Automatic production line for uv spraying of surfaces of storage cabinets

By introducing a conveyor, flipping assembly, and dust blowing assembly into the automated UV coating production line for storage cabinet surfaces, the problem of insufficient flatness detection of the boards has been solved, and uniform coating of both sides of the boards and efficient production have been achieved.

CN121927770APending Publication Date: 2026-04-28JIEYANG LIZHONG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIEYANG LIZHONG TECHNOLOGY CO LTD
Filing Date
2025-12-29
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The existing automated UV coating production line for storage cabinets lacks the ability to detect the flatness of the boards, which makes it impossible to detect dents in time, affecting the coating quality and causing material waste, and failing to guarantee uniform coating on both sides.

Method used

The system employs a combination design of conveyor, flipping assembly, pushing assembly, and dust blowing assembly. Flatness is detected by a CCD camera, and the flipping and dust blowing processes are performed to ensure uniform spraying on both sides of the board.

Benefits of technology

It improves spraying efficiency and quality, reduces material waste, and ensures the accuracy of surface flatness testing and spraying effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The storage cabinet surface uv spraying automatic production line comprises a conveying table and a material storage frame fixedly installed at the position, close to the middle, of the top of the conveying table, material pushing openings are formed in the bottoms of the left side and the right side of the material storage frame correspondingly, and a material pushing assembly is installed at the position, close to the left side, of the rear side of the conveying table; a circular seat is arranged at the position, close to the right side, of the front side of the conveying table, a mechanical clamping arm is installed in the middle of the top of the circular seat, a pushing groove is formed in the left side of the top of the conveying table, and a side plate, a reciprocating lead screw, a servo motor A, a lead screw nut, a connecting plate, an L-shaped rod, a pushing plate, a guide plate and a guide rod are matched with one another; the material pushing plate can be driven to move left and right back and forth, the storage cabinet plates in the material storage frame can be pushed out and fed to the conveying belt, the feeding operation can be rapidly completed, accordingly, subsequent grinding and polishing, flatness detection and spraying and curing operation can be conveniently conducted on the storage cabinet plates, and the spraying efficiency of the device is improved.
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Description

Technical Field

[0001] This invention relates to the field of storage cabinet board processing technology, specifically to an automated production line for UV spraying on the surface of storage cabinets. Background Technology

[0002] Spray coating technology, as a highly efficient and environmentally friendly surface treatment process, is widely used in the furniture, home appliance, and building materials industries, especially for surface coating of home furnishing products such as storage cabinets. This technology uses ultraviolet light to instantly cure the coating, forming a high-hardness, scratch-resistant, and environmentally friendly coating that meets the rigid demands of modern manufacturing for green production.

[0003] Existing automated UV coating production lines for storage cabinets typically use conveyor belts to transport the boards. However, they lack components to detect flatness before coating, making it impossible to detect dents in the boards in a timely manner. This affects the quality of subsequent production and wastes coating materials. Furthermore, they cannot inspect both sides of the boards, resulting in poor performance and an inability to guarantee the quality of subsequent coating processes.

[0004] To address the above issues, an automated production line for UV coating of storage cabinet surfaces is proposed. Summary of the Invention

[0005] The purpose of this invention is to provide an automated production line for UV coating of storage cabinet surfaces. By using this device, the problems mentioned in the background can be solved.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an automated production line for UV spraying of storage cabinet surface, comprising a conveyor table and a storage frame fixedly installed at the top of the conveyor table near the middle. The storage frame has push ports at the bottom of both the left and right sides, and a push component is installed at the rear side of the conveyor table near the left side. A flipping component is installed at the bottom of the conveyor table near the right side. A flat plate is provided at the top of the conveyor table near the upper right. A dust blowing component is installed at the top of the flat plate near the rear side. A support plate is fixedly installed at the rear side of the conveyor table near the right side. A hydraulic push rod is fixedly installed at the bottom of the support plate. A circular opening is provided at the top of the support plate, and the power end of the hydraulic push rod passes through the inner cavity of the circular opening and is fixedly installed with an irregularly shaped top plate. A CCD camera body is installed at the middle of the bottom of the flat plate. A spraying and curing device is installed on the right side of the conveyor table. The flipping assembly includes a U-shaped plate located at the bottom of the conveyor table near the right side. The bottom of the U-shaped plate is fixedly connected to the top of the irregular top plate. A rectangular opening is provided in the middle of the bottom of the U-shaped plate. A servo motor B is installed in the inner cavity of the rectangular opening. An active bevel gear is fixedly installed at the output end of the servo motor B. Driven bevel gears mesh with both the front and rear sides of the active bevel gear. A threaded rod is fixedly installed in the middle of the opposite side of the driven bevel gear. The opposite end of the threaded rod is movably installed on the inner wall of the inner cavity of the U-shaped plate. A threaded sleeve is threadedly installed on the outer side of the threaded rod near the opposite end. A movable plate is provided above the top of the threaded sleeve. A rotating shaft is movably installed in the middle of the opposite side of the movable plate. A positioning plate is fixedly installed at the opposite end of the rotating shaft. Two clamping ports are provided at the top of the conveyor table near the right side. The clamping ports are arranged front and rear. The positioning plates are located in the inner cavities of the adjacent clamping ports.

