Cleaning device special for hollow LOWE energy-saving glass

By designing a special cleaning device for hollow LOWE energy-saving glass, the combination of the conveying structure, cleaning board components and spray heads is used to solve the problem of dirt on the surface of hollow LOWE energy-saving glass that is difficult to remove, achieving efficient cleaning and water resource conservation.

CN223145545UActive Publication Date: 2025-07-25JIANGSU JINGTAI GLASS CO LTD
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Patent Information

Application Number
CN202422044485.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-25
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

In the prior art, when the surface of the hollow LOWE energy-saving glass is dirty, it is difficult to completely remove it by rinsing it with high-strength water, which affects the cleaning effect.

Method used

A special cleaning device for hollow LOWE energy-saving glass is designed, including a conveying structure, support roller, cleaning board assembly and spray head. By wiping with cleaning board assembly and rinsing the spray head during the conveying process, the glass is cleaned on both sides and the recycling of water resources is realized.

Benefits of technology

It realizes efficient double-side cleaning of hollow LOWE energy-saving glass, saves water resources, and improves the practicality and specialization of the cleaning device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hollow LOWE energy-saving glass cleaning, in particular to a special cleaning device for hollow LOWE energy-saving glass, which comprises a box body, and a conveying structure capable of conveying the hollow LOWE energy-saving glass is arranged in the box body. A supporting roller which can move up and down along the inner wall of the box body and can be used for conducting auxiliary supporting on the hollow LOWE energy-saving glass moving on the conveying structure is arranged in the box body, and a cleaning plate assembly which can be matched with the supporting roller and can clean the two faces of the hollow LOWE energy-saving glass moving on the conveying structure is arranged in the box body; the cleaning plate assembly can move up and down along the inner wall of the box body, and the box body is internally provided with spray heads capable of washing the two faces of the hollow LOWE energy-saving glass moving on the conveying structure respectively.
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Description

Technical Field

[0001] The utility model relates to the technical field of hollow LOW-E energy-saving glass cleaning, in particular to a special cleaning device for hollow LOW-E energy-saving glass. Background Technique

[0002] Low-E glass, also known as low-emissivity glass, is a film system product with multiple layers of metals or other compounds coated on the glass surface.

[0003] The utility model patent with the Chinese patent publication number CN219442818U has the title of an energy-saving hollow glass cleaning and drying machine, which includes a base and support legs. The lower end of the base is fixedly connected to the support legs. There are two cleaning devices arranged on the upper end of the base. Each cleaning device includes a housing. The lower end of the housing is fixedly connected to the base, and the upper end of the housing is fixedly connected to a water pump. The output end of the water pump is communicated with a water pipe, and the end of the water pipe is communicated with a straight pipe. Nozzles are installed on the surface of the straight pipe. The upper end of the straight pipe is fixedly connected to a first electric telescopic rod, and the outer wall of the first electric telescopic rod is fixedly connected to the housing. The working principle of this solution is as follows: First, the staff brings a hollow glass and puts it into the hollow glass from the feeding port. Connect the external power supply of the motor, and the motor starts to work. The motor drives the roller to rotate through a belt, so that the hollow glass moves to the lower end of the cleaning device. Connect the external power supply of the water pump, and the water pump starts to work. The water pump extracts external water source into the water pipe, and the water in the water pipe flows out through the nozzles on the straight pipe, so that the water cleans the upper and lower surfaces of the hollow glass. At the same time, the water flows to the strainer and drips into the water tank, and flows out from the water outlet for treatment and reuse. When it is found that the hollow glass is difficult to clean, the external power supply of the first electric telescopic rod can be connected, and the first electric telescopic rod starts to work. The first electric telescopic rod pushes the nozzles on the straight pipe closer to the hollow glass, increasing the impact force of the water flow on the hollow glass, and making the hollow glass cleaner. The roller continues to rotate, so that the hollow glass passes through the contraction of the telescopic plate. The scraper at the end of the telescopic plate separates the water on the surface of the hollow glass. The central control glass enters the connecting plate. Note that the surface of the connecting plate is concave and convex. Connect the external power supply of the second electric telescopic rod, and the second electric telescopic rod starts to work. The second electric telescopic rod drives the connecting rod on the connecting pipe to move downward, and the connecting rod drives the baffle to move downward, so that a closed space is formed on one side of the baffle. Connect the external power supply of the hot air blower, and the hot air blower starts to work. The hot air formed by the hot air blower enters the hot air pipe and finally discharges from the air outlet to air-dry the cleaned hollow glass. After the end, take out the air-dried hollow glass from the discharge port. In combination with the attached drawings, the scraper in this solution can only be used to separate the water on the surface of the hollow glass. When the surface of the hollow glass is relatively dirty, only flushing with high-strength water may not be able to wash the dirty parts on the surface of the hollow glass clean, thus affecting subsequent operations. Therefore, a special cleaning device for hollow LOW-E energy-saving glass is now proposed. Content of the Utility Model

[0004] (1) Technical Problem to be Solved

[0005] In view of the deficiencies of the prior art, the utility model provides a special cleaning device for hollow LOW-E energy-saving glass, which solves the problems raised in the above background art.

