Calcium silicate wallboard pattern printing device
By introducing a support frame assembly and a dust filter assembly into the pattern printing device for calcium silicate wall panels, the problem of dust adhesion was solved, achieving efficient drying and improved aesthetics of the calcium silicate wall panels.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-03-31
AI Technical Summary
During the drying process of existing calcium silicate wall panels, dust in the air easily adheres to the panels, affecting their aesthetics.
A pattern printing device for calcium silicate wall panels was designed, comprising a UV printer, a support frame assembly, a drying assembly, and a dust filter assembly. The calcium silicate board is transported through the support frame assembly, and the dust filter assembly filters dust from the air during the drying process. The drying assembly is used for heating and drying to reduce dust adhesion.
It effectively reduces dust adhesion and improves the aesthetics of calcium silicate wall panels.
Smart Images

Figure CN224060704U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of calcium silicate wall panel processing, and in particular to a calcium silicate wall panel pattern printing device. Background Technology
[0002] Calcium silicate wall panels are a type of building wall panel. They are made primarily of siliceous and calcareous materials, with loose short fibers such as wood fibers or cellulose fibers added as reinforcing materials. They are inorganic building panels produced through processes such as pulping, molding, and accelerated curing reaction in high-temperature and high-pressure saturated steam. To improve their aesthetics, calcium silicate wall panels are often printed with patterns.
[0003] In the prior art, patent application number 202011246774.4 discloses a 3D printing device and method for energy-saving building wall panels. The device has side plates installed on both sides of its upper end. An L-shaped connecting plate is installed on the outer side of each side plate. A horizontal plate is installed on the outer side of the L-shaped connecting plate. A vertical plate is installed at the upper end of the horizontal plate. A first motor is installed on the outer side of the vertical plate. A crossbeam is installed between the two vertical plates. A 3D printing nozzle is installed at the upper end of the crossbeam. A first nozzle, a second nozzle, and a third nozzle are provided at the lower end of the 3D printing nozzle. A drying chamber is installed at the front end of the 3D printing nozzle. A fixing plate is provided below the L-shaped connecting plate. An electric cylinder is installed at the upper end of the fixing plate. The upper end of the electric cylinder is fixedly connected to the L-shaped connecting plate. A sliding strip is provided between the L-shaped connecting plate and the side plates.
[0004] During use, it was found that although the above-mentioned device can dry building wall panels, if there is dust in the air, the dust will also stick to the wall panels while drying them, affecting their appearance. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a calcium silicate wall panel pattern printing device.
[0006] This utility model discloses a pattern printing device for calcium silicate wall panels, comprising a UV printer and a controller. The controller is located at the front end of the UV printer, which also includes a support frame assembly, a drying assembly, and a filter assembly. The support frame assembly is located at the right end of the UV printer, and the drying assembly is mounted on the support frame assembly. A dust filter assembly is located at the input end of the drying assembly. After the calcium silicate board is printed with patterns by the UV printer, the support frame assembly seamlessly connects with the UV printer to transport the calcium silicate board while simultaneously activating the drying assembly. This allows the drying assembly to dry the printed calcium silicate board, while the dust filter assembly filters dust from the air adsorbed by the drying assembly, reducing dust adhesion to the calcium silicate board and improving its aesthetics.
[0007] Preferably, the support frame assembly includes legs, a support frame, connecting rods, fixed seats, a motor, rotating shafts, guide rollers, sprockets, and chains. Multiple sets of legs are provided at the bottom of the support frame. A set of connecting rods is provided on the front and rear sides of the left side of the support frame. A set of fixed seats is provided at the left end of each set of connecting rods. The fixed seats are connected to the right end of the UV printer via bolts. Multiple sets of rotating shafts are rotatably arranged inside the support frame. Each set of rotating shafts is equipped with a set of guide rollers. A motor is installed on the support frame, and the motor output is connected to one end of a set of rotating shafts. Two sets of sprockets are provided on each set of rotating shafts. The two sets of sprockets of adjacent sets of rotating shafts are driven by chains. In use, the controller starts the motor, which causes the multiple sets of rotating shafts and guide rollers to rotate synchronously and in the same direction with the cooperation of the sprockets and chains, thereby enabling the multiple sets of guide rollers to cooperate in conveying the calcium silicate board.
