on the basis of Embodiment 1, the further improvement of this embodiment lies in that: Support plates 31 are fixed at both ends of the processing table 1. A bearing plate 11 is provided below the processing table 1 and is located between the two support plates 31. On one side of the top side of the bearing plate 11, a first threaded rod 12 with opposite thread directions at both ends is provided. On the other side of the top side of the bearing plate 11, a second threaded rod 25 with opposite thread directions at both ends is provided. Outer walls of both ends of the first threaded rod 12 and the second threaded rod 25 are threadedly sleeved with drive sleeves 13. A drive plate 14 is hinged to the outside of the drive sleeve 13. A fixing block 15 is hinged to the outside of the end of the drive plate 14 far from the drive sleeve 13. The fixing block 15 is fixed to the bottom side of the carrier plate 10. A drive column 16 is fixed to the top side of the bearing plate 11 near the cutting blade 3. One end of the drive column 16 far from the bearing plate 11 is rotatably connected to the bottom side of the processing table 1. A transmission shaft 17 is provided on one side of the drive column 16. An outer wall of the drive column 16 is fixedly sleeved with a first gear. An outer wall of the transmission shaft 17 is fixedly sleeved with a second gear 18 that meshes with the first gear. An outer part of one end of the transmission shaft 17 is fixedly sleeved with a transmission sleeve 19. An outer part of the transmission sleeve 19 is movably sleeved with a first transmission wheel 20. A plurality of limiting blocks 21 are fixed to the outside of the first transmission wheel 20. A clamping block 22 hinged to the transmission sleeve 19 is provided inside the limiting block 21. A plurality of clamping grooves 23 are formed in the inner wall of the first transmission wheel 20. The clamping block 22 is clamped inside the adjacent clamping groove 23. An outer wall of the drive shaft 2 is fixedly sleeved with a second transmission wheel. A first transmission belt is provided outside the first transmission wheel 20 and the second transmission wheel. The first transmission wheel 20, the second transmission wheel and the first transmission belt are in transmission cooperation. By rotating the first threaded rod 12 and the second threaded rod 25, through the threaded cooperation between the first threaded rod 12 and the drive sleeve 13, and through the threaded cooperation between the second threaded rod 25 and the drive sleeve 13, the drive sleeve 13 is driven to displace, the drive plate 14 is driven to displace, the fixing block 15 is driven to perform vertical displacement, and the carrier plate 10 is driven to displace. When the drive shaft 2 rotates counterclockwise and drives the cutting blade 3 to rotate, the transmission sleeve 19 and the transmission shaft 17 will not be driven to rotate. When a sufficient amount of wall panels is stacked on the top side of the carrier plate 10, the drive shaft 2 rotates clockwise. Through the cooperation of the first transmission wheel 20, the second transmission wheel and the first transmission belt, the first transmission wheel 20 is driven to rotate clockwise. Through the cooperation of the clamping block 22 and the clamping groove 23, the transmission sleeve 19 and the transmission shaft 17 are driven to rotate, the second gear 18 is driven to rotate, the drive column 16 is driven to rotate, the bearing plate 11 and the carrier plate 10 are driven to deflect, and the cut and processed wall panels stacked on the top of the carrier plate 10 are deflected out of the device, thus facilitating the staff to pick up the processed wall panels and being convenient to use.

[0033] The aperture of the limiting sleeve 9 is directly larger than that of the connecting hole. A plurality of limiting blocks are fixed on the outer wall of the transmission sleeve 19. An annular groove is formed in the inner wall of the first transmission wheel 20. The limiting blocks slide inside the annular groove. Through the cooperation of the limiting blocks and the annular groove, the transmission sleeve 19 can be limited inside the first transmission wheel 20, preventing the transmission sleeve 19 from disengaging from the inside of the first transmission wheel 20.