[0006] (2) Technical Solution

[0007] To achieve the above objectives, the utility model is realized through the following technical solutions: A special cleaning device for hollow LOW-E energy-saving glass includes a box body. A conveying structure capable of conveying hollow LOW-E energy-saving glass is provided in the box body. A supporting roller capable of moving up and down along the inner wall of the box body and capable of assisting in supporting the hollow LOW-E energy-saving glass moving on the conveying structure is provided in the box body. A cleaning plate assembly capable of cooperating with the supporting roller and capable of cleaning both sides of the hollow LOW-E energy-saving glass moving on the conveying structure is provided in the box body. The cleaning plate assembly can move up and down along the inner wall of the box body. A nozzle capable of respectively flushing both sides of the hollow LOW-E energy-saving glass moving on the conveying structure is provided in the box body. The provided conveying structure can convey the hollow LOW-E energy-saving glass from the feeding end of the box body to the discharging end of the box body, and cleaning operations are performed by the cleaning plate assembly and the nozzle during the conveying process.

[0008] Further, the conveying structure includes a first conveyor belt assembly and a second conveyor belt assembly. The first conveyor belt assembly is installed at the feeding end of the box body, and the second conveyor belt assembly is installed at the discharging end of the box body. An installation space is left between the first conveyor belt assembly and the second conveyor belt assembly. By leaving the installation space, operations such as cleaning the hollow LOW-E energy-saving glass are carried out.

[0009] Further, the first conveyor belt assembly includes a driving roller and a driven roller capable of rotating. A conveyor belt capable of driving the driven roller to rotate is provided on the surface of the driving roller, and the conveyor belt can convey the hollow LOW-E energy-saving glass; the structures of the first conveyor belt assembly and the second conveyor belt assembly are the same, and the rotation of the driving roller can be driven by a servo motor.

[0010] Further, a displacement plate capable of moving up and down along the inner wall of the box body is provided in the box body. The supporting roller is installed on the displacement plate. A limiting roller corresponding to the supporting roller and capable of assisting in limiting the hollow LOW-E energy-saving glass is provided in the box body; a displacement plate driving cylinder for driving the displacement plate to move up and down is provided in the box body. The position of the limiting roller can be set corresponding to the supporting roller or can be set intersecting with the supporting roller.

[0011] Further, the cleaning plate assembly includes an upper cleaning plate structure and a lower cleaning plate structure. The upper cleaning plate structure is arranged at one side of the support roller, and the lower cleaning plate structure is arranged at the other side of the support roller. The upper cleaning plate structure includes a movable plate that can move up and down. A wiping cotton that can be embedded in the movable plate and can wipe the surface of the hollow LOW-E energy-saving glass is provided in the movable plate. A limit cover plate that can limit and lock the wiping cotton is provided on the movable plate. The upper cleaning plate structure is mainly used to wipe the bottom surface of the hollow LOW-E energy-saving glass. The limit roller can also cooperate with the upper cleaning plate structure to perform good wiping and cleaning operations to avoid dirt on the bottom surface of the hollow LOW-E energy-saving glass. The lower cleaning plate structure can cooperate with the support roller and is mainly used to wipe the upper surface of the hollow LOW-E energy-saving glass.

[0012] Further, a movable plate driving cylinder for driving the movable plate to move up and down is provided in the box body, and the structure of the lower cleaning plate structure is the same as that of the upper cleaning plate structure.

[0013] Further, water storage boxes that are interconnected are provided at the top end and the bottom end of the box body. Nozzles that can communicate with the interiors of the two water storage boxes are respectively provided at the bottom end of the water storage box at the top end of the box body and on the surface of the water storage box at the bottom end of the box body. The water storage box provides water source for the nozzles, which is used to flush the bottom and surface of the hollow LOW-E energy-saving glass.

