Cleaning equipment for glass manufacturing and production
By designing a cleaning equipment for glass manufacturing production that includes reuse components and blow-dry components, the problem of water resources waste in existing equipment is solved, the recycling of water resources and rapid drying of glass is achieved, and the cleaning efficiency and effect are improved.
Patent Information
- Application Number
- CN202421908463.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The existing cleaning equipment for glass manufacturing and production does not have any measures to reuse water resources during the cleaning process, resulting in waste of water resources.
A cleaning equipment for glass manufacturing and production is designed, including reuse components and blow-dry components. The cleaned water is extracted through the water pump and reused through the water supply main pipe, the water supply branch pipe and the cleaning pipe. After the water is filtered, the water is pumped out again by the water pump to realize the recycling of water resources. At the same time, use a hair dryer to quickly dry the glass surface to avoid water droplets remaining.
It realizes the reuse of water resources, reduces water waste, improves cleaning efficiency, and ensures rapid drying of glass, avoiding the problem of poor cleaning effect.
Smart Images

Figure CN223011292U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass manufacturing production, in particular to a cleaning device for glass manufacturing production. Background Art
[0002] After glass production and processing, it is necessary to clean the glass surface to remove surface dirt, clean it with a brush, and then clean and dry it to obtain glass that meets the requirements. Therefore, a cleaning device for glass manufacturing production is required.
[0003] However, in the prior art, when using a cleaning device for glass manufacturing production to clean glass, it is found that water is needed to clean the glass surface. However, some cleaning devices for glass manufacturing production do not have water resource reuse measures, resulting in waste of water resources.
[0004] Therefore, a cleaning device for glass manufacturing production is proposed to solve the above problems. Content of the Utility Model
[0005] The purpose of the utility model is to solve the problems existing in the prior art.
[0006] To achieve the above purpose, the utility model adopts the following technical scheme: a cleaning device for glass manufacturing production, including: a cleaning tank, four support legs are fixedly connected to the bottom of the cleaning tank, feeding and discharging ports are respectively formed through both sides of the cleaning tank, two motor plates are fixedly connected to one side of the cleaning tank, two support plates are respectively fixedly connected to both ends of one side of the cleaning tank, a plurality of bearing holes are respectively formed through both sides of the cleaning tank, two partition plates are fixedly connected to both sides of the inner cavity of the cleaning tank, a water collecting pipe is fixedly embedded in the bottom of the inner cavity of the cleaning tank, a reuse component is arranged at the bottom of the cleaning tank, and a plurality of air drying components are arranged on one side of the cleaning tank.
[0007] As a preferred implementation manner, two of the four support plates are in a group, a worm is embedded in the inner parts of the two groups of support plates through bearings, one ends of the two worms are respectively connected with a motor, the output ends of the two motors are fixedly embedded at the centers of one ends of the two worms, and the surfaces of the two motors are fixedly connected to one side of the two motor plates.
[0008] As a preferred implementation manner, a plurality of worm wheels are respectively meshed with the surfaces of the two worms, a rotating shaft is fixedly embedded in the inner part of each of the plurality of worm wheels, a transmission sleeve is fixedly sleeved on the surface of each rotating shaft, both ends of the plurality of rotating shafts are respectively embedded in the inner parts of the plurality of bearing holes through bearings, and a plurality of brush plates are fixedly embedded on both sides of the inner cavity of the cleaning tank.
[0009] As a preferred embodiment, the reuse component includes a reuse box. A placement groove is formed on one side of the reuse box. Both sides of the inner cavity of the reuse box are fixedly connected with sliding plates. A filter box is movably embedded in the placement groove. The bottom of the filter box is attached to the surfaces of the two sliding plates. A handle is fixedly connected to one side of the filter box. A plurality of overflow ports are formed through one side of the filter box. A plurality of through holes are formed in the bottom of the inner cavity of the filter box.
[0010] As a preferred embodiment, a water delivery main pipe is fixedly embedded on one side of the reuse box. One end of the water delivery main pipe is connected to a water pump. The other end of the water delivery main pipe is connected to two water delivery branch pipes. A plurality of cleaning pipes are connected to one side of each of the two water delivery branch pipes. A plurality of nozzles are connected to the surfaces of the plurality of cleaning pipes. A water replenishing pipe and a drain pipe are fixedly embedded on one side of the reuse box. A float valve is arranged at one end of the water replenishing pipe. A valve is arranged on the surface of one end of the drain pipe. The air drying component includes an installation frame, and a plurality of hair dryers are fixedly embedded in the installation frame.
[0011] As a preferred embodiment, the surfaces of the plurality of cleaning pipes are fixedly embedded on one side of the cleaning box. The other sides of the cleaning pipes are connected to the other side of the inner cavity of the cleaning box. The top of the reuse box is fixedly sleeved on the surface of the water collecting pipe. The inner cavity of the reuse box communicates with the inner cavity of the water collecting pipe. The bottom of the water pump is fixedly connected to the bottom of the inner cavity of the reuse box.
