Digital printing structure for calcium silicate board

By introducing a combination of cleaning rollers, suction fans and dust-adhesive rubber rollers into the digital printing structure of calcium silicate boards, the problem of dust affecting print clarity is solved, achieving higher quality printing effects and equipment adaptability.

CN223314685UActive Publication Date: 2025-09-09JIANGSU LONGING NEW MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202422573121.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-09
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In the existing digital printing process of calcium silicate board, dust particles hinder the uniform distribution of ink, resulting in a decrease in the clarity of the printed pattern and affecting production quality.

Method used

A structure including a feeding device, a cleaning box, a cleaning roller, a suction fan and a dust-sticking rubber roller is designed. The dust is swept away by the cleaning roller, the suction fan sucks away the dust, and the dust-sticking rubber roller is used for further cleaning to ensure that the surface of the calcium silicate board is clean.

Benefits of technology

The printing quality of the digital printing device is improved, the cleaning requirements of calcium silicate boards of different thicknesses are adapted, and the versatility of the equipment is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a digital printing structure for a calcium silicate board, which comprises a feeding device, one side of the upper end of the feeding device is provided with a cleaning box, one side of the upper end of the cleaning box is fixedly provided with a driving device, and the output end of the driving device is in transmission connection with a transmission device. And one side of the inner wall of the cleaning box is rotationally connected with a cleaning roller. According to the calcium silicate board cleaning device, a calcium silicate board is placed on the feeding device, when the feeding device conveys the calcium silicate board into the cleaning box, the driving device is started to enable the cleaning roller to rotate, the cleaning roller sweeps dust on the surface of the calcium silicate board, meanwhile, the suction fan is started, and the dust suction head sucks the swept dust into the storage box; when the calcium silicate board moves to the position below the dust sticking rubber roller, the dust sticking rubber roller further cleans the dust on the surface of the calcium silicate board, the structure is simple, operation is convenient, and the printing quality of the digital printing device can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of digital printing equipment for calcium silicate boards, in particular to a digital printing structure for calcium silicate boards. Background Art

[0002] Calcium silicate board is reinforced with loose short fibers such as inorganic mineral fibers or cellulose fibers. Calcium silicate board is a new type of green and environmentally friendly building material and is widely used in various construction projects. In order to make the calcium silicate board more beautiful, a digital printing structure is used to print patterns on the surface of the calcium silicate board.

[0003] Currently, most digital printing structures of calcium silicate boards simply print patterns on the surface of the calcium silicate board. However, there is fine dust on the surface of the calcium silicate board produced by the factory. During printing, the dust particles may hinder the uniform distribution of ink, resulting in a decrease in the clarity of the printed pattern and affecting the production quality of the digital printing structure. Utility Model Content

[0004] The purpose of the present invention is to provide a digital printing structure for calcium silicate board to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned objectives, the utility model provides the following technical solutions: a digital printing structure for calcium silicate board, comprising a feeding device, a cleaning box is provided on one side of the upper end of the feeding device, a driving device is fixedly installed on one side of the upper end of the cleaning box, the output end of the driving device is transmission-connected to the transmission device, one side of the inner wall of the cleaning box is rotatably connected to a cleaning roller, one end of the cleaning roller is transmission-connected to the output end of the transmission device, a suction fan is fixedly installed on the other side of the upper end of the cleaning box, the output end of the suction fan is fixedly connected to a storage box, the output end of the storage box is fixedly connected to a dust collection head, the dust collection head is located on one side of the cleaning roller, the other side of the inner wall of the cleaning box is fixedly connected to a sliding frame, the inner wall of the sliding frame is slidably connected to a mounting frame, and the inner wall of the mounting frame is rotatably connected to a dust-sticky rubber roller.

[0006] As a further preferred embodiment of the present technical solution, one side of the lower end of the loading device is fixedly connected to a mounting platform, a rotating rod is provided in the upper middle part of the mounting platform, the outer surface of the rotating rod is rotatably connected to a plurality of support blocks, the lower ends of the plurality of support blocks are fixedly connected to the upper end of the mounting platform, both sides of the outer surface of the rotating rod are fixedly connected to special-shaped blocks, the middle parts of both sides of the cleaning box are fixedly connected to support frames, and the outer surfaces of the two special-shaped blocks are respectively slidably connected to one end of the two support frames.

[0007] As a further preferred embodiment of the present technical solution, one side of the support blocks is fixedly connected to a fixing frame, one end of the rotating rod is fixedly connected to a polygonal connecting rod, the outer surface of the rotating rod is rotatably connected to the inner wall of the fixing frame, the outer surface of the polygonal connecting rod is slidably connected to a polygonal limiting ring, and one side of the polygonal limiting ring is slidably engaged with one side of the fixing frame.