[0008] Preferably, the drying assembly includes a support frame, a drying chamber, a fan, an air outlet pipe, a spray pipe, and spray nozzles. The support frame is mounted on a support structure. A set of drying chambers and a set of fans are respectively installed at the top of the support frame. An electric heating wire is installed inside the drying chamber. A dust filter assembly is installed at the input end of the drying chamber. The output end of the drying chamber is connected to the input end of the fan. An air outlet pipe is installed at the output end of the fan. The output end of the air outlet pipe extends to the inside of the support frame and is connected to the input end of the spray pipe. Multiple spray nozzles are installed at the bottom end of the spray pipe. When the fan is started, the outside air enters the drying chamber after being filtered by the dust filter assembly. After being heated by the electric heating wire, the air enters the spray pipe through the air outlet pipe. The air entering the spray pipe is evenly sprayed onto the calcium silicate board through the multiple spray nozzles, thereby drying the printed calcium silicate board and preventing dust in the air from adhering.
[0009] Preferably, the dust filtration assembly includes a three-way pipe, a diverter pipe, a diverter valve, and a filter screen. The output end of the three-way pipe is connected to the input end of the drying chamber. Each of the two input ends of the three-way pipe is provided with a diverter pipe, and each diverter pipe input end is detachably provided with a filter screen. Each diverter pipe is provided with a diverter valve. Opening one diverter valve and closing the other diverter valve allows the corresponding filter screen to filter dust from the incoming air. When the filter screen needs to be disassembled and cleaned, the two diverter valves are switched to switch between the two sets of filter screens, thus achieving continuous drying while cleaning the filter screen, improving processing efficiency.
[0010] Preferably, it also includes a base, with a base provided at the bottom of each set of legs; multiple sets of bases and multiple sets of legs work together to provide stable support for the support frame and improve stability.
[0011] Preferably, the support frame also includes a handle; when the support frame is disassembled and moved, the staff can use the handle to move the support frame, improving convenience.
[0012] Preferably, the bottom of the base is provided with an anti-slip pad.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: After the calcium silicate board is printed with patterns by the UV printer, the support frame assembly is seamlessly connected with the UV printer to transport the calcium silicate board while the drying assembly is activated, so that the drying assembly dries the printed calcium silicate board. At the same time, the dust filter assembly filters the dust adsorbed by the drying assembly, reducing dust adhesion on the calcium silicate board and improving the aesthetics of the calcium silicate board. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the isometric structure of this utility model;
[0015] Figure 2 This is an exploded structural diagram of the present invention;
[0016] Figure 3 This is an enlarged structural diagram of the guide rollers and drying box, etc.
[0017] Figure 4 This is an exploded structural diagram of the air jet pipe and support structure;
[0018] Figure 5 It is an enlarged structural diagram of structures such as tee pipes and fans.
[0019] The following are labels in the attached diagram: 1. UV printer; 2. Controller; 3. Leg; 4. Support frame; 5. Connecting rod; 6. Fixture; 7. Motor; 8. Shaft; 9. Guide roller; 10. Sprocket; 11. Chain; 12. Bracket; 13. Drying oven; 14. Fan; 15. Air outlet pipe; 16. Air spray pipe; 17. Printhead; 18. T-connector; 19. Diverter pipe; 20. Diverter valve; 21. Filter screen; 22. Base; 23. Handle. Detailed Implementation
[0020] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example 1
[0021] like Figure 1 and Figure 2 As shown, the present invention provides a calcium silicate wall panel pattern printing device, which includes a UV printer 1 and a controller 2. The controller 2 is provided at the front end of the UV printer 1, and the device also includes a support frame assembly, a drying assembly and a filter assembly. The support frame assembly is provided at the right end of the UV printer 1, and the drying assembly is provided on the support frame assembly. The dust filter assembly is provided at the input end of the drying assembly.
[0022] like Figure 3 and Figure 4 As shown, the support frame assembly includes legs 3, support frame 4, connecting rods 5, fixed seats 6, motor 7, rotating shafts 8, guide rollers 9, sprockets 10, and chains 11. The bottom of the support frame 4 is provided with multiple sets of legs 3. The left front and rear sides of the support frame 4 are respectively provided with a set of connecting rods 5. Each set of connecting rods 5 is provided with a set of fixed seats 6 at its left end. The fixed seats 6 are connected to the right end of the UV printer 1 by bolts. Multiple sets of rotating shafts 8 are rotatably arranged inside the support frame 4. Each set of rotating shafts 8 is provided with a set of guide rollers 9. The support frame 4 is provided with a motor 7. The output end of the motor 7 is connected to one end of a set of rotating shafts 8. Each set of rotating shafts 8 is provided with two sets of sprockets 10. The two sets of sprockets 10 of two adjacent sets of rotating shafts 8 are driven by chains 11.