[0007] Furthermore, a fixing bracket is fixedly installed at the bottom of the servo motor B, and the upper end of the fixing bracket is fixedly installed on the U-shaped plate; square rods are slidably installed through the threaded sleeve near the bottom, and the opposite ends of the square rods are fixedly installed on the inner wall of the U-shaped plate; a fixing rod is fixedly installed at the middle of the top of the threaded sleeve, and the upper ends of the fixing rods are respectively fixedly installed on adjacent moving plates.

[0008] Furthermore, transmission gears are fixedly sleeved on the outer side of the rotating shaft near the middle, and a fixed rack plate is provided above the right side of each transmission gear. An L-shaped connecting rod is fixedly installed on the bottom of each fixed rack plate. The opposite ends of the L-shaped connecting rods are fixedly installed on the conveyor table. A spiral spring is sleeved on the outer side of the rotating shaft near the opposite end. One end of the spiral spring is fixedly installed on the adjacent rotating shaft, and the other end of the spiral spring is fixedly installed on a fixed shaft. The opposite ends of the fixed shafts are fixedly installed on the adjacent moving plates.

[0009] Furthermore, L-shaped support rods are fixedly installed on the right side of the plate near both the front and rear sides, and the lower ends of the L-shaped support rods are fixedly installed on the conveyor table.

[0010] Furthermore, the pushing assembly includes two side plates fixedly installed on the rear side of the conveyor table near the left side. The side plates are arranged left and right, and a reciprocating screw is provided between the side plates. A movable rod is fixedly installed through the middle of the reciprocating screw. The left end of the movable rod is movably installed on the left side plate, and the right end of the movable rod extends movably through to the outside of the right side plate. A servo motor A is provided on the right side of the right side plate. The output end of the servo motor A is fixedly connected to the right end of the movable rod. An L-shaped support plate is fixedly installed on the right side of the servo motor A. The left side of the L-shaped support plate is fixedly installed on the right side plate. A screw nut is movably installed on the outside of the reciprocating screw near the left end. A connecting plate is provided on the front side of the top of the screw nut. A pushing plate is fixedly installed on the right side of the connecting plate near the bottom. A guide plate is fixedly installed at the middle of the bottom of the screw nut.

[0011] Furthermore, an L-shaped rod is fixedly installed on the rear side of the connecting plate near the middle, and the lower end of the L-shaped rod is fixedly installed on the lead screw nut.

[0012] Furthermore, a guide rod is slidably installed through the guide plate, and the left and right ends of the guide rod are respectively fixedly installed on adjacent side plates.

[0013] Furthermore, the soot blowing assembly includes a rotating bevel gear located near the rear side of the top of the plate and a transmission bevel gear meshing with the rear side of the rotating bevel gear. A transmission rod is fixedly installed through the middle of the transmission bevel gear, and a straight plate is movably installed at the front end of the transmission rod. The bottom of the straight plate is fixedly installed on the plate, and a synchronous pulley A is fixedly sleeved on the outer side of the transmission rod near the rear end. A synchronous pulley B is located below the left side of synchronous pulley A. A synchronous belt meshes with the outer sides of synchronous pulleys A and B. A movable shaft is fixedly installed through the middle of the upper part of synchronous pulley B. The front end of the movable shaft is movably installed on the conveyor table, and a movable gear is fixedly sleeved on the outer side of the movable shaft near the middle. A transmission shaft is fixedly installed at the middle of the bottom of the rotating bevel gear, and the lower end of the transmission shaft movably extends through to the bottom of the plate. Furthermore, a cam is fixedly sleeved on the outer side of the drive shaft near the lower end, a push plate is provided on the front side of the cam, an airbag is fixedly installed on the front side of the push plate, a vertical plate is fixedly installed on the front side of the airbag, the top of the vertical plate is fixedly installed on the flat plate, a connecting pipe is fixedly installed through the bottom of the airbag near the front side, a spray pipe is fixedly installed at the end of the connecting pipe away from the airbag, the rear side of the spray pipe is fixedly installed on the vertical plate, and a conduit is fixedly installed through the left side of the airbag near the front side. Sliding rods are slidably installed on both sides of the push plate, and the front ends of the sliding rods are fixedly installed on the upright plate. A return spring is sleeved on the outside of each sliding rod, and the two ends of the return spring are fixedly installed on the push plate and the upright plate respectively. A movable rack plate is engaged at the top of the movable gear, and the movable rack plate is fixedly installed at the bottom of the guide plate.

