Glass stacking mold powder spraying device

CN224763393UActive Publication Date: 2026-09-18SHANXI YOUTH GLASS CO LTD
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Patent Information

Application Number
CN202522214066.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-18
Estimated Expiration
2035-10-20

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于提供一种玻璃叠放用防霉粉喷洒装置,以解决上述背景技术中提出防霉粉容易飞溅且无法回收造成环境污染的问题

Benefits of technology

[0016]采用上述技术方案,通过可视窗口可以对进入到柜子内部玻璃的喷粉情况进行查看,让不符合要求的玻璃可以通过橡胶滚轮的反转再次进行喷粉,同时通过静电高压器可以产生电流并传递给静电棒,让静电棒可以对喷洒防霉粉完成的玻璃进行去静电,并能够对喷粉管道排出的防霉粉除静电,让防霉粉不会堵塞管道或喷粉管道,让防霉粉不会因为静电而导致团聚而不能均匀抛洒防霉粉。

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Abstract

The utility model relates to antifungal powder spraying device technical field, specifically disclose a kind of antifungal powder spraying device for glass stacking, including cabinet, the inside fixed mounting of cabinet has gas storage tank, the inside fixed mounting of cabinet has material storage box, the lateral end rotation of skin Install eccentric pivot block, the lateral surface of skin is inserted and is installed with filter screen.The antifungal powder spraying device for glass stacking, when glass enters the inside of cabinet and shielding cover, powder spraying pipeline will spray antifungal powder and spray on the outer surface of glass, at this time, splashed antifungal powder will be extracted by exhaust fan and enter the skin through the hopper, so that the filter screen can collect and filter dust, so that the antifungal powder can enter and return to the inside of material storage box, so that the antifungal powder can be recycled while not splashing everywhere, greatly reduce the waste and pollution to the environment when spraying antifungal powder.
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Description

Technical Field

[0001] This utility model relates to the technical field of anti-mildew powder spraying devices, specifically an anti-mildew powder spraying device for stacked glass. Background Technology

[0002] During the glass production process, anti-mold and insulating powder needs to be sprayed onto the glass surface to prevent mold growth during transportation or storage. For this reason, glass manufacturers generally use anti-mold powder instead of more expensive anti-mold paper to reduce the occurrence of mold or scratches. Most common powder spraying devices spray anti-mold and insulating powder onto the glass surface using a powder spraying machine. However, during the spraying process, the anti-mold powder is prone to splashing and sliding off the glass. The fallen anti-mold powder cannot be collected and recycled and will pollute the environment around the device, resulting in waste of anti-mold powder and environmental pollution. Utility Model Content

[0003] The purpose of this invention is to provide a device for spraying anti-mildew powder for stacking glass, so as to solve the problem mentioned in the background art that anti-mildew powder is easy to splash and cannot be recycled, causing environmental pollution.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a glass stacking anti-mildew powder spraying device, comprising a cabinet, an air storage tank fixedly installed inside the cabinet, a material storage box fixedly installed inside the cabinet, a feeding port opened on one side of the material storage box, and the bottom of the material storage box being inclined, a feeding hopper fixedly installed inside the cabinet, and the feeding hopper being inclined, a rubber roller rotatably installed at one end of the cabinet near the feeding hopper, a drive motor fixedly installed on the side surface of the cabinet, and the drive motor being connected to the rubber roller, a cover rotatably installed at one end of the cabinet near the rubber roller, and the outer surface of the cover being tightly fitted to the outer surface of the cabinet, a skin fixedly installed between the feeding hopper and the material storage box, and an exhaust motor fixedly installed on the side surface of the skin, an eccentric rotating shaft block rotatably installed at the side end of the skin, and the eccentric rotating shaft block being inserted into the rotating shaft of the exhaust motor, and a filter screen inserted into the side surface of the skin.

[0005] Preferably, a counterweight is fixedly installed on the outer surface of the filter screen, and the counterweight is located at the center of the filter screen. The filter screen and the skin are fixed together with screws.

[0006] By adopting the above technical solution, the filter screen can filter the airborne dust, so that the dust is collected and will not be discharged again. At the same time, the vibration generated by the eccentric rotating shaft block driven by the exhaust motor can be transmitted to the filter screen. In conjunction with the counterweight on the outer surface of the filter screen, the filter screen can generate greater vibration, so that the dust adhering to the outer surface of the filter screen can be removed, ensuring that the filter screen will not be clogged by the collected dust during use.