[0023] like Figure 4 and Figure 5 As shown, the drying assembly includes a support frame 12, a drying chamber 13, a fan 14, an air outlet pipe 15, an air spray pipe 16, and air spray heads 17. The support frame 12 is mounted on a support frame 4. A set of drying chambers 13 and a set of fans 14 are respectively arranged at the top of the support frame 12. An electric heating wire is installed inside the drying chamber 13. A dust filter assembly is installed at the input end of the drying chamber 13. The output end of the drying chamber 13 is connected to the input end of the fan 14. An air outlet pipe 15 is installed at the output end of the fan 14. The output end of the air outlet pipe 15 extends to the inside of the support frame 12 and is connected to the input end of the air spray pipe 16. Multiple sets of air spray heads 17 are arranged at the bottom end of the air spray pipe 16.
[0024] In this embodiment, during use, the controller 2 starts the motor 7, which causes multiple sets of rotating shafts 8 and multiple sets of guide rollers 9 to rotate synchronously and in the same direction with the cooperation of sprockets 10 and chains 11. This allows the multiple sets of guide rollers 9 to cooperate in conveying the calcium silicate board. The fan 14 is started, so that the outside air enters the drying chamber 13 after being filtered by the dust filter assembly. After being heated by the electric heating wire, the air enters the spray pipe 16 through the air outlet 15. The air entering the spray pipe 16 is evenly sprayed onto the calcium silicate board through multiple sets of spray nozzles 17, thereby drying the printed calcium silicate board. Example 2
[0025] like Figure 1 and Figure 2 As shown, the present invention provides a calcium silicate wall panel pattern printing device, which includes a UV printer 1 and a controller 2. The controller 2 is provided at the front end of the UV printer 1, and the device also includes a support frame assembly, a drying assembly and a filter assembly. The support frame assembly is provided at the right end of the UV printer 1, and the drying assembly is provided on the support frame assembly. The dust filter assembly is provided at the input end of the drying assembly.
[0026] like Figure 3 and Figure 4As shown, the support frame assembly includes legs 3, support frame 4, connecting rods 5, fixed seats 6, motor 7, rotating shafts 8, guide rollers 9, sprockets 10, and chains 11. The bottom of the support frame 4 is provided with multiple sets of legs 3. The left front and rear sides of the support frame 4 are respectively provided with a set of connecting rods 5. Each set of connecting rods 5 is provided with a set of fixed seats 6 at its left end. The fixed seats 6 are connected to the right end of the UV printer 1 by bolts. Multiple sets of rotating shafts 8 are rotatably arranged inside the support frame 4. Each set of rotating shafts 8 is provided with a set of guide rollers 9. The support frame 4 is provided with a motor 7. The output end of the motor 7 is connected to one end of a set of rotating shafts 8. Each set of rotating shafts 8 is provided with two sets of sprockets 10. The two sets of sprockets 10 of two adjacent sets of rotating shafts 8 are driven by chains 11.
[0027] like Figure 4 and Figure 5 As shown, the drying assembly includes a support frame 12, a drying chamber 13, a fan 14, an air outlet pipe 15, an air spray pipe 16, and air spray heads 17. The support frame 12 is mounted on a support frame 4. A set of drying chambers 13 and a set of fans 14 are respectively arranged at the top of the support frame 12. An electric heating wire is installed inside the drying chamber 13. A dust filter assembly is installed at the input end of the drying chamber 13. The output end of the drying chamber 13 is connected to the input end of the fan 14. An air outlet pipe 15 is installed at the output end of the fan 14. The output end of the air outlet pipe 15 extends to the inside of the support frame 12 and is connected to the input end of the air spray pipe 16. Multiple sets of air spray heads 17 are arranged at the bottom end of the air spray pipe 16.