[0008] As a further preferred embodiment of the present technical solution, one side of the sliding frame is fixedly connected to a mounting plate, one side of the mounting plate is rotatably connected to two clamping blocks, one side of the two clamping blocks is fixedly connected to a return spring, one end of the two return springs is fixedly connected to both sides of the mounting plate, one side of the mounting frame is fixedly connected to a protrusion, and the protrusion is located between the two clamping blocks and clamped.

[0009] As a further preferred embodiment of the present technical solution, a digital printing device is fixedly installed on the other side of the upper end of the feeding device, and a control device is fixedly installed on one side of the digital printing device.

[0010] As a further preferred embodiment of the present technical solution, guide rods are fixedly connected to the four corners of the upper end of the mounting platform, the outer surfaces of the four guide rods are slidably connected to connecting blocks, and one side of the four connecting blocks is fixedly connected to both sides of the cleaning box.

[0011] The utility model provides a digital printing structure for calcium silicate board, which has the following beneficial effects:

[0012] (1) The utility model places the calcium silicate board on a feeding device. When the feeding device transports the calcium silicate board into a cleaning box, the driving device is turned on to rotate the cleaning roller, and the cleaning roller sweeps up the dust on the surface of the calcium silicate board. At the same time, the suction fan is turned on, and the dust suction head sucks the swept dust into the storage box, thereby cleaning the dust on the surface of the calcium silicate board. When the calcium silicate board moves to the bottom of the sticky rubber roller, the sticky rubber roller further cleans the dust on the surface of the calcium silicate board. This structure is simple and easy to operate, and can improve the printing quality of the digital printing device.

[0013] (2) The utility model pulls the polygonal limiting ring to slide it out from one side of the fixed frame, thereby releasing the restriction of the polygonal connecting rod, and then rotates the polygonal connecting rod to rotate the special-shaped block, pushing the support frame upward, thereby adjusting the distance between the cleaning box and the loading device. This structure can clean dust from calcium silicate boards of different thicknesses, thereby improving the versatility of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;

[0015] Figure 2This is a schematic diagram of the connection between the cleaning box and the special-shaped block in the present invention;

[0016] Figure 3 This is a schematic diagram of the internal structure of the cleaning box in the present utility model;

[0017] Figure 4 This is a schematic diagram of the connection relationship between the mounting frame and the sliding frame in the present utility model;

[0018] Figure 5 This is a schematic diagram of the connection between the rotating rod and the fixing frame in the present invention;

[0019] Figure 6 for Figure 4 A partial enlarged schematic diagram of area A in the middle;

[0020] In the figure: 1. Feeding device; 2. Cleaning box; 3. Driving device; 4. Transmission device; 5. Storage box; 6. Suction fan; 7. Mounting frame; 8. Dust suction head; 9. Sticky rubber roller; 10. Cleaning roller; 11. Sliding frame; 12. Digital printing device; 13. Control device; 14. Mounting table; 15. Support frame; 16. Rotating rod; 17. Connecting block; 18. Guide rod; 19. Special-shaped block; 20. Support block; 21. Fixed frame; 22. Multi-angle connecting rod; 23. Multi-angle limiting ring; 24. Bump; 25. Mounting plate; 26. Return spring; 27. Clamping block. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0022] The utility model provides a technical solution: Figure 1 - Figure 6As shown, in this embodiment, a digital printing structure for calcium silicate board includes a feeding device 1, a cleaning box 2 is provided on one side of the upper end of the feeding device 1, a driving device 3 is fixedly installed on one side of the upper end of the cleaning box 2, and the output end of the driving device 3 is transmission-connected with the transmission device 4, and one side of the inner wall of the cleaning box 2 is rotatably connected with a cleaning roller 10, one end of the cleaning roller 10 is transmission-connected with the output end of the transmission device 4, a suction fan 6 is fixedly installed on the other side of the upper end of the cleaning box 2, and the output end of the suction fan 6 is fixedly connected to the storage box 5, and the output end of the storage box 5 is fixedly connected to the dust collection head 8, which is located on one side of the cleaning roller 10, and the other side of the inner wall of the cleaning box 2 is fixedly connected to a sliding frame 11, and the inner wall of the sliding frame 11 is slidably connected to the installation The frame 7 is provided with a dust-sticking rubber roller 9 which is rotatably connected to the inner wall of the mounting frame 7. The calcium silicate board is placed on the feeding device 1. When the feeding device 1 transports the calcium silicate board into the cleaning box 2, the driving device 3 is turned on to rotate the cleaning roller 10. The cleaning roller 10 sweeps up the dust on the surface of the calcium silicate board. At the same time, the suction fan 6 is turned on and the dust collection head 8 sucks the swept dust into the storage box 5, thereby cleaning the dust on the surface of the calcium silicate board. When the calcium silicate board moves to the bottom of the dust-sticking rubber roller 9, the dust-sticking rubber roller 9 further cleans the dust on the surface of the calcium silicate board. This structure is simple and easy to operate, and can improve the printing quality of the digital printing device 12. A filter is installed at the connection position between the output end of the suction fan 6 and the input end of the storage box 5.