[0014] Furthermore, a groove is provided on the right side of the top of the conveyor table. Conveying rollers are provided near the left and right sides of the inner cavity of the groove. A conveyor belt is sleeved on the outer side of the conveying rollers. A rotating rod is fixedly installed through the middle of the upper part of each conveying roller. The front end of the rotating rod is movably installed on the inner wall of the inner cavity of the groove. The rear end of the rotating rod extends through to the outer side of the conveyor table. An L-shaped plate is fixedly installed on the rear side of the conveyor table near the right side. A drive motor is fixedly installed on the inner side of the L-shaped plate. The output end of the drive motor is fixedly connected to the rear end of the left rotating rod. A circular seat is provided on the front side of the conveyor table near the right side. A mechanical gripping arm is installed in the middle of the top of the circular seat. A pusher groove is provided on the left side of the top of the conveyor table. A control panel is fixedly installed on the front side of the spray curing equipment near the left side.

[0015] Furthermore, two grinding plates are fixedly installed at the bottom right side of the storage frame, and the grinding plates are arranged vertically. The left side of the upper grinding plate is fixedly installed on the storage frame, and the bottom of the lower grinding plate is fixedly installed on the bottom wall of the inner cavity of the pusher groove.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. Through the cooperation of components such as the side plate, reciprocating lead screw, servo motor A, lead screw nut, connecting plate, L-shaped rod, pusher plate, guide plate and guide rod, the pusher plate can be driven to move back and forth left and right, which can push the storage cabinet material in the storage box onto the conveyor belt, which facilitates the rapid completion of the feeding operation, thereby facilitating subsequent grinding, polishing, flatness inspection and spray curing operations, and improving the spraying efficiency of the device.

[0017] 2. Through the cooperation of components such as the U-shaped plate, servo motor B, fixed frame, driving bevel gear, driven bevel gear, threaded rod, threaded sleeve, square rod, fixed rod, moving plate, rotating shaft, transmission gear, fixed rack plate, L-shaped connecting rod, spiral spring, fixed shaft, and positioning plate, the conveyed sheet material can be clamped, fixed, and flipped. This allows the CCD camera to sequentially inspect the flatness of both sides, preventing the undetected dents from affecting product quality and wasting raw materials if spraying continues. This further improves the quality of the product after spraying using this device.

[0018] 3. Through the interaction of components such as the rotating bevel gear, transmission bevel gear, transmission rod, synchronous belt, movable gear, moving rack plate, cam, push plate, sliding rod, return spring, air bag, and spray pipe, the push plate can provide power for the cam to run when pushing the material onto the plate. This allows the air bag to be continuously squeezed, causing the spray pipe to blow gas onto the CCD camera body. This can blow off the dust attached to the CCD camera lens. Combined with existing dust collection equipment, this can improve the clarity of the inspection and prevent dust from affecting the accuracy of the flatness detection data. Attached Figure Description

[0019] Figure 1 This is an overall perspective view of the present invention; Figure 2 This is a rear perspective view of the present invention; Figure 3 This is a partial bottom perspective view of the conveyor table of the present invention; Figure 4 This is a partial bottom-view sectional perspective view of the conveyor table of the present invention; Figure 5 This is a partial bottom-view cross-sectional perspective view of the present invention; Figure 6 For the present invention Figure 1 Enlarged view of point A in the middle; Figure 7 This is a partial bottom perspective view of the reciprocating lead screw of the present invention; Figure 8 This is a partial rear-view sectional perspective view of the present invention; Figure 9 For the present invention Figure 7 Enlarged view at point B in the middle; Figure 10 This is a partial bottom-view perspective view of the pusher plate of the present invention; Figure 11 For the present invention Figure 10 Enlarged view of point C in the middle.