[0007] Preferably, a powder spraying pipe is rotatably mounted on the inner surface of the shielding cover, the outer surface of the powder spraying pipe is evenly provided with holes, and the powder spraying pipe is fixed to the shielding cover with screws. The output end of the gas storage tank is connected to the lower end of the storage box, and the other end of the storage box is connected to the powder spraying pipe.

[0008] By adopting the above technical solution, the orientation of the powder spraying pipe hole can be easily adjusted by rotating the powder spraying pipe and fixing it with screws. This allows the range and angle of the anti-mildew powder to be sprayed to be adjusted on the side surface of the cabinet, greatly improving the convenience of use.

[0009] Preferably, an electromagnetic valve is fixedly installed between the pipes of the storage bin and the gas tank, and a flow regulating valve is fixedly installed on the pipe of the electromagnetic valve near the storage bin.

[0010] Using the above technical solution, the gas in the gas storage tank can be released by the electromagnetic opening and closing valve, and the flow rate of the gas discharge can be adjusted by the flow regulating valve, so that a certain amount of gas entering the storage box can carry out the anti-mildew powder, and the anti-mildew powder can be evenly carried out and sprayed evenly onto the glass surface between the cabinet and the cover.

[0011] Preferably, an agitator motor is fixedly installed on the side surface of the storage bin, and the output end of the agitator motor passes through the outer surface of the storage bin. A limit block is slidably installed inside the storage bin, and a rotating handle is threadedly installed on the outer surface of the limit block. The rotating handle is rotatably connected to the storage bin, and the outer surface of the limit block is in contact with the outer surface of the storage bin.

[0012] By adopting the above technical solution, the use of the stirring motor can effectively prevent the anti-mold powder stored inside the storage box from accumulating and clogging, thus preventing the material from being discharged. At the same time, by rotating the handle, the limit block can be adjusted, allowing the opening and closing angle of the limit block inside the storage box to be adjusted, so as to control the uniform discharge of different amounts of anti-mold powder.

[0013] Preferably, a shielding curtain is fixedly installed at both ends of the shielding cover, and the outer surface of the shielding curtain is in contact with the outer surfaces of both ends of the cabinet. A guide support platform is fixedly installed on the outer surfaces of both sides of the cabinet, and the two sides of the guide support platform are designed to be inclined. The guide support platform is at the same height as the rubber roller. A partition is provided on the inner surface of the shielding cover, and a powder spraying pipe is provided between the partitions of the shielding cover.

[0014] By adopting the above technical solution, the shielding curtain can effectively prevent the anti-mildew powder from running outwards, and the glass placed in can be guided and moved by the guide support platform. With the use of the internal partition of the shielding cover, the probability of the anti-mildew powder running out of the device when it is sprayed is further reduced, allowing the anti-mildew powder to fall into the hopper, which greatly reduces the pollution of the surrounding environment by the anti-mildew powder.

[0015] Preferably, an electrostatic bar is fixedly installed between the partitions of the cover, and another electrostatic bar is located at one end inside the cover. A viewing window is embedded in the outer surface of the cover, and an electrostatic high voltage device is fixedly installed at the end of the cabinet away from the gas storage tank.

[0016] Using the above technical solution, the powder coating process of the glass inside the cabinet can be viewed through the viewing window. Glass that does not meet the requirements can be re-coated by reversing the rubber rollers. At the same time, the electrostatic high voltage generator can generate current and transmit it to the electrostatic rod, which can remove static electricity from the glass after the anti-mildew powder has been sprayed, and can also remove static electricity from the anti-mildew powder discharged from the powder coating pipe. This prevents the anti-mildew powder from clogging the pipe or the powder coating pipe, and prevents the anti-mildew powder from agglomerating due to static electricity, thus ensuring even spraying.

[0017] Compared with the prior art, the beneficial effects of this utility model are: the glass stacking anti-mildew powder spraying device: 1. After the glass enters the cabinet and cover, the powder spraying pipe will spray anti-mildew powder onto the outer surface of the glass. At this time, the splashed anti-mildew powder will be drawn by the exhaust motor and enter the skin through the hopper, so that the filter screen can collect and filter the dust, allowing the scattered anti-mildew powder to enter and return to the storage box. This prevents the anti-mildew powder from splashing everywhere and allows the scattered anti-mildew powder to be recycled, greatly reducing the waste and environmental pollution when spraying anti-mildew powder. 2. Secondly, when the exhaust motor rotates, it will drive the eccentric rotating shaft block that is engaged with it, so that the skin can vibrate together with the rotation of the eccentric rotating shaft block, and the filter screen can also vibrate. With the use of the counterweight block, the filter screen can be cleaned more thoroughly through vibration, so that the filter screen will not be clogged during use and the dust that falls off during vibration can be collected and reused, greatly improving the practicality and stability during use. 3. The rotation of the stirring motor can slowly agitate the anti-mold powder stored inside the storage bin. In conjunction with the rotation of the handle, the opening and closing angle of the limit block inside the storage bin is controlled, allowing the anti-mold powder stored in the storage bin to fall downwards in a measured amount. The flow regulating valve allows the air in the air tank to be discharged in a measured amount, and the amount and speed of anti-mold powder sprayed from the powder spraying pipe can be adjusted to control the amount of anti-mold powder sprayed on the glass surface, greatly improving the convenience of use. Attached Figure Description