[0014] Further, the nozzles are continuously distributed at the bottom end of the water storage box at the top end of the box body and on the surface of the water storage box at the bottom end of the box body. The nozzles are installed in the water storage box through damping rotating shafts. The nozzles are water spraying nozzles. A water inlet pipe communicating with the water storage box is provided at the top end of the box body, and a water outlet pipe A communicating with the box body is provided at the bottom end of the box body. A filter box that is connected to the water outlet pipe A and can filter the water in the box body is provided in the water outlet pipe A. A plurality of filter mesh plates are provided in the filter box. A water outlet pipe B that can communicate with the water inlet end of the water inlet pipe is provided at the water outlet end of the filter box. Through the provided filter box, the water in the box body can be filtered, which is used for recycling water resources.

[0015] Further, three filter mesh plates are arranged at intervals from top to bottom in the filter box. A control valve that can cooperate with the water outlet pipe B is provided at the water outlet end of the filter box. A water collecting trough with a cross-sectional shape similar to a "V" shape is provided at the bottom of the box body. The water inlet end of the water outlet pipe A is installed at the central position of the water collecting trough. Through the arrangement of the three filter mesh plates, filter materials can be placed between the filter mesh plates arranged at intervals to improve the filtering effect. Through the arrangement of the water collecting trough, the water at the bottom of the box body is concentrated and discharged through the water outlet pipe A, which is used to cooperate with the nozzles to save water resources.

[0016] Compared with the prior art, the special cleaning device for hollow LOW-E energy-saving glass is provided with a conveying structure, a cleaning plate assembly, a nozzle and other structures in cooperation. When the hollow LOW-E energy-saving glass is conveyed along the conveying structure, it needs to move sequentially along the surfaces of the first conveyor belt assembly and the second conveyor belt assembly. At this time, the bottom surface of the hollow LOW-E energy-saving glass can be wiped by the upper cleaning plate structure first. When the hollow LOW-E energy-saving glass moves along the second conveyor belt assembly, the upper surface of the hollow LOW-E energy-saving glass can be wiped by the lower cleaning plate structure. At the same time, the nozzles sequentially arranged on the surfaces of the two water storage boxes can flush the bottom surface and the upper surface of the hollow LOW-E energy-saving glass, so as to assist in flushing the dirt in the hollow LOW-E energy-saving glass. Moreover, the water sprayed on the bottom of the hollow LOW-E energy-saving glass directly falls to the bottom of the box due to its own gravity, and the water on the upper surface of the hollow LOW-E energy-saving glass can also be guided to the bottom of the box by the lower cleaning plate structure, which is convenient for repeated recycling, thus playing a role in saving water resources, and further improving the practicability and specificity of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic structural diagram of the present invention;

[0018] Figure 2 of the present invention Figure 1 is a schematic side view structural diagram;

[0019] Figure 3 of the present invention Figure 1 is a schematic sectional structural diagram of a part of the present invention;

[0020] Figure 4 of the present invention Figure 1 is a schematic sectional structural diagram of another part of the present invention;

[0021] Figure 5 of the present invention Figure 4 is a schematic structural diagram of a part of the present invention;

[0022] Figure 6 is a schematic structural diagram of a part of the upper cleaning plate structure of the present invention.

[0023] In the figure: 1. Box body; 2. Conveying structure; 3. Support roller; 4. Cleaning plate assembly; 5. Sprayer; 6. First conveyor belt assembly; 7. Second conveyor belt assembly; 8. Driving roller; 9. Driven roller; 10. Conveyor belt; 11. Displacement plate; 12. Limiting roller; 13. Upper cleaning plate structure; 14. Lower cleaning plate structure; 15. Moving plate; 16. Wiping cotton; 17. Limiting cover plate; 18. Moving plate driving cylinder; 19. Water storage box; 20. Water inlet pipe; 21. Outlet pipe A; 22. Filter box; 23. Filter mesh plate; 24. Outlet pipe B; 25. Control valve; 26. Water collecting tank; 27. Displacement plate driving cylinder. Detailed implementation manners

[0024] 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 of the embodiments.