[0020] In the diagram: 1. Conveyor table; 2. Storage frame; 21. Grinding plate; 3. Pushing assembly; 31. Side plate; 32. Reciprocating lead screw; 33. Servo motor A; 34. Lead screw nut; 35. Connecting plate; 351. L-shaped rod; 36. Pushing plate; 37. Guide plate; 371. Guide rod; 4. Mechanical gripping arm; 5. Flipping assembly; 51. U-shaped plate; 52. Servo motor B; 521. Fixing frame; 53. Driving bevel gear; 54. Driven bevel gear; 55. Threaded rod; 56. Threaded sleeve; 561. Square rod; 562. Fixing rod; 57. Moving plate; 58. Rotating shaft; 581. Transmission gear; 582. Fixed rack Plate; 583, L-shaped connecting rod; 584, spiral spring; 585, fixed shaft; 59, positioning plate; 6, flat plate; 61, L-shaped support rod; 7, dust blowing assembly; 71, rotating bevel gear; 72, transmission bevel gear; 73, transmission rod; 74, synchronous belt; 75, movable gear; 751, moving rack plate; 76, cam; 77, push plate; 771, sliding rod; 772, return spring; 78, airbag; 79, spray pipe; 8, hydraulic push rod; 9, irregular top plate; 10, CCD camera body; 20, conveyor roller; 30, conveyor belt; 40, drive motor; 50, spray curing equipment; 60, control panel. Detailed Implementation

[0021] 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.

[0022] To solve the technical problems, such as Figure 1 - Figure 11As shown, the following preferred technical solution is provided: an automated production line for UV coating of storage cabinet surface, including a conveyor table 1 and a storage frame 2 fixedly installed on the top of the conveyor table 1 near the middle. Pushing ports are provided at the bottom of both the left and right sides of the storage frame 2. A pushing component 3 is installed on the rear side of the conveyor table 1 near the left side. A circular seat is provided on the front side of the conveyor table 1 near the right side. A mechanical gripping arm 4 is installed at the middle of the top of the circular seat. A pushing groove is provided on the left side of the top of the conveyor table 1. A flipping component 5 is installed on the bottom of the conveyor table 1 near the right side. A flat plate 6 is provided on the top of the conveyor table 1 near the upper right. A dust blowing component 7 is installed on the top of the flat plate 6 near the rear side. A support plate is fixedly installed on the rear side of the conveyor table 1 near the right side. A hydraulic push rod 8 is fixedly installed at the bottom of the support plate. A circular opening is provided at the top of the support plate. The hydraulic push rod 8... The force end passes through the inner cavity of the circular opening and is fixedly installed with an irregularly shaped top plate 9. A CCD camera body 10 is installed in the middle of the bottom of the flat plate 6. A groove is opened on the right side of the top of the conveyor table 1. A conveyor roller 20 is set near the left and right sides of the inner cavity of the groove. A conveyor belt 30 is sleeved on the outer side of the conveyor roller 20. A rotating rod is fixedly installed through the middle of the upper part of the conveyor roller 20. The front end of the rotating rod is movably installed on the inner wall of the inner cavity of the groove. The rear end of the rotating rod extends movably through to the outer side of the conveyor table 1. An L-shaped plate is fixedly installed on the rear side of the conveyor table 1 near the right side. A drive motor 40 is fixedly installed on the inner side of the L-shaped plate. The output end of the drive motor 40 is fixedly connected to the rear end of the left rotating rod. A spray curing device 50 is installed on the right side of the conveyor table 1. A control panel 60 is fixedly installed on the front side of the spray curing device 50 near the left side.

[0023] Specifically, two grinding plates 21 are fixedly installed at the bottom right side of the storage frame 2, and the grinding plates 21 are arranged vertically. The left side of the upper grinding plate 21 is fixedly installed on the storage frame 2, and the bottom of the lower grinding plate 21 is fixedly installed on the bottom wall of the inner cavity of the pusher groove, which is conducive to grinding the material passing through and removing the burrs on its surface.

[0024] In this embodiment, the flipping assembly 5 includes a U-shaped plate 51 located near the right side of the bottom of the conveyor table 1. The bottom of the U-shaped plate 51 is fixedly connected to the top of the irregular top plate 9. A rectangular opening is provided in the middle of the bottom of the U-shaped plate 51. A servo motor B52 is installed in the inner cavity of the rectangular opening. An active bevel gear 53 is fixedly installed at the output end of the servo motor B52. Driven bevel gears 54 mesh with both the front and rear sides of the active bevel gear 53. Threaded rods 55 are fixedly installed in the middle of the opposite side of each driven bevel gear 54. The opposite ends of the threaded rods 55 are movably installed on the inner wall of the inner cavity of the U-shaped plate 51. Threaded sleeves 56 are threadedly installed on the opposite side of the outer side of each material. A movable plate 57 is provided above the top of each threaded sleeve 56. A rotating shaft 58 is movably installed in the middle of the opposite side of each movable plate 57. A positioning plate 59 is fixedly installed on the opposite end of each rotating shaft 58. Two clamping ports are opened on the top of the conveyor table 1 near the right side. The clamping ports are arranged front and back. The positioning plates 59 are located in the inner cavities of the adjacent clamping ports. They can clamp the pushed material and flip it under the action of the hydraulic push rod 8. This facilitates the flatness detection of the front and back of the material in sequence, avoiding the continuation of spraying due to dents, which would affect the quality of the product.

