Glass scrubbing device with filtering function

By introducing a filter into the glass brushing device, the damage problem of impurities in the sewage after cleaning is solved, and the effect of water purification and recycling is achieved.

CN223197563UActive Publication Date: 2025-08-08ZHONGSHAN XIEHENG GLASS TECH CO LTD
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Patent Information

Application Number
CN202422355097.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-08-08
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

When the existing glass cleaning device recycles the cleaned sewage, the impurities mixed in the sewage may cause damage to the glass and be cleaned thoroughly.

Method used

A glass brushing device with filtering function is designed, including a driving mechanism, a brushing mechanism and a water absorption mechanism. The impurities and dust in the sewage are filtered out through a filter to ensure that the water quality is clean and then recycled.

Benefits of technology

The water quality purification after cleaning is achieved, which avoids secondary pollution and damage to the glass and improves the practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is applicable to the technical field of glass processing, and provides a glass scrubbing device with a filtering function, which comprises a bottom plate, a plurality of driving mechanisms, a plurality of scrubbing mechanisms and a plurality of water absorption mechanisms, the upper surface of the bottom plate is vertically and fixedly connected with a plurality of vertical rods, and the top ends of the plurality of vertical rods are transversely and fixedly connected with a transverse bedplate. According to the glass scrubbing device with the filtering function, by arranging a filter, when the glass scrubbing device is used, sewage generated after cleaning flows into a drainage hole under the guidance of a transverse table plate, then the sewage returns to the interior of a water tank through a first water conveying pipe, a second water conveying pipe, the filter and a third water conveying pipe under the action of a first liquid pump, and in the process, the sewage flows into the water tank; and impurities and dust in sewage can be filtered out after the sewage is filtered by the filter, so that water finally entering the water tank reaches a relatively clean level, and glass cannot be polluted and damaged when the water is recycled, so that the practicability of the device is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of glass processing, and in particular relates to a glass cleaning device with a filtering function. Background Art

[0002] Glass is an amorphous, inorganic, non-metallic material. It's typically made from a variety of inorganic minerals (such as quartz sand, borax, boric acid, barite, barium carbonate, limestone, feldspar, and soda ash) with small amounts of auxiliary materials. It's widely used in buildings to block wind and transmit light, and is considered a mixture. Other types of glass include colored glass, which is created by mixing in certain metal oxides or salts, and tempered glass, which is produced through physical or chemical methods.

[0003] Glass needs to be cleaned during the processing. During the existing glass processing, a lot of sewage and glass chips will be generated on the surface of the glass. During cleaning, these impurities will be mixed in the sewage after cleaning. In order to avoid waste, the cleaning water is generally recycled. However, the impurities mixed in the sewage after cleaning may damage the glass if reused, and the glass cannot be cleaned cleanly. Utility Model Content

[0004] The utility model provides a glass brushing device with a filtering function, which aims to solve the problem that when cleaning glass, in order to avoid waste, the cleaning water is generally recycled, but the impurities contained in the sewage after cleaning may damage the glass when reused, and the glass cannot be cleaned cleanly.

[0005] The utility model is realized as follows: a glass brushing device with filtering function comprises a bottom plate, a plurality of driving mechanisms, a plurality of brushing mechanisms and a plurality of water absorbing mechanisms;

[0006] The upper surface of the base plate is vertically fixedly connected with a plurality of vertical poles, and the top ends of the plurality of vertical poles are horizontally fixedly connected with a horizontal platform, and both sides of the upper surface of the horizontal platform are fixedly connected with horizontal strips along its length direction, and a drainage hole is vertically penetrated through the rear portion of the upper surface of the horizontal platform, and the bottom end of the horizontal platform is fixedly connected with a first liquid pump and a filter, and a first water pipe is connected between the water inlet of the first liquid pump and the drainage hole, and a second water pipe is connected between the water outlet of the first liquid pump and the water inlet of the filter, and a water tank is fixedly connected to the upper surface of the base plate, and a third water pipe is connected between the water outlet of the filter and the water tank.