[0025] Please refer to Figures 1 to 6, the present utility model provides a technical solution: a special cleaning device for hollow LOW-E energy-saving glass, including a box body 1. A conveying structure 2 capable of conveying hollow LOW-E energy-saving glass is provided in the box body 1. The conveying structure 2 includes a first conveyor belt assembly 6 and a second conveyor belt assembly 7. The first conveyor belt assembly 6 includes a driving roller 8 and a driven roller 9 that can rotate. A conveyor belt 10 capable of driving the driven roller 9 to rotate is provided on the surface of the driving roller 8, and the conveyor belt 10 can convey hollow LOW-E energy-saving glass; the structures of the first conveyor belt assembly 6 and the second conveyor belt assembly 7 are the same. The rotation of the driving roller 8 can be driven by a servo motor. The first conveyor belt assembly 6 is installed at the feeding end of the box body 1, and the second conveyor belt assembly 7 is installed at the discharging end of the box body 1. An installation space is left between the first conveyor belt assembly 6 and the second conveyor belt assembly 7. A support roller 3 capable of moving up and down along the inner wall of the box body 1 and used for auxiliary support of the hollow LOW-E energy-saving glass moving on the conveying structure 2 is provided in the box body 1. A displacement plate 11 capable of moving up and down along the inner wall of the box body 1 is provided in the box body 1. The support roller 3 is installed on the displacement plate 11. A limiting roller 12 corresponding to the support roller 3 and used for auxiliary limiting of the hollow LOW-E energy-saving glass is provided in the box body 1;In the box body 1, there is a displacement plate driving cylinder 27 for driving the displacement plate 11 to move up and down. In the box body 1, there is a cleaning plate assembly 4 that can cooperate with the support roller 3 and clean both sides of the moving hollow LOW-E energy-saving glass on the conveying structure 2. The cleaning plate assembly 4 includes an upper cleaning plate structure 13 and a lower cleaning plate structure 14. The upper cleaning plate structure 13 is arranged at one side of the support roller 3, and the lower cleaning plate structure 14 is arranged at the other side of the support roller 3. The upper cleaning plate structure 13 includes a moving plate 15 that can move up and down. In the moving plate 15, there is a wiping cotton 16 that can be embedded in the moving plate 15 and wipe the surface of the hollow LOW-E energy-saving glass. On the moving plate 15, there is a limit cover plate 17 for limiting and locking the wiping cotton 16. In the box body 1, there is a moving plate driving cylinder 18 for driving the moving plate 15 to move up and down. The structure of the lower cleaning plate structure 14 is the same as that of the upper cleaning plate structure 13. The cleaning plate assembly 4 can move up and down along the inner wall of the box body 1. In the box body 1, there are nozzles 5 for respectively flushing both sides of the moving hollow LOW-E energy-saving glass on the conveying structure 2. At the top and bottom of the box body 1, there are water storage boxes 19 that are interconnected. At the bottom of the water storage box 19 at the top of the box body 1 and on the surface of the water storage box 19 at the bottom of the box body 1, there are nozzles 5 that are respectively connected to the inside of the two water storage boxes 19. The nozzles 5 are continuously distributed at the bottom of the water storage box 19 at the top of the box body 1 and on the surface of the water storage box 19 at the bottom of the box body 1. The nozzles 5 are installed in the water storage box 19 through damping rotating shafts. The nozzles 5 are water spraying nozzles. At the top of the box body 1, there is a water inlet pipe 20 connected to the water storage box 19. At the bottom of the box body 1, there is an outlet pipe A 21 connected to the box body 1. In the outlet pipe A 21, there is a filter box 22 connected to the outlet pipe A 21 for filtering the water in the box body 1. In the filter box 22, there are multiple filter mesh plates 23. At the water outlet end of the filter box 22, there is an outlet pipe B 24 that can be connected to the water inlet end of the water inlet pipe 20. In the filter box 22, there are three filter mesh plates 23 arranged at intervals from top to bottom in sequence. At the water outlet end of the filter box 22, there is a control valve 25 that can cooperate with the outlet pipe B 24. At the bottom of the box body 1, there is a water collecting tank 26 with a cross-sectional shape similar to a "V". The water inlet end of the outlet pipe A 21 is installed at the central position of the water collecting tank 26.;

[0026] All the electrical components mentioned in this article are electrically connected to the external main controller and 380V commercial power, and the main controller can be a conventional known device such as a computer for control purposes.

[0027] In the description of this specification, terms such as "connection", "installation", "fixation", "setting", etc. are all understood in a broad sense. For example, "connection" can be a fixed connection or an indirect connection through an intermediate component without affecting the relationship between components and technical effects, or it can be an integral connection or a partial connection. In the case of this example, for those of ordinary skill in the art, the specific meanings of the above terms in this utility model or the utility model can be understood according to specific circumstances.

[0028] As mentioned above, the above is only a preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its utility model concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present utility model.