[0025] Specifically, a mounting bracket 521 is fixedly installed at the bottom of the servo motor B52, and the upper end of the mounting bracket 521 is fixedly installed on the U-shaped plate 51, which serves to support and fix the servo motor B52.

[0026] Specifically, square rods 561 are slidably installed on the threaded sleeve 56 near the bottom, and the opposite ends of the square rods 561 are fixedly installed on the inner wall of the U-shaped plate 51. Fixed rods 562 are fixedly installed at the middle of the top of the threaded sleeve 56. The upper ends of the fixed rods 562 are fixedly installed on the adjacent movable plates 57, which serve to guide and limit the movement of the threaded sleeve 56, thus ensuring high stability.

[0027] Specifically, a transmission gear 581 is fixedly sleeved on the outer side of the rotating shaft 58 near the middle, and a fixed rack plate 582 is provided on the upper right side of the transmission gear 581. An L-shaped connecting rod 583 is fixedly installed on the bottom of the fixed rack plate 582. The opposite ends of the L-shaped connecting rod 583 are fixedly installed on the conveyor table 1. A spiral spring 584 is sleeved on the outer side of the rotating shaft 58 near the opposite end. One end of the spiral spring 584 is fixedly installed on the adjacent rotating shaft 58, and the other end of the spiral spring 584 is fixedly installed on the fixed shaft 585. The opposite ends of the fixed shaft 585 are fixedly installed on the adjacent moving plate 57. This facilitates the turning and restoration of the plate, making operation convenient. At the same time, the spiral spring 584 can improve the stability of the positioning plate 59 when it is not turning over.

[0028] Specifically, L-shaped support rods 61 are fixedly installed on the right side of the plate 6 near the front and rear sides, and the lower ends of the L-shaped support rods 61 are fixedly installed on the conveyor table 1 to support and fix the plate 6.

[0029] In this embodiment, the pushing assembly 3 includes two side plates 31 fixedly installed on the rear side of the conveyor table 1 near the left side. The side plates 31 are arranged left and right, and a reciprocating screw 32 is provided between the side plates 31. A movable rod is fixedly installed through the upper middle part of the reciprocating screw 32. The left end of the movable rod is movably installed on the left side plate 31, and the right end of the movable rod movably extends through to the outside of the right side plate 31. A servo motor A33 is provided on the right side of the right side plate 31. The output end of the servo motor A33 is fixedly connected to the right end of the movable rod, and the right end of the servo motor A33... An L-shaped bearing plate is fixedly installed on the side. The left side of the L-shaped bearing plate is fixedly installed on the right side plate 31. A screw nut 34 is movably installed on the outer side of the reciprocating screw 32 near the left end. A connecting plate 35 is provided on the front side of the top of the screw nut 34. A pusher plate 36 is fixedly installed on the right side of the connecting plate 35 near the bottom. A guide plate 37 is fixedly installed at the middle of the bottom of the screw nut 34. By driving the pusher plate 36 to move to the right, the board can be conveyed to the right for feeding. No feeding operation is required, which helps to improve the speed of board flatness detection.

[0030] Specifically, an L-shaped rod 351 is fixedly installed on the rear side of the connecting plate 35 near the middle, and the lower end of the L-shaped rod 351 is fixedly installed on the lead screw nut 34, which can drive the connecting plate 35 to move left and right synchronously with the lead screw nut 34.

[0031] Specifically, a guide rod 371 is slidably installed on the guide plate 37, and the left and right ends of the guide rod 371 are respectively fixedly installed on the adjacent side plates 31, which serves to guide and limit the movement of the guide plate 37, thus ensuring high stability.

[0032] In this embodiment, the soot blowing assembly 7 includes a rotating bevel gear 71 located near the rear side of the top of the plate 6 and a transmission bevel gear 72 meshing with the rear side of the rotating bevel gear 71. A transmission rod 73 is fixedly installed through the middle of the transmission bevel gear 72, and a straight plate is movably installed at the front end of the transmission rod 73. The bottom of the straight plate is fixedly installed on the plate 6, and a synchronous pulley A is fixedly sleeved on the outer side of the transmission rod 73 near the rear end. A synchronous pulley B is located below the left side of the synchronous pulley A. The outer sides of the synchronous pulley A and the synchronous pulley B are meshed with a synchronous belt 74, and a movable shaft is fixedly installed through the middle of the upper part of the synchronous pulley B. The front end of the movable shaft is movably installed on the conveyor table 1, and a movable gear 75 is fixedly sleeved on the outer side of the movable shaft near the middle. A transmission shaft is fixedly installed at the middle of the bottom of the rotating bevel gear 71. The lower end of the drive shaft extends through to the bottom of the flat plate 6, and a cam 76 is fixedly sleeved on the outer side of the drive shaft near the lower end. A push plate 77 is provided on the front side of the cam 76, and an airbag 78 is fixedly installed on the front side of the push plate 77. A vertical plate is fixedly installed on the front side of the airbag 78, and the top of the vertical plate is fixedly installed on the flat plate 6. A connecting pipe is fixedly installed through the bottom of the airbag 78 near the front side. A spray pipe 79 is fixedly installed at the end of the connecting pipe away from the airbag 78, and the rear side of the spray pipe 79 is fixedly installed on the vertical plate. A conduit is fixedly installed through the left side of the airbag 78 near the front side. Both the connecting pipe and the conduit are equipped with one-way valves. When feeding the plate, the airbag 78 can be squeezed to blow out air from the spray pipe 79, which can remove the dust attached to the lens of the CCD camera body 10.

