Drying treatment device for coated glass processing
Through the design of heat-resistant telescopic hose and water-absorbing sponge pad combined with the blower and air pump, the problems of high energy consumption and mirror damage of the coated glass drying device are solved, and efficient and low-consumption drying effect is achieved.
Patent Information
- Application Number
- CN202422176898.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-05
AI Technical Summary
Existing coated glass drying devices have high energy consumption and low efficiency, while fixing fixtures may damage the mirror surface.
The heat-resistant telescopic hose and water-absorbing sponge pad are used to match the blower and the air pump. The hot gas is transported through the heat-resistant air transport tube and rolled and dried with the pressing roller. The mirror surface is fixed with the soft rubber pad to avoid contact with the clamp.
Improve drying efficiency, reduce energy consumption, avoid mirror damage, and reduce manufacturing costs.
Smart Images

Figure CN223060875U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of glass processing, in particular to a drying treatment device for coated glass processing. Background Technique
[0002] The main function of the drying treatment device for coated glass processing is to quickly evaporate and dry the moisture and volatile substances on the surface of the coated glass by heating and controlling the environmental conditions, so as to improve the quality and surface finish of the glass, which can ensure the performance and stability of the coated glass in the subsequent processing and use processes.
[0003] During the drying process, simply drying the mirror surface with hot air to evaporate the water stains on the mirror surface not only consumes a lot of energy and has a slow efficiency, but also may cause water marks on the mirror surface due to blowing. At the same time, the mirror surface is fixed by a fixture, but the mirror surface is relatively fragile, and too strong clamping force will cause damage to the mirror surface. Content of the Utility Model
[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and to propose a drying treatment device for coated glass processing with good drying effect and avoiding damage to the mirror surface by the fixture.
[0005] To achieve the above purpose, the utility model provides the following technical solutions:
[0006] A drying treatment device for coated glass processing, including a support tabletop, a drying component and a fixing component. The drying component is arranged at the top end of the support tabletop, and the fixing component is installed at the bottom end of the support tabletop. The drying component includes an installation frame. The top end of the support tabletop is fixedly connected with an installation frame. The top end of the installation frame is fixedly connected with a heat-resistant telescopic hose. Both sides of the installation frame are fixedly connected with fixing plates. The bottom ends of the fixing plates are fixedly connected with water-absorbing sponge pads. A support block is slidably connected inside the installation frame. Springs are fixedly connected to both sides of the top end of the support block. A pressing roller is rotatably connected to the bottom end of the support block. The top end of the installation frame is fixedly connected with a blower. The output end of the blower is fixedly connected with a heat-resistant air duct. A heating coil is fixedly connected inside the heat-resistant air duct;
[0007] The fixing component includes a mirror placement groove. A soft rubber pad is fixedly connected inside the mirror placement groove. An air duct is fixedly connected to the bottom end of the support tabletop. An air extraction pump is fixedly connected to the left side of the bottom end of the support tabletop.
[0008] Further, the top ends of the springs are respectively fixedly connected to the inner top end of the installation frame. The outer top of the heat-resistant telescopic hose is fixedly connected to the middle of the top end of the installation frame. The top end of the heat-resistant telescopic hose is fixedly connected to the right side of the heat-resistant air duct.
[0009] Furthermore, the output end of the air extraction pump is fixedly connected to the left side of the air delivery pipe.
[0010] Furthermore, both sides of the mounting frame are fixedly connected with sliders, and both sides inside the mounting bracket are rotatably connected with threaded rods.
[0011] Furthermore, the outer parts of the sliders are respectively slidably connected to both sides inside the mounting bracket.
[0012] Furthermore, the outer parts of the threaded rods are respectively threadedly connected to the middle parts of the sliders.
[0013] Furthermore, a plurality of driving motors are fixedly connected to the right side of the mounting bracket, and the driving ends of the driving motors are respectively fixedly connected to the right sides of the threaded rods.
[0014] The utility model has the following beneficial effects:
[0015] 1. In the utility model, when the blower is started, the heated gas inside the heat-resistant air delivery pipe is transmitted to the inside of the heat-resistant telescopic hose. The hot gas is input into the inside of the mounting frame through the heat-resistant telescopic hose, and the gas passes through the holes of the support blocks and enters the lower part to dry the mirror surface. The pressing roller rolls on the surface of the mirror surface, and the hot gas is separated by the top of the pressing roller and blown to both sides. The water-absorbing sponge pad adsorbs the liquid on the mirror surface and is further dried through the air outlets on both sides of the support blocks. The drying efficiency is not only high, but also the energy consumption is lower, and the drying quality is better.