[0028] like Figure 4 and Figure 5 As shown, the dust filtration assembly includes a three-way pipe 18, a diversion pipe 19, a diversion valve 20, and a filter screen 21. The output end of the three-way pipe 18 is connected to the input end of the drying chamber 13. A diversion pipe 19 is provided at each of the two sets of input ends of the three-way pipe 18. A filter screen 21 is detachably provided at the input end of each diversion pipe 19. A diversion valve 20 is provided on each diversion pipe 19.
[0029] It also includes a base 22 and a handle 23. Each set of legs 3 is provided with a base 22 at its bottom end, and the support frame 4 is provided with a handle 23.
[0030] In this embodiment, during use, the controller 2 starts the motor 7, which causes multiple sets of rotating shafts 8 and multiple sets of guide rollers 9 to rotate synchronously and in the same direction with the cooperation of sprockets 10 and chains 11. This allows the multiple sets of guide rollers 9 to cooperate in conveying the calcium silicate board. The fan 14 is started, one set of flow valves 20 is opened and another set of flow valves 20 is closed, so that the corresponding filter screen 21 filters the incoming air. The filtered air enters the drying chamber 13, is heated by the electric heating wire, and then enters the spray pipe 16 through the air outlet 15. The air entering the spray pipe 16 is evenly sprayed onto the calcium silicate board through multiple sets of spray nozzles 17, thereby drying the printed calcium silicate board.
[0031] The controller 2, motor 7, electric heating wire and fan 14 of the calcium silicate wall panel pattern printing device of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0032] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A calcium silicate wallboard color printing device, comprising a UV printer (1) and a controller (2), the front end of the UV printer (1) is provided with the controller (2), characterized in that, Also include support frame assembly, drying assembly and filter assembly, the UV printer (1) right end is provided with support frame assembly, the support frame assembly is provided with drying assembly, the drying assembly input end is provided with dust filter assembly; The support frame assembly includes a support leg (3), a support frame (4), a connecting rod (5), a fixed seat (6), a motor (7), a rotating shaft (8), a guide roller (9), a chain wheel (10) and a chain (11). The support frame (4) is provided with a plurality of support legs (3) at the bottom. The left part of the support frame (4) is provided with a connecting rod (5) on both sides. Each connecting rod (5) is provided with a fixed seat (6) at the left end. The fixed seat (6) is connected with the right end of the UV printer (1) through bolts. A plurality of rotating shafts (8) are rotatably arranged in the support frame (4). Each rotating shaft (8) is provided with a guide roller (9). The support frame (4) is provided with a motor (7). The output end of the motor (7) is connected with one end of a rotating shaft (8). Each rotating shaft (8) is provided with two chain wheels (10). The two chain wheels (10) of adjacent rotating shafts (8) are driven by a chain (11). The drying assembly includes a bracket (12), a drying box (13), a fan (14), an air outlet pipe (15), a blowing pipe (16) and a blowing head (17). The bracket (12) is installed on the support frame (4). The bracket (12) is provided with a drying box (13) and a fan (14) at the top. The drying box (13) is provided with an electric heating wire inside. The drying box (13) is provided with a dust filter assembly at the input end. The output end of the drying box (13) is communicated with the input end of the fan (14). The output end of the fan (14) is provided with an air outlet pipe (15). The air outlet pipe (15) extends to the inside of the bracket (12) and is communicated with the input end of the blowing pipe (16). The blowing pipe (16) is provided with a plurality of blowing heads (17) at the bottom. The dust filter assembly includes a three-way pipe (18), a shunt pipe (19), a shunt valve (20) and a filter screen (21). The output end of the three-way pipe (18) is communicated with the input end of the drying box (13). The two input ends of the three-way pipe (18) are provided with a shunt pipe (19). Each shunt pipe (19) is provided with a filter screen (21) at the input end. Each shunt pipe (19) is provided with a shunt valve (20).
2. A calcium silicate wallboard color printing device as defined in claim 1, wherein, The base (22) is also included. Each support leg (3) is provided with a base (22) at the bottom.
3. A calcium silicate wallboard color printing device as defined in claim 1, wherein, The handle (23) is also included. The support frame (4) is provided with a handle (23).
4. A calcium silicate wallboard color printing device as defined in claim 2, wherein, The bottom end of the base (22) is provided with a non-slip pad.
Citation Information
Patent Citations
3D wallboard printing device for energy-saving building, and using method
CN112406304A