[0007] Preferably, a dropper is fixedly connected transversely to the upper front end between the two horizontal strips, a second liquid pump is fixedly connected to the upper surface of the bottom plate, a fourth water pipe is connected between the water inlet of the second liquid pump and the water tank, and a fifth water pipe is connected between the water outlet of the second liquid pump and the dropper.

[0008] Preferably, multiple driving mechanisms are arranged in the front part between the two horizontal strips and located below the dropper, and the structures of multiple driving mechanisms are the same, one of the driving mechanisms includes a driving roller that is laterally rotatably connected between the two horizontal strips and symmetrically arranged along a horizontal line, one end of the rotating shaft of the two driving rollers can rotatably pass through one of the horizontal strips and extend outward, and the rotating shaft surfaces of the two driving rollers and located outside the horizontal strips are fixedly connected to a first gear, and the two first gears are engaged with each other.

[0009] Preferably, outer surfaces of the rotating shafts of the plurality of upper driving rollers are fixedly connected with first multi-track pulleys, and every two adjacent first multi-track pulleys are connected via belt transmission.

[0010] Preferably, multiple brushing mechanisms are arranged in the front part between the two horizontal strips and below the dropper, and the structures of multiple brushing mechanisms are the same. One of the brushing mechanisms includes a brushing roller that is laterally rotatably connected between the two horizontal strips and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two brushing rollers can rotatably pass through the other horizontal strip and extend outward. The rotating shaft surface of the two brushing rollers and the outside of the horizontal strip are fixedly connected with a second gear, and the two second gears are engaged with each other.

[0011] Preferably, the outer surfaces of the rotating shafts of the multiple upper brush rollers are fixedly connected to a second multi-track pulley, and every two adjacent second multi-track pulleys are connected by belt transmission, and the multiple driving mechanisms are respectively arranged between every two adjacent brush mechanisms.

[0012] Preferably, multiple water-absorbing mechanisms are arranged between the two horizontal strips, and the structures of multiple water-absorbing mechanisms are the same. One of the water-absorbing mechanisms includes a water-absorbing roller that is laterally rotatably connected between the two horizontal strips and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two water-absorbing rollers can rotatably pass through one of the horizontal strips and extend outward. The outer surfaces of the rotating shafts of the two water-absorbing rollers and located outside the horizontal strips are fixedly connected with a third gear, and the two third gears are engaged with each other. The outer surfaces of the rotating shafts of the multiple upper water-absorbing rollers are fixedly connected with a third multi-track pulley, and every two adjacent third multi-track pulleys are connected by a belt transmission.

[0013] Beneficial effects

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: the present invention is a glass brushing device with a filtering function. By setting a filter, when the device is in use, the sewage after cleaning will flow into the drainage hole under the guidance of the horizontal platform, and then under the action of the first liquid pump, the sewage will pass through the first water pipe, the second water pipe, the filter and the third water pipe and return to the inside of the water tank. In this process, the sewage can be filtered out of the impurities and dust inside by the filter, so that the water that finally enters the water tank reaches a relatively clean level. When it is recycled, it will not cause pollution to the glass, nor will it cause damage to the glass, thereby improving the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 This is a schematic diagram of the structure of the driving mechanism in the utility model;

[0017] Figure 3 It is a structural diagram of the brushing mechanism and the water absorbing mechanism in the utility model.