[0018] Figure 1 This is a cross-sectional three-dimensional structural diagram of the three-dimensional powder spraying pipe of the cabinet and cover of this utility model; Figure 2 This is a three-dimensional structural diagram of the shielding cover and rubber roller of this utility model; Figure 3 This is a three-dimensional structural diagram of the feeding hopper and storage box of this utility model; Figure 4 This is a three-dimensional structural diagram of the rubber roller and hopper of this utility model; Figure 5 This is a three-dimensional structural diagram of the eccentric rotating shaft block and filter screen of this utility model; Figure 6 This is a cross-sectional three-dimensional structural diagram of the storage box and limiting block of this utility model.

[0019] In the diagram: 1. Cabinet; 2. Rubber rollers; 3. Drive motor; 4. Cover; 5. Viewing window; 6. Feed hopper; 7. Storage box; 8. Agitator motor; 9. Air tank; 10. Electromagnetic valve; 11. Flow regulating valve; 12. Powder spraying pipe; 13. Skin; 14. Exhaust motor; 15. Eccentric rotating shaft block; 16. Filter screen; 17. Counterweight; 18. Rotating handle; 19. Limiting block; 20. Electrostatic voltammeter; 21. Electrostatic rod; 22. Guide support platform; 23. Cover curtain. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see Figure 1-6This utility model provides a technical solution: a glass stacking anti-mildew powder spraying device, including a cabinet 1, an air tank 9 fixedly installed inside the cabinet 1, a material storage box 7 fixedly installed inside the cabinet 1, and a feeding port opened on one side of the material storage box 7, with the bottom of the material storage box 7 being inclined; a feeding hopper 6 fixedly installed inside the cabinet 1, and the feeding hopper 6 being inclined; a rubber roller 2 rotatably installed at one end of the cabinet 1 near the feeding hopper 6; a drive motor 3 fixedly installed on the side surface of the cabinet 1, and the drive motor 3 being connected to the rubber roller 2; a shielding cover 4 rotatably installed at one end of the cabinet 1 near the rubber roller 2, and the outer surface of the shielding cover 4 being tightly fitted to the outer surface of the cabinet 1; shielding curtains 23 fixedly installed at both ends of the shielding cover 4, and the outer surface of the shielding curtains 23 being flush with the outer surfaces of both ends of the cabinet 1. The cabinet 1 has two outer surfaces that are fixedly fitted together. The two sides of the guide support platform 22 are designed to be inclined. The guide support platform 22 is at the same height as the rubber roller 2. The inner surface of the cover 4 is provided with partitions. The powder spraying pipe 12 is provided between the partitions of the cover 4. The hopper 6 and the storage box 7 are fixedly installed with a skin 13. The side surface of the skin 13 is fixedly installed with an exhaust motor 14. The side end of the skin 13 is rotatably installed with an eccentric rotating shaft block 15. The eccentric rotating shaft block 15 is inserted into the rotating shaft of the exhaust motor 14. The side surface of the skin 13 is inserted with a filter screen 16. The outer surface of the filter screen 16 is fixedly installed with a counterweight block 17. The counterweight block 17 is located at the center of the filter screen 16. The filter screen 16 and the skin 13 are fixed with screws.