[0034] Embodiment 3:

[0035] Combined with Figure 3 , on the basis of Embodiment 2, the further improvement of this embodiment lies in that one end of the lead screw 6 is drivingly connected to a first motor 30. The first motor 30 is a forward and reverse motor. The first motor 30 is fixed inside the support plate 31 at one end of the processing table 1. The other end of the lead screw 6 is rotatably connected inside the support plate 31 at the other end of the processing table 1. One end of the drive shaft 2 is drivingly connected to a second motor. The second motor is a forward and reverse motor. A first fixing plate is fixed outside the second motor. The end of the drive shaft 2 away from the second motor is rotatably connected to a second fixing plate 28. Both ends of the transmission shaft 17 are rotatably connected to a third fixing plate 29. The first fixing plate, the second fixing plate 28 and the third fixing plate 29 are fixed on the adjacent support plates 31. By operating the first motor 30, the lead screw 6 can be driven to rotate. By operating the second motor, the drive shaft 2 can be driven to rotate.

[0036] One end of the first threaded rod 12 is drivingly connected to a third motor 26. The third motor 26 is a forward and reverse motor. A fourth fixing plate is fixed outside the third motor 26. The other end of the first threaded rod 12 is rotatably connected to a fifth fixing plate. The fourth fixing plate and the fifth fixing plate are fixed on the top side of the bearing plate 11. One end of the second threaded rod 25 is rotatably connected inside the fourth fixing plate. The other end of the second threaded rod 25 is rotatably connected inside the fifth fixing plate. By operating the third motor 26, the first threaded rod 12 can be driven to rotate.

[0037] Both the outer walls of the first threaded rod 12 and the second threaded rod 25 are fixedly sleeved with third transmission wheels. A second transmission belt that is in transmission cooperation with the third transmission wheels is provided outside the third transmission wheels. When the first threaded rod 12 rotates, through the transmission cooperation of the third transmission wheels and the second transmission belt, the second threaded rod 25 is driven to rotate.

[0038] A support plate 27 is provided on the side of the bearing plate 11 away from the processing table 1. The support plate 27 is fixed on the adjacent support plate 31. Through the support plate 27, the bearing plate 11 can be supported, improving the stability of the bearing plate 11.

[0039] A plurality of return springs 24 are fixed inside the block 22. The ends of the return springs 24 away from the block 22 are fixed on the limiting block 21. Through the elasticity of the return springs 24, the displaced block 22 can be pushed for a return displacement.

[0040] The bottom end of the clamping plate 4 is provided with an opening 5, and the cutting blade 3 is slidably engaged with the opening 5. Through the opening 5, the displacement of the clamping plate 4 can be avoided from interfering with the rotation of the cutting blade 3.

[0041] The above embodiments are only the preferred embodiments of the present invention, and the scope of protection of the present invention cannot be limited thereby. Any non-substantive changes and substitutions made by those skilled in the art on the basis of the present invention fall within the scope of protection required by the present invention.

Claims

1. A wall panel processing device for the maintenance of ancient architecture imitations, including a processing table, characterized in that, A drive shaft is provided below one end of the processing table. A cutting blade is fixedly sleeved on the outer wall of the drive shaft. Clamping plates sliding on the top side of the processing table are provided on both sides of the drive shaft. A lead screw is provided above the cutting blade. A perforation is opened at the top end of the clamping plate. The lead screw slidably penetrates inside the perforation. A connecting sleeve threadedly sleeved on the outer wall of the lead screw is provided on one side of the clamping plate away from the cutting blade. A plurality of connecting holes opened on the clamping plate are provided outside the perforation. A screw rod fixed on the adjacent connecting sleeve slidably penetrates inside the connecting hole. A limiting sleeve in contact with the adjacent clamping plate is threadedly sleeved on the outer wall of one end of the screw rod away from the connecting sleeve. A chute is opened at the other end of the processing table. A carrier plate is slidably connected inside the chute.

2. The wallboard processing device for the maintenance of antique buildings according to claim 1, characterized in that, A notch is opened on the processing table. The cutting blade rotatably penetrates inside the notch.