[0033] Specifically, sliding rods 771 are slidably installed on the push plate 77 near the left and right sides, and the front ends of the sliding rods 771 are fixedly installed on the upright plate. A return spring 772 is sleeved on the outside of the sliding rods 771. The two ends of the return spring 772 are fixedly installed on the push plate 77 and the upright plate respectively, which facilitates the movement and restoration of the push plate 77.

[0034] Specifically, the top of the movable gear 75 is engaged with a movable rack plate 751, and the movable rack plate 751 is fixedly installed at the bottom of the guide plate 37. It can drive the movable rack plate 751 to move left and right synchronously with the guide plate 37, and at the same time drive the movable gear 75 to rotate.

[0035] Working Principle: During use, the operator places several sheets into the storage frame 2. After placement, the servo motor A33 starts running. The servo motor A33 drives the movable rod to rotate, which in turn drives the reciprocating lead screw 32. The reciprocating lead screw 32 then drives the lead screw nut 34 to move back and forth. This movement of the lead screw nut 34, via the L-shaped rod 351, moves the connecting plate 35 to the right. This movement of the connecting plate 35, in turn, moves the pusher plate 36 to the right. This pusher port on the storage frame 2 then pushes the bottom sheet to the right. As the sheet moves to the right, it enters between the two grinding plates 21. With continued rightward movement, the sheet is ground and deburred on both sides. The external dust collection equipment can be moved to the side of the conveyor table 1 to absorb the dust generated during the grinding process. When the board is pushed onto the conveyor belt 30, the servo motor B52 will start. The servo motor B52 will drive the active bevel gear 53 to rotate. When the active bevel gear 53 rotates, it will drive the driven bevel gears 54 on the front and rear sides to rotate. When the driven bevel gears 54 rotate, they will drive the adjacent threaded rod 55 to rotate. When the threaded rod 55 rotates, it will drive the adjacent threaded sleeve 56 to move relative to each other. When the threaded sleeve 56 moves relative to each other, it will drive the moving plates 57 on both sides to move relative to each other through the adjacent fixed rod 562. When the moving plates 57 move relative to each other, they will drive the adjacent rotating shaft 58 to drive the positioning plates 59 on both sides to move relative to each other, thus grinding the board. The clamping and positioning process also allows the CCD camera body 10 to operate, enabling flatness detection of the front side of the material and image uploading of the image. This is publicly available technology and will not be elaborated upon here. After the front side detection is completed, the hydraulic push rod 8 can be activated. When the hydraulic push rod 8 is running, it will move upward through the irregularly shaped top plate 9, which will drive the U-shaped plate 51 upward. At the same time, it will also drive the material to move upward through the positioning plate 59. After moving upward a certain distance, it will drive the transmission gear 581 to mesh with the adjacent fixed rack plate 582. As it continues to move upward, it will drive the transmission gear 581 to rotate. When the transmission gear 581 rotates, it will drive the adjacent rotating shaft 58 to rotate. When the rotating shaft 58 rotates, it will drive the adjacent positioning plate 59. Rotation causes the sheet material to flip over, and the front and rear spiral springs 584 also rewind. After flipping, the upward movement stops, allowing the CCD camera 10 to capture and inspect the back of the sheet material. After the image is captured, the reverse operation can be performed to restore the sheet material to its original position, and the clamping and positioning of the sheet material can be released simultaneously. If there is a dent, the data is transmitted to the control panel 60, which controls the mechanical gripping arm 4 to remove the damaged sheet material. If there is no damage, the drive motor 40 is activated. The drive motor 40 drives the rotating rod, which in turn drives the conveyor roller 20, which in turn drives the conveyor belt 30, thus conveying the sheet material to the right to the spray curing equipment 50 for spray curing.Then, repeat the above steps to check the flatness of the board and perform the spray coating and curing process.