[0022] First, the glass needs to be placed on the surface of the guide support platform 22 and pass through the curtain 23 into the cabinet 1. The rotation of the drive motor 3 drives the rubber roller 2 to rotate, allowing the rubber roller 2 to move the glass into the interior of the cover 4 and pass under the powder spraying pipe 12. Then, through the use of the air tank 9, the anti-mildew powder falling from the storage box 7 is sent into the powder spraying pipe 12 with the sprayed air, allowing the powder spraying pipe 12 to spray the anti-mildew powder onto the surface of the glass. The powder spraying pipe 12 can evenly spray the anti-mildew powder on the outer surface of the glass, and the exhaust motor 14 absorbs the scattered anti-mildew powder, allowing the anti-mildew powder that falls into the space between the cabinet 1 and the cover 4 to be evenly distributed. The mold powder falls into the storage bin 7 through the hopper 6. The air blown out by the air tank 9 and the gas discharged by the exhaust motor 14 cause the dust to accumulate in the skin 13 and be filtered through the filter screen 16. At the same time, the rotation of the exhaust motor 14 causes the eccentric rotating shaft block 15 to rotate and generate vibration, so that the skin 13 and the filter screen 16 vibrate together. The counterweight block 17 makes the vibration amplitude of the filter screen 16 greater, so that the anti-mold powder adhering to the surface of the filter screen 16 can be removed by vibration. This ensures that the filter screen 16 will not be blocked during use, and the anti-mold powder can be returned to the storage bin 7 for reuse, which greatly improves the practicality, environmental protection and economy of the anti-mold powder spraying device.

[0023] A powder spraying pipe 12 is rotatably installed on the inner surface of the shielding cover 4. The outer surface of the powder spraying pipe 12 is evenly perforated, and the powder spraying pipe 12 is fixed to the shielding cover 4 with screws. The output end of the gas storage tank 9 is connected to the lower end of the storage box 7, and the other end of the storage box 7 is connected to the powder spraying pipe 12. An electromagnetic valve 10 is fixedly installed between the storage box 7 and the gas storage tank 9. A flow regulating valve 11 is fixedly installed on the pipe of the electromagnetic valve 10 near the storage box 7. An agitator motor 8 is fixedly installed on the side surface of the storage box 7, and the output end of the agitator motor 8 passes through the outer surface of the storage box 7. A limit block 19 is slidably installed inside the storage box 7, and a rotating handle 18 is threaded on the outer surface of the limit block 19. The rotating handle 18 is rotatably connected to the storage box 7, and the outer surface of the limit block 19 is in contact with the outer surface of the storage box 7.

[0024] Secondly, by using the powder spraying pipe 12 and screws, the direction of the powder spraying pipe 12 located inside the shielding cover 4 can be adjusted. Then, by opening the electromagnetic valve 10 and adjusting the flow regulating valve 11, the amount of air blown out of the air tank 9 can be adjusted. Next, by turning the handle 18, the position of the limit block 19 is moved. In conjunction with the rotation of the stirring motor 8, the anti-mildew powder stored in the storage box 7 can fall in a measured amount and be carried away with the air blown out of the air tank 9. This allows the flow rate and amount of powder sprayed when the spraying device sprays anti-mildew powder to be adjusted, greatly improving the uniformity of anti-mildew powder sprayed on the glass.

[0025] An electrostatic rod 21 is fixedly installed between the partitions of the cover 4, and another electrostatic rod 21 is located at one end inside the cover 4. A viewing window 5 is inlaid on the outer surface of the cover 4. An electrostatic high voltage device 20 is fixedly installed at the end of the cabinet 1 away from the gas storage tank 9.

[0026] Furthermore, during the powder spraying process, the quality of the anti-mildew powder sprayed on the glass surface can be viewed in real time through the viewing window 5. The use of rubber rollers 2 and drive motor 3 can batch spray the glass, improving the efficiency of anti-mildew powder spraying. The high voltage generated by the electrostatic high voltage generator 20 can be transmitted to the electrostatic rod 21, allowing the electrostatic rod 21 to eliminate static electricity from the anti-mildew powder sprayed from the powder spraying pipe 12. This prevents the anti-mildew powder from being unevenly distributed on the glass or clumping together and clogging the gas transmission pipe due to static electricity, greatly improving the practicality of the spraying device.

[0027] Working principle: During use, the glass slides through the shielding curtain 23 and into the cabinet 1 guided by the guide support platform 22. The transmission motor 3 drives the rubber roller 2 to rotate, causing the rubber roller 2 to slowly move the glass. At this time, the electromagnetic opening and closing valve 10 can be operated to open and release the air in the air tank 9. With the throttling of the flow regulating valve 11, the air can pass through the storage box 7 and carry away the anti-mildew powder agitated by the stirring motor 8. The anti-mildew powder can then be sprayed from the powder spraying pipe 12 onto the glass. When the anti-mildew powder is sprayed out, it will be neutralized by the static electricity bar 21 and fall onto the surface of the glass. At the same time, the scattered and fallen anti-mildew powder will fall into the feeding hopper 6. The powder falls into the storage bin 7 along the inclined plane. The air drawn by the exhaust motor 14 and the gas sprayed from the powder spraying pipe 12 carry the anti-mildew powder into the skin 13 and are filtered by the filter screen 16. As the exhaust motor 14 rotates, it drives the eccentric rotating shaft block 15 that is inserted with it to rotate, causing the skin 13 and the filter screen 16 to vibrate. With the use of the counterweight block 17, the vibration amplitude of the filter screen 16 can be increased, allowing the blocked or adhered anti-mildew powder to fall and enter the storage bin 7 for reuse. This greatly improves the recycling and reuse of anti-mildew powder by the spraying device and reduces the environmental pollution and impact caused by the anti-mildew powder scattering everywhere during powder spraying.

