Processing device for multi-layer composite quartz material

By designing the box and sponge board structure of the multi-layer composite quartz material processing device, the problem of debris cleaning during the lamination of quartz stone slabs was solved, ensuring the cleanliness and aesthetics of the lamination process.

CN223961731UActive Publication Date: 2026-03-03SUZHOU ANYI ROBOT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing processing equipment cannot effectively clean surface debris when applying a film to quartz stone slabs, resulting in debris affecting the appearance and potentially scratching the slabs.

Method used

A processing device for multi-layer composite quartz materials was designed. The horizontally moving box drives the sponge plate to clean the surface of the quartz slab. The cleaning force is gradually increased by combining sponge plates of different heights, and the cleaning effect is ensured by the cooperation structure of clamping plates and fixing plates.

Benefits of technology

This effectively prevents debris from covering the surface of the quartz slab during the coating process, improving the quality of the coating and the protective effect on the slab.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the technical scheme, the processing device for the multi-layer composite quartz material comprises a bottom plate, a fixing plate is fixed to the middle of the top face of the bottom plate, a clamping plate is further arranged on one side of the top face of the bottom plate, a box body is arranged on the other side of the top face of the bottom plate, and a connecting plate is fixed to the side, close to the clamping plate, of the box body. The connecting plate comprises at least two flat plates with gradually increased horizontal heights, the horizontal height of the flat plate close to one end of the box body is lowest, telescopic rods are fixed on the bottom surfaces of the plurality of flat plates of the connecting plate, pressure springs are wound on the telescopic rods, a transverse plate is fixed at the output ends of the telescopic rods, and a sponge plate is arranged on the bottom surface of the transverse plate. The box body horizontally moves to drive the sponge plates to move so as to clean the surface of the quartz stone plate, meanwhile, through the multiple sponge plates with different heights, on one hand, the multiple sponge plates are used for improving the cleaning effect, on the other hand, the sponge plates with different heights are used for gradually increasing the cleaning work strength, and the cleaning effect is further guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of coating technology, specifically to a processing device for multilayer composite quartz materials. Background Technology

[0002] Lamination, also known as "plastic coating," "laminating," or "film application," refers to the process of applying a transparent plastic film to the surface of printed materials through heat and pressure, serving to protect the material and enhance its gloss. Lamination is widely used for the surface binding and protection of book covers, albums, commemorative albums, postcards, product manuals, calendars, and maps. Quartz stone slabs also require lamination.

[0003] However, current processing equipment cannot clean the debris from the surface of quartz stone slabs when applying the film. When the laminating machine applies the film to the quartz stone slabs, it will cover the surface with the debris, which not only affects the appearance of the quartz stone slabs, but may also scratch the quartz stone slabs during transportation, causing them to be returned to the factory for reprocessing. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a processing device for multi-layer composite quartz materials.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows:

[0006] A processing device for multi-layer composite quartz material includes a base plate, a fixing plate that abuts against a quartz slab fixed in the middle of the top surface of the base plate, a horizontally movable clamping plate provided on one side of the top surface of the base plate, and a horizontally movable box provided on the other side of the top surface of the base plate. A connecting plate is fixed to the side of the box near the clamping plate. The connecting plate includes at least two flat plates with increasing horizontal heights, with the flat plate near the box having the lowest horizontal height. Telescopic rods are fixed to the bottom surfaces of the multiple flat plates of the connecting plate. Pressure springs are wound on the telescopic rods. A horizontal plate is fixed to the output end of the telescopic rods, and a sponge board is provided on the bottom surface of the horizontal plate. A coating mechanism for coating is provided inside the box.

[0007] Preferably, the cross-sections of the clamping plate and the fixing plate are both set as right-angled triangles, and the opposite sides of the clamping plate and the fixing plate are hypotenuses.

[0008] Preferably, a connecting plate is also fixed on the side of the box body away from the clamping plate, and the horizontal height of the plate is highest at the end closest to the box body.

[0009] Preferably, the cross section of the horizontal plate and the sponge plate is set as an isosceles trapezoid with the lower base length being less than the upper base length, and the inclination angle of the hypotenuse of the isosceles trapezoid is equal to the inclination angle of the hypotenuse of the clamping plate.

[0010] Preferably, under normal conditions, the horizontal height of the bottom surface of the highest sponge board is not higher than the horizontal height of the highest point of the fixed board.

[0011] Preferably, the height of the clamping plate and the fixing plate is not greater than the thickness of the quartz slab.