[0036] The method by which the CCD camera body 10 performs flatness detection on the board material is a mature prior art and is a publicly disclosed prior art. It is electrically connected to the control panel 60, so it will not be described in detail here.

[0037] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus.

[0038] 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. An automated production line for UV coating of storage cabinet surface, comprising a conveyor table (1) and a storage box (2) fixedly installed on the top of the conveyor table (1) near the middle, characterized in that: The storage box (2) has a pusher opening at the bottom of both sides, and a pusher assembly (3) is installed on the rear side of the conveyor (1) near the left side. A flipping assembly (5) is installed on the bottom of the conveyor (1) near the right side. A plate (6) is set on the top of the conveyor (1) near the upper right side. A dust blowing assembly (7) is installed on the top of the plate (6) near the rear side. A support plate is fixedly installed on the rear side of the conveyor (1) near the right side. A hydraulic push rod (8) is fixedly installed at the bottom of the support plate. A circular opening is opened on the top of the support plate. The power end of the hydraulic push rod (8) passes through the inner cavity of the circular opening and is fixedly installed with a special-shaped top plate (9). A CCD camera body (10) is installed in the middle of the bottom of the plate (6). A spray curing device (50) is installed on the right side of the conveyor (1). The flipping assembly (5) includes a U-shaped plate (51) located at the bottom of the conveyor table (1) near the right side. The bottom of the U-shaped plate (51) is fixedly connected to the top of the irregular top plate (9). A rectangular opening is provided in the middle of the bottom of the U-shaped plate (51). A servo motor B (52) is provided in the inner cavity of the rectangular opening. An active bevel gear (53) is fixedly installed at the output end of the servo motor B (52). A driven bevel gear (54) meshes with both the front and rear sides of the active bevel gear (53). A threaded rod (55) is fixedly installed in the middle of the opposite side of the driven bevel gear (54). The opposite ends of the threaded rod (55) are movably installed on the inner wall of the cavity of the U-shaped plate (51). The outer side of the threaded rod (55) near the opposite end is threaded with a threaded sleeve (56). A movable plate (57) is provided above the top of the threaded sleeve (56). A rotating shaft (58) is movably installed in the middle of the opposite side of the movable plate (57). A positioning plate (59) is fixedly installed at the opposite end of the rotating shaft (58). Two clamping ports are opened at the top of the conveyor table (1) near the right side. The clamping ports are arranged in front and behind. The positioning plates (59) are located in the cavities of the adjacent clamping ports.

2. The automated UV coating production line for the surface of a storage cabinet according to claim 1, characterized in that: The bottom of the servo motor B (52) is fixedly mounted with a fixing bracket (521), and the upper end of the fixing bracket (521) is fixedly mounted on the U-shaped plate (51); a square rod (561) is slidably installed through the threaded sleeve (56) near the bottom, and the opposite end of the square rod (561) is fixedly mounted on the inner wall of the U-shaped plate (51); a fixing rod (562) is fixedly installed at the middle of the top of the threaded sleeve (56), and the upper end of the fixing rod (562) is fixedly mounted on the adjacent moving plate (57).

3. The automated UV coating production line for the surface of a storage cabinet according to claim 1, characterized in that: A transmission gear (581) is fixedly sleeved on the outer side of the rotating shaft (58) near the middle. A fixed rack plate (582) is provided on the upper right side of the transmission gear (581). An L-shaped connecting rod (583) is fixedly installed on the bottom of the fixed rack plate (582). The opposite ends of the L-shaped connecting rod (583) are fixedly installed on the conveyor table (1). A spiral spring (584) is sleeved on the outer side of the rotating shaft (58) near the opposite end. One end of the spiral spring (584) is fixedly installed on the adjacent rotating shaft (58). The other end of the spiral spring (584) is fixedly installed on the fixed shaft (585). The opposite end of the fixed shaft (585) is fixedly installed on the adjacent moving plate (57).

4. The automated production line for UV coating of storage cabinet surface according to claim 1, characterized in that: L-shaped support rods (61) are fixedly installed on the right side of the plate (6) near the front and rear sides, and the lower ends of the L-shaped support rods (61) are fixedly installed on the conveyor table (1).

5. The automated production line for UV coating of storage cabinet surface according to claim 1, characterized in that: The feeding assembly (3) includes two side plates (31) fixedly installed on the rear side of the conveyor table (1) near the left side. The side plates (31) are arranged left and right, and a reciprocating screw (32) is provided between the side plates (31). A movable rod is fixedly installed through the middle of the reciprocating screw (32). The left end of the movable rod is movably installed on the left side plate (31), and the right end of the movable rod extends through to the outside of the right side plate (31). A servo motor A (33) is provided on the right side of the right side plate (31). 3) The output end is fixedly connected to the right end of the movable rod, and an L-shaped bearing plate is fixedly installed on the right side of the servo motor A (33). The left side of the L-shaped bearing plate is fixedly installed on the right side plate (31). A screw nut (34) is movably installed on the outer side of the reciprocating screw (32) near the left end. A connecting plate (35) is provided on the front side of the top of the screw nut (34). A pusher plate (36) is fixedly installed on the right side of the connecting plate (35) near the bottom. A guide plate (37) is fixedly installed in the middle of the bottom of the screw nut (34).