Claims

1. A special cleaning device for hollow LOW-E energy-saving glass, comprising a box body (1), characterized in that: The box body (1) is provided with a conveying structure (2) capable of conveying hollow LOW - E energy - saving glass. The box body (1) is provided with a supporting roller (3) capable of moving up and down along the inner wall of the box body (1) and capable of assisting in supporting the hollow LOW - E energy - saving glass moving on the conveying structure (2). The box body (1) is provided with a cleaning plate assembly (4) capable of cooperating with the supporting roller (3) and capable of cleaning both sides of the hollow LOW - E energy - saving glass moving on the conveying structure (2). The cleaning plate assembly (4) includes an upper cleaning plate structure (13) and a lower cleaning plate structure (14). The upper cleaning plate structure (13) is arranged at one side of the supporting roller (3), and the lower cleaning plate structure (14) is arranged at the other side of the supporting roller (3). The upper cleaning plate structure (13) includes a movable plate (15) capable of moving up and down. The movable plate (15) is provided with a wiping cotton (16) capable of being embedded in the movable plate (15) and capable of wiping the surface of the hollow LOW - E energy - saving glass. The movable plate (15) is provided with a limit cover plate (17) capable of limiting and locking the wiping cotton (16). The cleaning plate assembly (4) can move up and down along the inner wall of the box body (1). The box body (1) is provided with a nozzle (5) capable of separately flushing both sides of the hollow LOW - E energy - saving glass moving on the conveying structure (2).

2. The special cleaning device for hollow LOW-E energy-saving glass according to claim 1, wherein: The conveying structure (2) includes a first conveyor belt assembly (6) and a second conveyor belt assembly (7). The first conveyor belt assembly (6) is installed at the feeding end of the box body (1), and the second conveyor belt assembly (7) is installed at the discharging end of the box body (1). There is an installation space between the first conveyor belt assembly (6) and the second conveyor belt assembly (7).

3. The special cleaning device for hollow LOWE energy-saving glass according to claim 2, characterized in that: The first conveyor belt assembly (6) includes a driving roller (8) and a driven roller (9) capable of rotating. The surface of the driving roller (8) is provided with a conveyor belt (10) capable of driving the driven roller (9) to rotate. The conveyor belt (10) can convey hollow LOW - E energy - saving glass. The structures of the first conveyor belt assembly (6) and the second conveyor belt assembly (7) are the same. The rotation of the driving roller (8) can be driven by a servo motor.

4. The special cleaning device for hollow LOWE energy-saving glass according to claim 1, characterized in that: The box body (1) is provided with a displacement plate (11) capable of moving up and down along the inner wall of the box body (1). The supporting roller (3) is installed on the displacement plate (11). The box body (1) is provided with a limiting roller (12) corresponding to the supporting roller (3) and capable of assisting in limiting the hollow LOW - E energy - saving glass. The box body (1) is provided with a displacement plate driving cylinder (27) for driving the displacement plate (11) to move up and down.

5. The special cleaning device for hollow LOWE energy-saving glass according to claim 1, characterized in that: The box body (1) is provided with a movable plate driving cylinder (18) for driving the movable plate (15) to move up and down. The structure of the lower cleaning plate structure (14) is the same as that of the upper cleaning plate structure (13).

6. The special cleaning device for hollow LOWE energy-saving glass according to claim 1, wherein: The top and bottom of the box body (1) are both provided with water storage boxes (19) that communicate with each other. At the bottom of the water storage box (19) at the top of the box body (1) and on the surface of the water storage box (19) at the bottom of the box body (1), there are spray heads (5) that can communicate with the inside of the two water storage boxes (19) respectively.

7. The special cleaning device for hollow LOW-E energy-saving glass according to claim 6, characterized in that: The spray heads (5) are continuously distributed at the bottom of the water storage box (19) at the top of the box body (1) and on the surface of the water storage box (19) at the bottom of the box body (1). The spray heads (5) are installed in the water storage box (19) through damping rotating shafts. The spray heads (5) are water spray nozzles. The top of the box body (1) is provided with a water inlet pipe (20) that communicates with the water storage box (19). The bottom of the box body (1) is provided with a water outlet pipe A (21) that communicates with the box body (1). In the water outlet pipe A (21), there is a filter box (22) that is connected to the water outlet pipe A (21) and can filter the water in the box body (1). In the filter box (22), there are multiple filter mesh plates (23). The water outlet end of the filter box (22) is provided with a water outlet pipe B (24) that can communicate with the water inlet end of the water inlet pipe (20).

8. A special cleaning device for hollow LOW-E energy-saving glass according to claim 7, characterized in that: There are three filter mesh plates (23) arranged at intervals from top to bottom in the filter box (22). The water outlet end of the filter box (22) is provided with a control valve (25) that can cooperate with the water outlet pipe B (24). The bottom of the box body (1) is provided with a water collecting tank (26) whose cross-sectional shape is similar to a "V". The water inlet end of the water outlet pipe A (21) is installed at the central position of the water collecting tank (26).

Citation Information

Patent Citations

  • Energy-saving hollow glass cleaning and drying machine

    CN219442818U