Glass hypersensitization device
By combining spraying modules, drive motors, and fixed columns, the problem of existing devices only being able to spray sensitization on one side has been solved, achieving uniform sensitization of both sides of the glass, improving labor efficiency and product quality, and enhancing the integrity and photosensitivity of the glass.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- PINGHU RUOSI ELECTRONICS CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-05-05
AI Technical Summary
Existing glass sensitization devices can only spray sensitization onto one side, requiring frequent flipping, which wastes labor and time.
The system employs a spraying module, a drive motor, a clamping system consisting of a fixed column and springs, combined with an electric slide rail and heating elements, to achieve double-sided spraying and preheating of the glass. A heating fan is used to promote the reduction reaction of silver sulfate to generate tiny silver particles.
This method achieves uniform sensitization on both sides of the glass, reduces the need for flipping operations, improves labor efficiency and product quality, enhances the integrity and photosensitivity of the glass, and improves reagent utilization efficiency.
Smart Images

Figure CN224199301U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of glass processing, specifically to a glass hypersensitization device. Background Technology
[0002] Sensitization is the process of immersing a substance that is not easily reactive in a reagent to make it more readily reactable. The reagent used is generally one that readily reacts with the reagent used later. In glass processing and manufacturing, the glass surface needs to undergo hypersensitization treatment. This process involves mixing silver nitrate with other chemical reagents and applying them to the glass surface.
[0003] According to Chinese Patent Publication No. CN216614448U, a glass hypersensitization device for mirror processing is disclosed. The top of the moving mechanism is fixedly installed with a material conveying mechanism for material transport, and multiple interconnected spraying mechanisms are fixedly installed on the surface of the moving mechanism. One end of the material conveying mechanism is fixedly connected to the spraying mechanism.
[0004] In the above scheme, by setting electric rollers and conveyor wheels, the glass to be processed can be transported to the bottom of the spraying mechanism for supersensitization treatment. However, it still has the following disadvantages: during the sensitization process, this device can only spray sensitization on one side of the glass. If the other side of the glass is to be sprayed for sensitization, the glass needs to be flipped frequently, which wastes a lot of labor and time costs, thereby reducing the glass's performance. Utility Model Content
[0005] The purpose of this invention is to provide a glass sensitization device to solve the problem that in the glass sensitization process, only one side of the glass can be sprayed for sensitization. If the other side of the glass is to be sprayed for sensitization, the glass needs to be flipped frequently, which wastes a lot of labor and time.
[0006] To achieve the above-mentioned utility model objectives, the present utility model adopts the following technical solution: a glass supersensitization device, including a spraying module, the spraying module being fixed on the top surface of a workbench, the top surface of the workbench being provided with two mounting blocks, mounting holes being provided on both sides of the two mounting blocks that are close to each other, a drive motor being fixed to the inner wall of the mounting hole, a placement plate being fixed between the output shafts of the two drive motors, a plurality of first placement holes being provided on the top surface of the placement plate, a second placement hole being provided on the top surface of the placement plate, a plurality of sliding holes being provided on the left side of the placement plate, the plurality of sliding holes being connected to the first placement holes and the second placement holes respectively, a fixing post being slidably inserted into the inner wall of the sliding hole, a spring being wound around the outer wall of the fixing post, one end of the spring being fixed to the inner wall of the sliding hole, and the other end of the spring being fixed to the outer wall of the fixing post, a plurality of clamping blocks being provided on the inner walls of the first placement hole and the second placement hole, the left clamping block being fixed to one end of the fixing post, and the right clamping block being fixed to the right side of the inner wall of the first placement hole and the second placement hole respectively.
[0007] Preferably, the inner wall of the clamping block is fixed with an anti-slip pad.
[0008] Preferably, the top surface of the workbench has two mounting slots, and an electric slide rail is fixed to the inner wall of the mounting slot. The top surface of the electric slide rail slider is fixed to the bottom surface of the mounting block.
[0009] Preferably, the inner wall of the spraying module is provided with fixing grooves on both the front and rear sides, and heating elements are fixed to the inner wall of the fixing grooves.
[0010] Preferably, the top surface of the workbench has a first receiving groove and a second receiving groove, and the front side of the workbench has a connecting hole that communicates with the second receiving groove. A heating fan is fixed to the inner wall of the connecting hole.
[0011] Preferably, the front side of the workbench is provided with a placement groove, the inner wall of the placement groove is provided with a placement box, the bottom surface of the first receiving groove and the second receiving groove are provided with through holes, the through holes are connected to the placement groove, and the inner wall of the through holes is fixed with a water outlet pipe.