[0012] Preferably, the bottom of the box body has a through hole for the quartz slab to pass through.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] 1. This utility model uses the horizontal movement of the box to move the sponge board to clean the surface of the quartz stone slab, thereby preventing debris from covering the surface of the quartz stone slab during the subsequent coating process. At the same time, the use of multiple sponge boards of different heights not only improves the cleaning effect, but also gradually increases the cleaning intensity by using sponge boards of different heights, further ensuring the cleaning effect.

[0015] 2. This utility model uses a clamping plate with a right-angled triangular cross section and a fixing plate, combined with a horizontal plate with an overall cross section of an isosceles trapezoid and a sponge plate, which facilitates the raising and lowering of the sponge plate, thereby facilitating the cleaning work and has high practical value. Attached Figure Description

[0016] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the structure of the base plate of this utility model;

[0019] Figure 3 This is a schematic diagram of the structure of the drive component of this utility model;

[0020] Figure 4 This is a schematic diagram of the internal structure of the box body of this utility model;

[0021] Figure 5 This is a schematic diagram of the structure of the clamping plate of this utility model.

[0022] The diagram shows: 1. Base plate; 2. Clamping plate; 3. Drive component one; 4. Housing.

[0023] 5. Quartz slab; 6. Drive component two; 7. Threaded rod; 8. Threaded block; 9. Fixing plate;

[0024] 10. Lead screw; 11. Moving block; 12. Connecting plate; 13. Telescopic rod; 14. Pressure spring;

[0025] 15. Horizontal plate; 16. Sponge board; 17. Cylinder; 18. Fixing block; 19. Coating roller; 20. Film cutter. Detailed Implementation

[0026] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0027] like Figure 1 As shown, a processing device for multilayer composite quartz materials according to this utility model includes a base plate 1, such as... Figure 2 As shown, a fixing plate 9 is fixed to the center of the top surface of the base plate 1, and a driving component 6 is fixedly installed on one side of the base plate 1, as shown. Figure 5 As shown, the output end of the second driving component 6 is equipped with a threaded rod 7 located inside the base plate 1. A threaded block 8 is threaded on the threaded rod 7. The threaded block 8 passes through the top surface of the base plate 1 and is slidably connected to the base plate 1. A clamping plate 2 located on the top surface of the base plate 1 is fixed to the top of the threaded block 8. The operation of the second driving component 6 drives the threaded rod 7 to rotate, thereby driving the threaded block 8 to move horizontally on the threaded rod 7. The movement of the threaded block 8 drives the clamping plate 2 to move, thereby clamping the quartz slab 5 located on the top surface of the base plate 1 between the clamping plate 2 and the fixing plate 9.

[0028] A drive component 3 is fixedly installed on the other side of the base plate 1. Both drive component 3 and drive component 6 are configured as drive motors to provide a stable power source for the device. Figure 3 As shown, the output end of the drive unit 3 is equipped with a lead screw 10 located inside the base plate 1. A moving block 11 is threaded on the lead screw 10. The moving block 11 passes through the top surface of the base plate 1 and is slidably connected to the base plate 1. The top of the moving block 11 is fixed with a box 4 located on the top surface of the base plate 1. The drive unit 3 drives the box 4 to move horizontally. The lead screw 10 and the threaded rod 7 are in the same direction, so that the box 4 moves along the line connecting the clamping plate 2 and the fixing plate 9. The bottom of the box (4) is provided with a through hole for the quartz slab (5) to pass through, so as to ensure the stable horizontal movement of the box 4.

[0029] like Figure 3As shown, connecting plates 12 are fixed on both sides of the box body 4. The connecting plates 12 are Z-shaped plates including two flat plates. The side of the box body 4 near the clamping plate 2 is connected to the lowest flat plate of the connecting plate 12, and the side of the box body 4 away from the clamping plate 2 is connected to the highest flat plate of the connecting plate 12. The bottom surfaces of the multiple flat plates of the connecting plate (12) are fixed with telescopic rods (13). A pressure spring (14) is wound on the telescopic rod (13). A horizontal plate (15) is fixed at the output end of the telescopic rod (13), and a sponge plate (16) is provided on the bottom surface of the horizontal plate (15). The horizontal movement of the box body 4 drives the sponge plate 16 to move. The pressure spring 14 makes the sponge plate 16 clean the surface of the quartz slab 5, so as to avoid covering the surface of the quartz slab 5 with debris in the subsequent coating work. At the same time, the two sponge plates 16 of different heights improve the cleaning effect on the one hand, and gradually increase the cleaning force by using sponge plates 16 of different heights, further ensuring the cleaning effect.