[0016] 2. In the utility model, the mirror surface is placed inside the mirror surface placement groove and on the top of the soft rubber pad. When the air extraction pump is started, the air separated between the middle of the soft rubber pad and the mirror surface is pumped out through the air delivery pipe. The mirror surface is adsorbed on the top of the soft rubber pad by the pumping of the air extraction pump, so as to fix the mirror surface, and the damage of the mirror surface caused by the clamping force of the fixture will not occur, reducing the loss of manufacturing cost. Description of the Drawings
[0017] Figure 1 is the overall view of a drying treatment device for coating glass processing proposed by the utility model;
[0018] Figure 2 is the internal view of a drying treatment device for coating glass processing proposed by the utility model;
[0019] Figure 3 is the internal view of the mounting frame of a drying treatment device for coating glass processing proposed by the utility model;
[0020] Figure 4 is the internal view of the heat-resistant air delivery pipe of a drying treatment device for coating glass processing proposed by the utility model.
[0021] Legend Explanation:
[0022] 1. Support tabletop; 2. Mounting frame; 3. Drying component; 301. Blower; 302. Heat-resistant air duct; 303. Mounting frame; 304. Fixed plate; 305. Absorbent sponge pad; 306. Heat-resistant flexible hose; 307. Pressing roller; 308. Spring; 309. Support block; 310. Heating coil; 4. Fixing component; 401. Air extraction pump; 402. Air duct; 403. Soft rubber pad; 404. Mirror placement groove; 5. Slide block; 6. Threaded rod; 7. Driving motor. Specific Embodiment
[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0024] Refer to Figures 1-4 , an embodiment provided by the present invention: A drying treatment device for coating glass processing, including a support tabletop 1, a drying component 3 and a fixing component 4. The drying component 3 is provided at the top end of the support tabletop 1, and the fixing component 4 is installed at the bottom end of the support tabletop 1. The drying component 3 includes a mounting frame 303. The top end of the support tabletop 1 is fixedly connected to a mounting frame 2. The top end of the mounting frame 303 is fixedly connected to a heat-resistant flexible hose 306. Both sides of the mounting frame 303 are fixedly connected to a fixed plate 304. The bottom end of the fixed plate 304 is fixedly connected to an absorbent sponge pad 305. The inside of the mounting frame 303 is slidably connected to a support block 309. Both sides of the top end of the support block 309 are fixedly connected to a spring 308. The bottom end of the support block 309 is rotatably connected to a pressing roller 307. The top end of the mounting frame 2 is fixedly connected to a blower 301. The output end of the blower 301 is fixedly connected to a heat-resistant air duct 302. The inside of the heat-resistant air duct 302 is fixedly connected to a heating coil 310. The absorbent sponge pad 305 adsorbs the mirror liquid and then further dries it through the air outlet on both sides of the support block 309. The drying efficiency is not only high, but also the energy consumption is lower, and the drying quality is better;
[0025] The fixing component 4 includes a mirror placement groove 404. The inside of the mirror placement groove 404 is fixedly connected to a soft rubber pad 403. The bottom end of the support tabletop 1 is fixedly connected to an air duct 402. The left side of the bottom end of the support tabletop 1 is fixedly connected to an air extraction pump 401, which fixes the mirror and will not cause damage to the mirror due to the clamping force of the fixture, reducing the loss of manufacturing cost.
[0026] The top ends of the springs 308 are respectively fixedly connected to the inner top end of the mounting frame 303. The outer top of the heat-resistant telescopic hose 306 is fixedly connected to the middle of the top end of the mounting bracket 2. The top end of the heat-resistant telescopic hose 306 is fixedly connected to the right side of the heat-resistant air duct 302. Start the blower 301 to transfer the heated gas inside the heat-resistant air duct 302 into the inside of the heat-resistant telescopic hose 306. The hot gas is input into the inside of the mounting frame 303 through the heat-resistant telescopic hose 306, and the gas passes through the holes of the support block 309 and enters the lower part to dry the mirror surface. The pressing roller 307 rolls on the surface of the mirror surface, and the hot gas is separated by the top end of the pressing roller 307 and blown to both sides. The water-absorbing sponge pad 305 adsorbs the liquid on the mirror surface and is further dried by the air blown out from both sides of the support block 309. The output end of the air extraction pump 401 is fixedly connected to the left side of the air duct 402. Place the mirror inside the mirror placement groove 404 on the top of the soft rubber pad 403. Start the air extraction pump 401 to extract the air separated between the middle of the soft rubber pad 403 and the mirror through the air duct 402. The mirror is adsorbed on the top of the soft rubber pad 403 by the air extraction of the air extraction pump 401 to fix the mirror. Both sides of the mounting frame 303 are fixedly connected with sliders 5. Both sides inside the mounting bracket 2 are rotatably connected with threaded rods 6. The outer parts of the sliders 5 are respectively slidably connected to both sides inside the mounting bracket 2. The outer parts of the threaded rods 6 are respectively threadedly connected to the middle of the sliders 5. The right side of the mounting bracket 2 is fixedly connected with a plurality of driving motors 7. The driving ends of the driving motors 7 are respectively fixedly connected to the right sides of the threaded rods 6.