[0018] In the figure: 1-bottom plate, 2-vertical pole, 3-horizontal platform, 4-horizontal strip, 5-drain hole, 6-first liquid pump, 7-first water pipe, 8-filter, 9-second water pipe, 10-third water pipe, 11-water tank, 12-second liquid pump, 13-fourth water pipe, 14-fifth water pipe, 15-drip pipe, 16-driving mechanism, 161-driving roller, 162-first gear, 163-first multi-track pulley, 17-brushing mechanism, 171-brushing roller, 172-second gear, 173-second multi-track pulley, 18-water absorption mechanism, 181-water absorption roller, 182-third gear, 183-third multi-track pulley. DETAILED DESCRIPTION

[0019] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0020] See also Figure 1-3 , the utility model provides a technical solution: a glass brushing device with filtering function, comprising a bottom plate 1, a plurality of driving mechanisms 16, a plurality of brushing mechanisms 17 and a plurality of water absorbing mechanisms 18;

[0021] The upper surface of the base plate 1 is vertically fixed with multiple vertical poles 2, and the top ends of the multiple vertical poles 2 are horizontally fixed with a horizontal platform 3. Both sides of the upper surface of the horizontal platform 3 are fixedly connected with horizontal strips 4 along its length direction. The rear part of the upper surface of the horizontal platform 3 is vertically penetrated with a drainage hole 5. The bottom end of the horizontal platform 3 is fixedly connected with a first liquid pump 6 and a filter 8. A first water pipe 7 is connected between the water inlet of the first liquid pump 6 and the drainage hole 5, and a second water pipe 9 is connected between the water outlet of the first liquid pump 6 and the water inlet of the filter 8. A water tank 11 is fixedly connected to the upper surface of the base plate 1, and a third water pipe 10 is connected between the water outlet of the filter 8 and the water tank 11.

[0022] In this embodiment, when the device is in use, the cleaned sewage will flow into the drainage hole 5 under the guidance of the horizontal platform 3, and then under the action of the first liquid pump 6, the sewage will pass through the first water pipe 7, the second water pipe 9, the filter 8 and the third water pipe 10 and return to the inside of the water tank 11. In this process, the sewage can be filtered out of the impurities and dust inside by the filter 8, so that the water that finally enters the water tank 11 reaches a relatively clean level. When it is recycled, it will not cause pollution to the glass, nor will it cause damage to the glass, thereby improving the practicality of the device.

[0023] Furthermore, a dropper 15 is fixedly connected horizontally to the upper front end between the two horizontal strips 4, a second liquid pump 12 is fixedly connected to the upper surface of the bottom plate 1, a fourth water pipe 13 is connected between the water inlet of the second liquid pump 12 and the water tank 11, and a fifth water pipe 14 is connected between the water outlet of the second liquid pump 12 and the dropper 15.

[0024] In this embodiment, the second liquid pump 12 pumps the water inside the water tank 11 into the inside of the dropper 15, and the water drips onto the surface of the glass transmitted by the device through the dropper 15 to moisten the glass, making it convenient for brushing. There are multiple droppers 15, and a liquid distributor can be set on the fourth water pipe 13 to supply water to multiple droppers 15.

[0025] Furthermore, multiple driving mechanisms 16 are arranged in the front between the two horizontal strips 4 and below the dropper 15. The structures of the multiple driving mechanisms 16 are the same. One of the driving mechanisms 16 includes a driving roller 161 that is laterally rotatably connected between the two horizontal strips 4 and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two driving rollers 161 can rotatably pass through a horizontal strip 4 and extend outward. The rotating shaft surface of the two driving rollers 161 and the outside of the horizontal strip 4 are fixedly connected with a first gear 162, and the two first gears 162 are engaged with each other.

[0026] The outer surfaces of the rotating shafts of the plurality of upper driving rollers 161 are fixedly connected to first multi-track pulleys 163 , and every two adjacent first multi-track pulleys 163 are connected via a belt transmission.

[0027] In this embodiment, a driving roller 161 of one driving mechanism 16 is driven to rotate by a motor. During the rotation of one driving roller 161, the first gear 162 on its rotating shaft drives another first gear 162 to rotate, so that the two driving rollers 161 in the same driving mechanism 16 rotate synchronously in opposite directions, driving the glass sheet to move under the action of friction. The multiple driving mechanisms 16 are mutually transmitted through the first multi-track pulley 163 to ensure that the multiple driving mechanisms 16 can maintain synchronous operation.