[0023] like Figure 1 、 Figure 2 and Figure 5 As shown, one side of the lower end of the feeding device 1 is fixedly connected to a mounting platform 14, and a rotating rod 16 is provided in the upper middle part of the mounting platform 14. The outer surface of the rotating rod 16 is rotatably connected to a plurality of support blocks 20, and the lower ends of the plurality of support blocks 20 are fixedly connected to the upper end of the mounting platform 14, and both sides of the outer surface of the rotating rod 16 are fixedly connected to special-shaped blocks 19. The middle of both sides of the cleaning box 2 is fixedly connected to a support frame 15, and the outer surfaces of the two special-shaped blocks 19 are respectively slidably connected to one end of the two support frames 15. By rotating the polygonal connecting rod 22, the special-shaped block 19 is rotated, and the support frame 15 is pushed upward, thereby adjusting the distance between the cleaning box 2 and the feeding device 1. This structure can clean dust on calcium silicate boards of different thicknesses, thereby improving the versatility of the equipment.

[0024] like Figure 2 and Figure 5As shown, one side of one of the support blocks 20 is fixedly connected to a fixing frame 21, one end of the rotating rod 16 is fixedly connected to a polygonal connecting rod 22, the outer surface of the rotating rod 16 is rotatably connected to the inner wall of the fixing frame 21, the outer surface of the polygonal connecting rod 22 is slidably connected to a polygonal limiting ring 23, one side of the polygonal limiting ring 23 is slidably engaged with one side of the fixing frame 21, by pulling the polygonal limiting ring 23, the polygonal limiting ring 23 is slid out from one side of the fixing frame 21, and the restriction of the polygonal connecting rod 22 is released. This structure can limit the rotation of the rotating rod 16 and fix the position of the adjustment cleaning box 2.

[0025] like Figure 4 and Figure 6 As shown, one side of the sliding frame 11 is fixedly connected to a mounting plate 25, and one side of the mounting plate 25 is rotatably connected to two clamping blocks 27. One side of the two clamping blocks 27 is fixedly connected to a return spring 26, and one end of the two return springs 26 is fixedly connected to both sides of the mounting plate 25. One side of the mounting frame 7 is fixedly connected to a protrusion 24, and the protrusion 24 is located between the two clamping blocks 27 and is clamped. When the sticky rubber roller 9 is used for a long time and a lot of dust accumulates on the surface of the sticky rubber roller 9, the mounting frame 7 is pulled, and the protrusion 24 squeezes the two clamping blocks 27, so that the two clamping blocks 27 release the restriction of the mounting frame 7, and the mounting frame 7 is removed from the cleaning box 2 for cleaning and replacement.

[0026] like Figure 1 As shown, a digital printing device 12 is fixedly installed on the other side of the upper end of the feeding device 1, and a control device 13 is fixedly installed on one side of the digital printing device 12. Through the structural design of the digital printing device 12, a digital printing pattern can be performed on the surface of the calcium silicate board.

[0027] like Figure 1 and Figure 2 As shown, guide rods 18 are fixedly connected to the four corners of the upper end of the mounting platform 14, and the outer surfaces of the four guide rods 18 are slidably connected to connecting blocks 17. One side of the four connecting blocks 17 is fixedly connected to the two sides of the cleaning box 2. Through the structural design of multiple guide rods 18 and connecting blocks 17, the lifting direction of the cleaning box 2 can be guided.