[0012] Compared with existing technologies, a glass hypersensitization device employing the above-mentioned technical solution has the following beneficial effects:
[0013] 1. The combination of the drive motor and the spraying module ensures that the reagent is evenly sprayed onto the outer surface of the glass, guaranteeing the sensitization process and avoiding the waste of labor and time associated with frequent glass flipping, thus improving the glass's performance. 2. The combination of the fixing column and spring allows the clamping block to stably hold and fix the glass, preventing it from falling. 3. The anti-slip pad increases the friction between the clamping block and the outer edge of the glass, preventing the glass from falling and being damaged during rotation, thus improving the glass's integrity. The anti-slip pad also prevents over-clamping by the clamping block.
[0014] Second, the electric slide rail can drive the installation block to reciprocate, which makes it convenient for staff to disassemble and install the glass, so that the glass can be better sensitized, thereby improving the flexibility of the sensitization device.
[0015] Third, the heating element allows for preheating of the glass, enabling it to be preheated before sensitization treatment. This effectively prevents damage to the glass caused by direct heating after sensitization, thus improving the sensitization efficiency. The heating fan further heats the sensitized glass, causing a reduction reaction of silver sulfate to form tiny silver particles, resulting in higher photosensitivity and improved product quality.
[0016] Fourth, by combining the through hole with the water outlet pipe, the reagents sprayed by the spraying module can be discharged into the placement box for centralized collection under the action of the water outlet pipe, which facilitates the recycling and disposal of the used reagents by the staff and thus improves the utilization efficiency of the reagents. Attached Figure Description
[0017] Figure 1 This is a three-dimensional schematic diagram of an embodiment.
[0018] Figure 2 This is an exploded three-dimensional schematic diagram of an embodiment.
[0019] Figure 3 This is an exploded perspective view of the placement plate and clamping block in the embodiment.
[0020] Figure 4 For the example Figure 2 Enlarged diagram of point A in the middle.
[0021] In the diagram: 1. Spraying module; 2. Workbench; 3. Mounting block; 4. Mounting hole; 5. Drive motor; 6. Placement plate; 7. First placement hole; 8. Second placement hole; 9. Sliding hole; 10. Fixing column; 11. Spring; 12. Clamping block; 13. Anti-slip pad; 14. Mounting groove; 15. Electric slide rail; 16. Fixing groove; 17. Heating element; 18. First receiving groove; 19. Second receiving groove; 20. Connecting hole; 21. Heating fan; 22. Placement groove; 23. Placement box; 24. Through hole; 25. Water outlet pipe. Detailed Implementation
[0022] The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0023] like Figures 1-4 As shown, a glass hypersensitization device includes a spray module 1, which is fixed to the top surface of a workbench 2. Two mounting blocks 3 are provided on the top surface of the workbench 2. Mounting holes 4 are provided on both sides of the two mounting blocks 3 that are close to each other. A drive motor 5 is fixed to the inner wall of the mounting holes 4. A placement plate 6 is fixed between the output shafts of the two drive motors 5. Several first placement holes 7 and second placement holes 8 are provided on the top surface of the placement plate 6. Several sliding holes 9 are provided on the left side of the placement plate 6, and the sliding holes 9 are respectively connected to the first placement holes 7. The first placement hole 7 and the second placement hole 8 are connected. A fixing post 10 is slidably inserted into the inner wall of the sliding hole 9. A spring 11 is wound around the outer wall of the fixing post 10. One end of the spring 11 is fixed to the inner wall of the sliding hole 9, and the other end of the spring 11 is fixed to the outer wall of the fixing post 10. Several clamping blocks 12 are provided on the inner walls of the first placement hole 7 and the second placement hole 8. The left clamping block 12 is fixed to one end of the fixing post 10, and the right clamping block 12 is fixed to the right side of the inner wall of the first placement hole 7 and the second placement hole 8 respectively. An anti-slip pad 13 is fixed on the inner wall of the clamping block 12.
[0024] In use, the cooperation between the drive motor 5 and the spraying module 1 ensures that the reagent is evenly sprayed onto the outer surface of the glass, thus guaranteeing the sensitization process and avoiding the waste of labor and time caused by frequent glass flipping, thereby improving the glass's performance. The cooperation between the fixing post 10 and the spring 11 allows the clamping block 12 to stably hold and fix the glass, preventing it from falling. The anti-slip pad 13 increases the friction between the clamping block 12 and the outer edge of the glass, preventing the glass from falling and being damaged during rotation of the placement plate 6, thus improving the integrity of the glass. Simultaneously, the anti-slip pad 13 prevents over-clamping by the clamping block 12.
[0025] like Figure 1 , Figure 2 and Figure 4As shown, the top surface of the workbench 2 has two mounting slots 14, and the inner wall of the mounting slot 14 is fixed with an electric slide rail 15. The top surface of the slider of the electric slide rail 15 is fixed with the bottom surface of the mounting block 3.