6. The automated production line for UV coating of storage cabinet surface according to claim 5, characterized in that: An L-shaped rod (351) is fixedly installed on the rear side of the connecting plate (35) near the middle, and the lower end of the L-shaped rod (351) is fixedly installed on the screw nut (34).

7. The automated UV coating production line for the surface of a storage cabinet according to claim 5, characterized in that: A guide rod (371) is slidably installed on the guide plate (37), and the left and right ends of the guide rod (371) are respectively fixedly installed on the adjacent side plates (31).

8. The automated production line for UV coating of storage cabinet surface according to claim 1, characterized in that: The soot blowing assembly (7) includes a rotating bevel gear (71) located on the top of the plate (6) near the rear side and a transmission bevel gear (72) meshing with the rear side of the rotating bevel gear (71). A transmission rod (73) is fixedly installed through the middle of the transmission bevel gear (72), and a straight plate is movably installed at the front end of the transmission rod (73). The bottom of the straight plate is fixedly installed on the plate (6), and a synchronous wheel A is fixedly sleeved on the outer side of the transmission rod (73) near the rear end. A synchronous wheel B is located below the left side of the synchronous wheel A. The outer sides of the synchronous wheel A and the synchronous wheel B are meshed with a synchronous belt (74), and a movable shaft is fixedly installed through the middle of the synchronous wheel B. The front end of the movable shaft is movably installed on the conveyor table (1), and a movable gear (75) is fixedly sleeved on the outer side of the movable shaft near the middle. A transmission shaft is fixedly installed at the middle of the bottom of the rotating bevel gear (71), and the lower end of the transmission shaft extends movably through to the bottom of the plate (6). A cam (76) is fixedly sleeved on the outer side of the drive shaft near the lower end. A push plate (77) is provided on the front side of the cam (76). An airbag (78) is fixedly installed on the front side of the push plate (77). A vertical plate is fixedly installed on the front side of the airbag (78). The top of the vertical plate is fixedly installed on the flat plate (6). A connecting pipe is fixedly installed through the bottom of the airbag (78) near the front side. A spray pipe (79) is fixedly installed at the end of the connecting pipe away from the airbag (78). The rear side of the spray pipe (79) is fixedly installed on the vertical plate. A conduit is fixedly installed through the left side of the airbag (78) near the front side. The push plate (77) is slidably mounted with sliding rods (771) near the left and right sides. The front ends of the sliding rods (771) are fixedly mounted on the upright plate. The outer sides of the sliding rods (771) are fitted with return springs (772). The two ends of the return springs (772) are fixedly mounted on the push plate (77) and the upright plate, respectively. The top of the movable gear (75) is engaged with a movable rack plate (751), and the movable rack plate (751) is fixedly mounted at the bottom of the guide plate (37).

9. The automated production line for UV coating of storage cabinet surface according to claim 1, characterized in that: A groove is provided on the right side of the top of the conveyor table (1). A conveyor roller (20) is provided on both the left and right sides of the inner cavity of the groove. A conveyor belt (30) is sleeved on the outer side of the conveyor roller (20). A rotating rod is fixedly installed through the middle of the upper part of the conveyor roller (20). The front end of the rotating rod is movably installed on the inner wall of the inner cavity of the groove. The rear end of the rotating rod extends through to the outer side of the conveyor table (1). An L-shaped plate is fixedly installed on the rear side of the conveyor table (1) near the right side. A drive motor (40) is fixedly installed on the inner side of the L-shaped plate. The output end of the drive motor (40) is fixedly connected to the rear end of the left rotating rod. A circular seat is provided on the front side of the conveyor table (1) near the right side. A mechanical clamping arm (4) is installed in the middle of the top of the circular seat. A pusher groove is provided on the left side of the top of the conveyor table (1). A control panel (60) is fixedly installed on the front side of the spray curing equipment (50) near the left side.

10. An automated production line for UV coating of storage cabinet surface according to claim 1, characterized in that: Two grinding plates (21) are fixedly installed at the bottom right side of the storage frame (2), and the grinding plates (21) are set up vertically. The left side of the upper grinding plate (21) is fixedly installed on the storage frame (2), and the bottom of the lower grinding plate (21) is fixedly installed on the bottom wall of the inner cavity of the pusher groove.