[0028] The utility model provides a digital printing structure for calcium silicate board, and the specific working principle is as follows:

[0029] When digital printing is performed on the surface of the calcium silicate board, the calcium silicate board is first placed on the feeding device 1. When the feeding device 1 transports the calcium silicate board to the cleaning box 2, the driving device 3 is turned on to rotate the cleaning roller 10. The cleaning roller 10 sweeps up the dust on the surface of the calcium silicate board. At the same time, the suction fan 6 is turned on and the dust suction head 8 sucks the swept dust into the storage box 5, thereby cleaning the dust on the surface of the calcium silicate board. When the calcium silicate board moves to the bottom of the sticky rubber roller 9, the sticky rubber roller 9 further cleans the dust on the surface of the calcium silicate board. After cleaning, the calcium silicate board continues to move with the feeding device 1 and moves into the digital printing device 12. The structure in the digital printing device 12 digitally prints patterns on the surface of the calcium silicate board. When digitally printing on calcium silicate boards of different thicknesses, pull the polygonal limiting ring 23, slide the polygonal limiting ring 23 out from one side of the fixing frame 21, release the restriction of the polygonal connecting rod 22, and then rotate the polygonal connecting rod 22 to rotate the special-shaped block 19, push the support frame 15 upward, thereby adjusting the distance between the cleaning box 2 and the feeding device 1, and then push the polygonal limiting ring 23, slide one side of the polygonal limiting ring 23 into the fixing frame 21, limit the rotation of the rotating rod 16, fix the adjusted position, and repeat the above operation to perform digital printing.

[0030] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A digital printing structure for calcium silicate board, comprising a feeding device (1), characterized in that: A cleaning box (2) is provided on one side of the upper end of the feeding device (1), a driving device (3) is fixedly installed on one side of the upper end of the cleaning box (2), the output end of the driving device (3) is transmission-connected to the transmission device (4), a cleaning roller (10) is rotatably connected to one side of the inner wall of the cleaning box (2), one end of the cleaning roller (10) is transmission-connected to the output end of the transmission device (4), a suction fan (6) is fixedly installed on the other side of the upper end of the cleaning box (2), the output end of the suction fan (6) is fixedly connected to the storage box (5), the output end of the storage box (5) is fixedly connected to a dust collection head (8), the dust collection head (8) is located on one side of the cleaning roller (10), a sliding frame (11) is fixedly connected to the other side of the inner wall of the cleaning box (2), the inner wall of the sliding frame (11) is slidably connected to the mounting frame (7), and the inner wall of the mounting frame (7) is rotationally connected to the dust-sticking rubber roller (9).

2. The digital printing structure for calcium silicate board according to claim 1, characterized in that: A mounting platform (14) is fixedly connected to one side of the lower end of the loading device (1), a rotating rod (16) is provided in the upper middle portion of the mounting platform (14), the outer surface of the rotating rod (16) is rotatably connected to a plurality of support blocks (20), the lower ends of the plurality of support blocks (20) are fixedly connected to the upper end of the mounting platform (14), and both sides of the outer surface of the rotating rod (16) are fixedly connected to special-shaped blocks (19), and the middle portions of both sides of the cleaning box (2) are fixedly connected to support frames (15), and the outer surfaces of the two special-shaped blocks (19) are respectively slidably connected to one end of the two support frames (15).

3. The digital printing structure for calcium silicate board according to claim 2, characterized in that: One side of one of the support blocks (20) is fixedly connected to a fixing frame (21), one end of the rotating rod (16) is fixedly connected to a polygonal connecting rod (22), the outer surface of the rotating rod (16) is rotatably connected to the inner wall of the fixing frame (21), the outer surface of the polygonal connecting rod (22) is slidably connected to a polygonal limiting ring (23), and one side of the polygonal limiting ring (23) is slidably engaged with one side of the fixing frame (21).

4. The digital printing structure for calcium silicate board according to claim 1, characterized in that: One side of the sliding frame (11) is fixedly connected to a mounting plate (25), one side of the mounting plate (25) is rotatably connected to two clamping blocks (27), one side of the two clamping blocks (27) is fixedly connected to a return spring (26), one end of each of the two return springs (26) is fixedly connected to both sides of the mounting plate (25), one side of the mounting frame (7) is fixedly connected to a protrusion (24), and the protrusion (24) is located between the two clamping blocks (27) and is clamped.

5. The digital printing structure for calcium silicate board according to claim 1, characterized in that: A digital printing device (12) is fixedly mounted on the other side of the upper end of the feeding device (1), and a control device (13) is fixedly mounted on one side of the digital printing device (12).

6. The digital printing structure for calcium silicate board according to claim 2, characterized in that: The four corners of the upper end of the mounting platform (14) are fixedly connected to guide rods (18), the outer surfaces of the four guide rods (18) are slidably connected to connecting blocks (17), and one side of the four connecting blocks (17) is fixedly connected to both sides of the cleaning box (2).