[0026] During use, the electric slide rail 15 can drive the mounting block 3 to reciprocate, which makes it convenient for staff to disassemble and install the glass, so that the glass can be better sensitized and the flexibility of the sensitization device can be improved.
[0027] like Figure 1 , Figure 2 and Figure 4 As shown, the inner wall of the spray module 1 has a fixing groove 16 on both the front and rear sides. A heating element 17 is fixed on the inner wall of the fixing groove 16. The top surface of the workbench 2 has a first receiving groove 18 and a second receiving groove 19. The front side of the workbench 2 has a connecting hole 20, which is connected to the second receiving groove 19. A heating fan 21 is fixed on the inner wall of the connecting hole 20.
[0028] In use, the heating element 17 can preheat the glass, allowing it to be heated in advance during the sensitization process. This effectively prevents damage to the glass caused by direct heating after sensitization, thus improving the sensitization efficiency. The heating fan 21 can then heat the sensitized glass, causing a reduction reaction of the silver sulfate in the glass to generate tiny silver particles. This results in higher photosensitivity and ultimately improves the product quality.
[0029] like Figure 1 , Figure 2 and Figure 4 As shown, a placement slot 22 is provided on the front side of the workbench 2, and a placement box 23 is placed on the inner wall of the placement slot 22. The bottom surfaces of the first receiving slot 18 and the second receiving slot 19 are both provided with through holes 24, which are connected to the placement slot 22. A water outlet pipe 25 is fixed on the inner wall of the through hole 24.
[0030] During use, the reagents sprayed by the spray module 1 can be discharged into the placement box 23 for centralized collection through the cooperation of the through hole 24 and the water outlet pipe 25. This makes it convenient for staff to recycle the used reagents and improves the utilization efficiency of the reagents.
[0031] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A glass hypersensitization device, comprising a spraying module (1), said spraying module (1) being fixed to the top surface of a workbench (2), characterized in that, The top surface of the workbench (2) is provided with two mounting blocks (3). Mounting holes (4) are provided on both sides of the two mounting blocks (3) that are close to each other. A drive motor (5) is fixed to the inner wall of the mounting hole (4). A placement plate (6) is fixed between the output shafts of the two drive motors (5). A number of first placement holes (7) are provided on the top surface of the placement plate (6). A number of second placement holes (8) are provided on the top surface of the placement plate (6). A number of sliding holes (9) are provided on the left side of the placement plate (6). The sliding holes (9) are respectively connected to the first placement holes (7) and the second placement holes (8). The inner wall of the sliding hole (9) is slidably fitted with a fixing post (10), and the outer wall of the fixing post (10) is wound with a spring (11). One end of the spring (11) is fixed to the inner wall of the sliding hole (9), and the other end of the spring (11) is fixed to the outer wall of the fixing post (10). The inner walls of the first placement hole (7) and the second placement hole (8) are each provided with a plurality of clamping blocks (12). The clamping block (12) on the left side is fixed to one end of the fixing post (10), and the clamping block (12) on the right side is fixed to the right side of the inner wall of the first placement hole (7) and the second placement hole (8), respectively.
2. The glass hypersensitization device according to claim 1, characterized in that: The inner wall of the clamping block (12) is fixed with an anti-slip pad (13).
3. The glass hypersensitization device according to claim 1, characterized in that: The top surface of the workbench (2) has two mounting slots (14), and an electric slide rail (15) is fixed to the inner wall of the mounting slot (14). The top surface of the slider of the electric slide rail (15) is fixed to the bottom surface of the mounting block (3).
4. The glass hypersensitization device according to claim 3, characterized in that: The spraying module (1) has a fixing groove (16) on both the front and rear sides of its inner wall, and a heating element (17) is fixed on the inner wall of the fixing groove (16).
5. The glass hypersensitization device according to claim 4, characterized in that: The top surface of the workbench (2) is provided with a first receiving groove (18) and a second receiving groove (19). A connecting hole (20) is provided on the front side of the workbench (2). The connecting hole (20) is connected to the second receiving groove (19). A heating fan (21) is fixed on the inner wall of the connecting hole (20).
6. The glass hypersensitization device according to claim 5, characterized in that: The workbench (2) has a placement slot (22) on its front side. A placement box (23) is placed on the inner wall of the placement slot (22). The bottom surfaces of the first receiving slot (18) and the second receiving slot (19) are provided with through holes (24). The through holes (24) are connected to the placement slot (22). A water outlet pipe (25) is fixed on the inner wall of the through hole (24).
Citation Information
Patent Citations
Glass hypersensitization device for mirror processing
CN216614448U