[0028] Furthermore, multiple brushing mechanisms 17 are arranged in the front between the two horizontal strips 4 and below the dropper 15. The structures of the multiple brushing mechanisms 17 are the same. One of the brushing mechanisms 17 includes a brushing roller 171 that is laterally rotatably connected between the two horizontal strips 4 and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two brushing rollers 171 can rotatably pass through the other horizontal strip 4 and extend outward. The rotating shaft surface of the two brushing rollers 171 and the outside of the horizontal strip 4 are fixedly connected with a second gear 172, and the two second gears 172 are engaged with each other.

[0029] The outer surfaces of the rotating shafts of the multiple upper brush rollers 171 are fixedly connected to the second multi-track pulleys 173, and every two adjacent second multi-track pulleys 173 are connected by belt transmission. Multiple driving mechanisms 16 are respectively arranged between every two adjacent brush mechanisms 17.

[0030] In this embodiment, the operation mode of the multiple brushing mechanisms 17 is similar to that of the multiple driving mechanisms 16. A brushing roller 171 in one of the brushing mechanisms 17 is driven to rotate by a motor, and a brush is provided on the outer surface of the brushing roller 171. The multiple driving mechanisms 16 are arranged between every two brushing mechanisms 17 to ensure that the glass can be smoothly transported while also being able to be brushed.

[0031] Furthermore, multiple water absorption mechanisms 18 are arranged between the two horizontal strips 4, and the structures of the multiple water absorption mechanisms 18 are the same. One of the water absorption mechanisms 18 includes a water absorption roller 181 that is laterally rotatably connected between the two horizontal strips 4 and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two water absorption rollers 181 can rotatably pass through a horizontal strip 4 and extend outward. The outer surfaces of the rotating shafts of the two water absorption rollers 181 and located outside the horizontal strips 4 are fixedly connected with a third gear 182, and the two third gears 182 are engaged with each other. The outer surfaces of the rotating shafts of the multiple upper water absorption rollers 181 are fixedly connected with a third multi-track pulley 183, and every two adjacent third multi-track pulleys 183 are connected by belt transmission.

[0032] In this embodiment, the operation mode of the multiple water absorption mechanisms 18 is similar to that of the multiple driving mechanisms 16, and the mutually symmetrical reference horizontal lines of the two water absorption rollers 181, the two driving rollers 161 and the two brushing rollers 171 in the multiple water absorption mechanisms 18, the multiple driving mechanisms 16 and the multiple brushing mechanisms 17 are the same straight line, which ensures that when the device transports the glass, the glass always moves along a horizontal line. The outer surface of the water absorption roller 181 is provided with a water-absorbing sponge, which can effectively absorb water.

[0033] The working principle and usage process of the present invention: After the present invention is installed, when the device is in use, the cleaned sewage will flow into the drainage hole 5 under the guidance of the horizontal platform 3, and then under the action of the first liquid pump 6, the sewage will pass through the first water pipe 7, the second water pipe 9, the filter 8 and the third water pipe 10 and return to the inside of the water tank 11. In this process, the sewage can be filtered out of the impurities and dust inside by the filter 8, so that the water that finally enters the water tank 11 reaches a relatively clean level. When it is recycled, it will not cause pollution to the glass, nor will it cause damage to the glass, thereby improving the practicality of the device.