[0027] Working principle: Place the mirror inside the mirror placement groove 404 on the top of the soft rubber pad 403. Start the air extraction pump 401 to extract the air separated between the middle of the soft rubber pad 403 and the mirror through the air duct 402. The mirror is adsorbed on the top of the soft rubber pad 403 by the air extraction of the air extraction pump 401. Start the blower 301 to transfer the heated gas inside the heat-resistant air duct 302 into the inside of the heat-resistant telescopic hose 306. The hot gas is input into the inside of the mounting frame 303 through the heat-resistant telescopic hose 306, and the gas passes through the holes of the support block 309 and enters the lower part to dry the mirror surface. Start the driving motor 7 to rotate the threaded rod 6, drive the slider 5 to move through the threaded rod 6. The pressing roller 307 rolls on the surface of the mirror surface, and the hot gas is separated by the top end of the pressing roller 307 and blown to both sides. The water-absorbing sponge pad 305 adsorbs the liquid on the mirror surface and is further dried by the air blown out from both sides of the support block 309.
[0028] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A drying processing device for coated glass processing, comprising a support tabletop (1), a drying assembly (3) and a fixing assembly (4), characterized in that: At the top of the support tabletop (1), a drying component (3) is provided. At the bottom of the support tabletop (1), a fixing component (4) is installed. The drying component (3) includes an installation frame (303). At the top of the support tabletop (1), an installation bracket (2) is fixedly connected. At the top of the installation frame (303), a heat-resistant telescopic hose (306) is fixedly connected. On both sides of the installation frame (303), fixing plates (304) are fixedly connected. At the bottom of the fixing plates (304), water-absorbing sponge pads (305) are fixedly connected. Inside the installation frame (303), a support block (309) is slidably connected. On both sides of the top of the support block (309), springs (308) are fixedly connected. At the bottom of the support block (309), a pressing roller (307) is rotatably connected. At the top of the installation bracket (2), a blower (301) is fixedly connected. The output end of the blower (301) is fixedly connected to a heat-resistant air duct (302). Inside the heat-resistant air duct (302), a heating coil (310) is fixedly connected; The fixing component (4) includes a mirror placement groove (404). Inside the mirror placement groove (404), a soft rubber pad (403) is fixedly connected. At the bottom of the support tabletop (1), an air duct (402) is fixedly connected. At the bottom left of the support tabletop (1), an air pump (401) is fixedly connected.
2. The drying processing device for coated glass processing according to claim 1, wherein: The tops of the springs (308) are respectively fixedly connected to the inner top of the installation frame (303). The outer top of the heat-resistant telescopic hose (306) is fixedly connected to the middle of the top of the installation bracket (2). The top of the heat-resistant telescopic hose (306) is fixedly connected to the right side of the heat-resistant air duct (302).
3. A drying processing device for coated glass processing according to claim 1, characterized in that: The output end of the air pump (401) is fixedly connected to the left side of the air duct (402).
4. A drying processing device for coated glass processing according to claim 1, characterized in that: On both sides of the installation frame (303), sliders (5) are fixedly connected. Inside both sides of the installation bracket (2), threaded rods (6) are rotatably connected.
5. A drying processing device for coated glass processing according to claim 4, characterized in that: The outer parts of the sliders (5) are respectively slidably connected to both sides inside the installation bracket (2).
6. A drying treatment device for coated glass processing according to claim 4, characterized in that: The outer parts of the threaded rods (6) are respectively threadedly connected to the middle of the sliders (5).
7. A drying treatment device for coated glass processing according to claim 1, characterized in that: On the right side of the installation bracket (2), a plurality of driving motors (7) are fixedly connected. The driving ends of the driving motors (7) are respectively fixedly connected to the right sides of the threaded rods (6).