[0028] Although 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 alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A glass stacking anti-mildew powder spraying device, comprising a cabinet (1), wherein a gas storage tank (9) is fixedly installed inside the cabinet (1), a material storage box (7) is fixedly installed inside the cabinet (1), and a feeding port is provided on one side of the material storage box (7), and the bottom of the material storage box (7) is inclined; a feeding hopper (6) is fixedly installed inside the cabinet (1), and the feeding hopper (6) is inclined; a rubber roller (2) is rotatably installed at one end of the cabinet (1) near the feeding hopper (6); a drive motor (3) is fixedly installed on the side surface of the cabinet (1), and the drive motor (3) is connected to the rubber roller (2), characterized in that: The cabinet (1) is rotatably fitted with a cover (4) at one end near the rubber roller (2), and the outer surface of the cover (4) is tightly fitted with the outer surface of the cabinet (1). A skin (13) is fixedly installed between the hopper (6) and the storage box (7), and an exhaust motor (14) is fixedly installed on the side surface of the skin (13). An eccentric rotating shaft block (15) is rotatably installed on the side end of the skin (13), and the eccentric rotating shaft block (15) is inserted into the rotating shaft of the exhaust motor (14). A filter screen (16) is inserted into the side surface of the skin (13).

2. The anti-mold powder spraying device for glass stacking according to claim 1, characterized in that: A counterweight (17) is fixedly installed on the outer surface of the filter screen (16), and the counterweight (17) is located at the center of the filter screen (16). The filter screen (16) and the skin (13) are fixed together by screws.

3. The anti-mildew powder spraying device for glass stacking according to claim 1, characterized in that: The inner surface of the shielding cover (4) is rotatably mounted with a powder spraying pipe (12). The outer surface of the powder spraying pipe (12) is evenly provided with holes, and the powder spraying pipe (12) and the shielding cover (4) are fixed with screws. The output end of the gas storage tank (9) is connected to the lower end of the storage box (7), and the other end of the storage box (7) is connected to the powder spraying pipe (12).

4. The anti-mold powder spraying device for glass stacking according to claim 1, characterized in that: An electromagnetic valve (10) is fixedly installed between the storage box (7) and the gas tank (9), and a flow regulating valve (11) is fixedly installed on the end of the electromagnetic valve (10) near the storage box (7).

5. The anti-mold powder spraying device for glass stacking according to claim 1, characterized in that: A stirring motor (8) is fixedly installed on the side surface of the storage box (7), and the output end of the stirring motor (8) passes through the outer surface of the storage box (7). A limit block (19) is slidably installed inside the storage box (7), and a rotating handle (18) is threadedly installed on the outer surface of the limit block (19). The rotating handle (18) is rotatably connected to the storage box (7), and the outer surface of the limit block (19) is in contact with the outer surface of the storage box (7).

6. The anti-mold powder spraying device for glass stacking according to claim 1, characterized in that: The shielding cover (4) is fixedly installed with shielding curtains (23) at both ends, and the outer surface of the shielding curtains (23) is in contact with the outer surfaces of both ends of the cabinet (1). The outer surfaces of both sides of the cabinet (1) are fixedly installed with guide support platforms (22), and the two sides of the guide support platforms (22) are designed to be inclined. The guide support platforms (22) are at the same height as the rubber rollers (2). The inner surface of the shielding cover (4) is provided with partitions, and powder spraying pipes (12) are provided between the partitions of the shielding cover (4).

7. The anti-mold powder spraying device for glass stacking according to claim 6, characterized in that: An electrostatic rod (21) is fixedly installed between the partitions of the cover (4), and another electrostatic rod (21) is set at one end inside the cover (4). A viewing window (5) is inlaid on the outer surface of the cover (4). An electrostatic high voltage device (20) is fixedly installed at one end of the cabinet (1) away from the gas storage tank (9).