[0034] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A glass cleaning device with filtering function, characterized in that: It comprises a bottom plate (1), a plurality of driving mechanisms (16), a plurality of scrubbing mechanisms (17) and a plurality of water absorbing mechanisms (18); The upper surface of the base plate (1) is vertically fixedly connected to a plurality of vertical poles (2), and the top ends of the plurality of vertical poles (2) are horizontally fixedly connected to a horizontal platform (3). Both sides of the upper surface of the horizontal platform (3) are fixedly connected to horizontal strips (4) along the length direction thereof. A drainage hole (5) is vertically penetrated through the rear portion of the upper surface of the horizontal platform (3). The bottom end of the horizontal platform (3) is fixedly connected to a first liquid pump (6) and a filter (8). A first water pipe (7) is connected between the water inlet of the first liquid pump (6) and the drainage hole (5). A second water pipe (9) is connected between the water outlet of the first liquid pump (6) and the water inlet of the filter (8). A water tank (11) is fixedly connected to the upper surface of the base plate (1), and a third water pipe (10) is connected between the water outlet of the filter (8) and the water tank (11).

2. A glass cleaning device with filtering function as claimed in claim 1, characterized in that: A dropper (15) is fixedly connected transversely to the upper front end between the two horizontal strips (4); a second liquid pump (12) is fixedly connected to the upper surface of the bottom plate (1); a fourth water pipe (13) is connected between the water inlet of the second liquid pump (12) and the water tank (11); and a fifth water pipe (14) is connected between the water outlet of the second liquid pump (12) and the dropper (15).

3. A glass cleaning device with filtering function as claimed in claim 2, characterized in that: The plurality of driving mechanisms (16) are all arranged at the front between the two transverse strips (4) and below the dropper (15). The plurality of driving mechanisms (16) have the same structure, wherein one of the driving mechanisms (16) includes a driving roller (161) that is laterally rotatably connected between the two transverse strips (4) and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two driving rollers (161) can rotatably pass through one transverse strip (4) and extend outward. The rotating shaft surfaces of the two driving rollers (161) and the outside of the transverse strip (4) are fixedly connected with a first gear (162), and the two first gears (162) are meshed with each other.

4. A glass cleaning device with filtering function as claimed in claim 3, characterized in that: The outer surfaces of the rotating shafts of the plurality of upper driving rollers (161) are all fixedly connected with first multi-track pulleys (163), and every two adjacent first multi-track pulleys (163) are connected via belt transmission.

5. The glass cleaning device with filtering function according to claim 3, characterized in that: The plurality of brushing mechanisms (17) are all arranged at the front between the two transverse strips (4) and below the dropper (15). The structures of the plurality of brushing mechanisms (17) are all the same. One of the brushing mechanisms (17) includes a brushing roller (171) that is laterally rotatably connected between the two transverse strips (4) and symmetrically arranged along a horizontal line. One end of the rotating shaft of the two brushing rollers (171) can rotatably pass through the other transverse strip (4) and extend outward. The rotating shaft surfaces of the two brushing rollers (171) and the outside of the transverse strip (4) are fixedly connected with a second gear (172), and the two second gears (172) are meshed with each other.

6. A glass cleaning device with filtering function as claimed in claim 5, characterized in that: The outer surfaces of the rotating shafts of the plurality of upper brush rollers (171) are fixedly connected with second multi-track pulleys (173), and every two adjacent second multi-track pulleys (173) are connected via a belt transmission. The plurality of driving mechanisms (16) are respectively arranged between every two adjacent brush mechanisms (17).

7. The glass cleaning device with filtering function according to claim 1, characterized in that: The plurality of water absorbing mechanisms (18) are all arranged between the two transverse strips (4), and the structures of the plurality of water absorbing mechanisms (18) are all the same, wherein one of the water absorbing mechanisms (18) comprises a water absorbing roller (181) which is laterally rotatably connected between the two transverse strips (4) and symmetrically arranged along a horizontal line, one end of the rotating shaft of the two water absorbing rollers (181) can rotatably pass through one transverse strip (4) and extend outward, the outer surfaces of the rotating shafts of the two water absorbing rollers (181) and located outside the transverse strips (4) are fixedly connected with a third gear (182), the two third gears (182) are meshed with each other, the outer surfaces of the rotating shafts of the plurality of upper water absorbing rollers (181) are fixedly connected with a third multi-track pulley (183), and every two adjacent third multi-track pulleys (183) are connected by a belt transmission.