3. The processing device for wall panels used in the repair of ancient architecture imitations according to claim 1, characterized in that, Support plates are fixed at both ends of the processing table. A bearing plate located between the two support plates is provided below the processing table. A threaded rod one with opposite thread directions at both ends is provided on one side of the top side of the bearing plate. A threaded rod two with opposite thread directions at both ends is provided on the other side of the top side of the bearing plate. Drive sleeves are threadedly sleeved on the outer walls of both ends of the threaded rod one and the threaded rod two. A drive plate is hinged on the outer side of the drive sleeve. A fixed block is hinged on the outer side of one end of the drive plate away from the drive sleeve. The fixed block is fixed on the bottom side of the carrier plate. A drive column is fixed on the top side of one end of the bearing plate close to the cutting blade. The end of the drive column away from the bearing plate is rotatably connected to the bottom side of the processing table. A transmission shaft is provided on one side of the drive column. A gear one is fixedly sleeved on the outer wall of the drive column. A gear two meshing with the gear one is fixedly sleeved on the outer wall of the transmission shaft. A transmission sleeve is fixedly sleeved on the outer part of one end of the transmission shaft. A transmission wheel one is movably sleeved on the outside of the transmission sleeve. A plurality of limiting blocks are fixed on the outer side of the transmission wheel one. A clamping block hinged on the transmission sleeve is provided inside the limiting block. A plurality of clamping grooves are opened on the inner wall of the transmission wheel one. The clamping block is clamped inside the adjacent clamping groove. A transmission wheel two is fixedly sleeved on the outer wall of the drive shaft. A transmission belt one is provided outside the transmission wheel one and the transmission wheel two. The transmission wheel one, the transmission wheel two and the transmission belt one are in transmission cooperation.

4. The wallboard processing device for the maintenance of ancient architecture imitations according to claim 3, characterized in that, The diameter of the limiting sleeve is larger than the aperture of the connecting hole. A plurality of limiting blocks are fixed on the outer wall of the transmission sleeve. An annular groove is opened on the inner wall of the transmission wheel one. The limiting blocks slide inside the annular groove.

5. The processing device for wall panels used in the repair of antique buildings according to claim 3, characterized in that, One end of the lead screw is in transmission connection with a motor one. The motor one is fixed inside the support plate at one end of the processing table. The other end of the lead screw is rotatably connected to the inside of the support plate at the other end of the processing table. One end of the drive shaft is in transmission connection with a motor two. A fixing plate one is fixed outside the motor two. The end of the drive shaft away from the motor two is rotatably connected to a fixing plate two. Both ends of the transmission shaft are rotatably connected to a fixing plate three. The fixing plate one, the fixing plate two and the fixing plate three are fixed on the adjacent support plates.

6. The wall panel processing device for the maintenance of antique buildings according to claim 3, characterized in that, One end of the first threaded rod is drivingly connected to a third motor. A fourth fixing plate is fixed to the outside of the third motor. The other end of the first threaded rod is rotatably connected to a fifth fixing plate. The fourth fixing plate and the fifth fixing plate are fixed to the top side of the bearing plate. One end of the second threaded rod is rotatably connected to the inside of the fourth fixing plate, and the other end of the second threaded rod is rotatably connected to the inside of the fifth fixing plate.

7. The wall panel processing device for the maintenance of antique buildings according to claim 3, characterized in that, Driving wheels three are fixedly sleeved on the outer walls of the first threaded rod and the second threaded rod. A second drive belt that is in driving cooperation with the driving wheels three is provided outside the driving wheels three.

8. The processing device for wall panels used in the repair of antique buildings as described in claim 3, wherein, A support plate is provided on the side of the bearing plate away from the processing table. The support plate is fixed to an adjacent support column.

9. The processing device for the wall panels used in the maintenance of antique buildings according to claim 3, wherein, A plurality of return springs are fixed to the inside of the clamping block. One end of the return spring away from the clamping block is fixed to the limiting block.

10. The wallboard processing device for the maintenance of antique buildings according to claim 1, characterized in that, An opening is formed at the bottom end of the clamping plate. The cutting blade is slidably engaged with the opening.

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