[0030] like Figure 1 As shown, the height of the clamping plate (2) and the fixing plate (9) is not greater than the thickness of the quartz slab (5) to avoid the height difference affecting the cleaning work of the sponge board 16. Under normal conditions, the horizontal height of the bottom surface of the sponge board (16) is not higher than the horizontal height of the highest point of the fixing plate (9) to ensure that the sponge board 16 can clean the quartz slab 5. The cross sections of the clamping plate (2) and the fixing plate (9) are both set as right-angled triangles, and the opposite sides of the clamping plate (2) and the fixing plate (9) are hypotenuses. The cross section of the horizontal plate (15) and the sponge board (16) is set as an isosceles trapezoid with the lower base length less than the upper base length, and the inclination angle of the hypotenuse of the isosceles trapezoid is equal to the inclination angle of the hypotenuse of the clamping plate (2). The clamping plate 2 and the fixing plate 9 with the right-angled triangle cross section, together with the horizontal plate 15 and the sponge board 16 with the overall cross section of the isosceles trapezoid, are conducive to the lifting and lowering of the sponge board 16, which in turn is conducive to the cleaning work.

[0031] A cylinder 17 is installed at the top of the box (4), such as Figure 4 As shown, a fixing block 18 is fixed to the bottom output end of the cylinder 17. A coating roller 19 is rotatably mounted on the fixing block 18. The horizontal height of the bottom surface of the fixing block 18 is higher than the horizontal height of the lowest point of the coating roller 19. A cutting knife 20 is mounted on the end of the fixing block 18 away from the clamping plate 2 via the cylinder 17. The coating mechanism, including the cylinder 17, the fixing block 18, the coating roller 19, and the cutting knife 20, completes the coating work on the surface of the quartz slab 5.

[0032] In use, the quartz slab 5 is placed on the top surface of the base plate 1 with one end abutting against the right-angle plate of the fixing plate 9. The driving component 2 6 drives the clamping plate 2 to move horizontally, thereby clamping the quartz slab 5. The driving component 3 drives the box 4 to move horizontally, thereby driving the sponge plate 16 to clean the surface of the quartz slab 5. After cleaning, the surface of the quartz slab 5 is coated by the coating mechanism. After coating, the surface of the film is cleaned and the film is compacted by the sponge plate 16 on the other side. It has high practical value.

[0033] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A processing apparatus for a multi-layered composite quartz material, characterized by: The utility model provides a quartz plate fixing device, including bottom plate (1), the fixed plate (9) of the middle part of the top surface of bottom plate (1) is fixed with the resistance quartz plate (5), and the top surface of bottom plate (1) one side is provided with the clamping plate (2) that can move horizontally, the top surface of bottom plate (1) the other side is provided with the box (4) that can move horizontally, the side of box (4) close to clamping plate (2) is fixed with the connecting plate (12), the connecting plate (12) includes at least two horizontal height increasing flat plate, and the horizontal height of flat plate close to the one end of box (4) is lowest, the bottom surface of multiple flat plate of connecting plate (12) is fixed with telescopic link (13), is wound with pressure spring (14) on telescopic link (13), the output end of telescopic link (13) is fixed with transverse plate (15), and the bottom surface of transverse plate (15) is provided with sponge board (16), be provided with the film covering mechanism for film covering in box (4).

2. The apparatus of claim 1, wherein: The cross section of the clamping plate (2) and the fixed plate (9) is a right triangle, and the opposite sides of the clamping plate (2) and the fixed plate (9) are oblique sides.

3. The apparatus of claim 2, wherein: The connecting plate (12) is also fixed on the side of the box (4) away from the clamping plate (2), and the horizontal height of the flat plate close to the one end of the box (4) is the highest.

4. The apparatus of claim 3, wherein: The cross section of the transverse plate (15) and the sponge board (16) is an isosceles trapezoid with the lower base length smaller than the upper base length, and the inclination angle of the oblique side of the isosceles trapezoid is equal to the inclination angle of the oblique side of the clamping plate (2).

5. The apparatus of claim 4, wherein: Under normal circumstances, the horizontal height of the bottom surface of the sponge board (16) is not higher than the horizontal height of the highest point of the fixed plate (9).

6. The apparatus of claim 5, wherein: The height of the clamping plate (2) and the fixed plate (9) is not greater than the thickness of the quartz plate (5).

7. The apparatus of claim 1, wherein: The box (4) is provided with a through hole at the bottom for the quartz plate (5) to pass through.