[0012] As a preferred embodiment, the surfaces of the plurality of installation frames are fixedly embedded on one side of the cleaning box, and the interiors of the plurality of installation frames communicate with the inner cavity of the cleaning box.
[0013] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:
[0014] In this utility model, a nozzle is connected to a water supply pipe, and this glass manufacturing and production cleaning device is connected to an external power supply device. The external power supply device is electrically connected to an external controller, a motor, a water pump, and a hair dryer to provide power. The external controller is electrically connected to the motor, the water pump, and the hair dryer and is associated with control. By starting the motor, the water pump, and the hair dryer through the external controller, the output end of the motor drives a worm to rotate. Multiple worm wheels follow the worm to rotate. The upper worm wheel rotates counterclockwise, and the lower worm wheel rotates clockwise. The transmission sleeve follows the worm wheel to rotate. Place the glass to be cleaned inside the one - end feeding and discharging port, that is, the opposite end of the motor plate. Driven by the transmission sleeves on the upper and lower sides, the glass enters the inner cavity of the cleaning box. The water pump pumps out the water in the inner cavity of the reuse box and sprays it from the nozzle to the surface of the glass through the main water delivery pipe, the branch water delivery pipes, and the cleaning pipes, and cooperates with the brush plate to clean the glass. The water after cleaning falls to the bottom of the inner cavity of the cleaning box and enters the inside of the reuse box through the water collecting pipe. A filter cotton is placed on the surface of the filter box. The water passes through the through - holes under the filtration of the filter cotton and returns to the bottom of the inner cavity of the reuse box again to be pumped out by the water pump. Such a design realizes the reuse of water resources and achieves the purpose of saving water resources. The glass continues to move forward to the other end of the cleaning box under the drive of the transmission sleeve. The water remaining on the surface of the glass falls to the bottom of the inner cavity of the cleaning box under the blowing of the hair dryer. Such a design enables the glass after cleaning to be quickly dried, avoiding the poor cleaning effect caused by the water remaining on the surface of the glass. Description of the Drawings
[0015] Figure 1 It is a general view schematic diagram of a glass manufacturing and production cleaning device provided by this utility model;
[0016] Figure 2 It is a schematic diagram of the other side of a glass manufacturing and production cleaning device provided by this utility model;
[0017] Figure 3 It is a cross - sectional view of a glass manufacturing and production cleaning device provided by this utility model;
[0018] Figure 4 It is a partial exploded view of the reuse component of a glass manufacturing and production cleaning device provided by this utility model.
[0019] Legend Explanation:
[0020] 1. Cleaning tank; 101. Support legs; 102. Inlet and outlet; 103. Motor plate; 104. Support plate; 105. Bearing hole; 106. Rotating shaft; 107. Worm gear; 108. Worm; 109. Motor; 110. Conveyor sleeve; 111. Partition plate; 112. Water collecting pipe; 113. Brush plate; 2. Recycling component; 201. Recycling tank; 202. Placing groove; 203. Slide plate; 204. Filter box; 205. Handle; 206. Overflow port; 207. Through hole; 208. Main water delivery pipe; 209. Water delivery branch pipe; 210. Cleaning pipe; 211. Nozzle; 212. Water supply pipe; 213. Float valve; 214. Drain pipe; 215. Valve; 216. Water pump; 3. Drying component; 301. Installation frame; 302. Hair dryer. Detailed implementation manner
[0021] 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.
[0022] Please refer to Figures 1-4 , the present invention provides a technical solution: a cleaning device for glass manufacturing production, including: a cleaning tank 1, four support legs 101 are fixedly connected to the bottom of the cleaning tank 1, inlet and outlets 102 are respectively penetrated through both sides of the cleaning tank 1, two motor plates 103 are fixedly connected to one side of the cleaning tank 1, two support plates 104 are fixedly connected to both ends of one side of the cleaning tank 1, a plurality of bearing holes 105 are respectively penetrated through both sides of the cleaning tank 1, two partition plates 111 are fixedly connected to both sides of the inner cavity of the cleaning tank 1, a water collecting pipe 112 is fixedly embedded in the bottom of the inner cavity of the cleaning tank 1, a recycling component 2 is arranged at the bottom of the cleaning tank 1, and a plurality of drying components 3 are arranged on one side of the cleaning tank 1.
[0023] Specifically: The water pump 216 pumps out the water in the inner cavity of the reuse tank 201 and sprays it from the nozzle 211 onto the surface of the glass to clean the glass. The water after cleaning falls to the bottom of the inner cavity of the cleaning tank 1 and enters the inside of the reuse tank 201 through the water collecting pipe 112. Filter cotton is placed on the surface of the filter box 204. The water passes through the through hole 207 again and returns to the bottom of the inner cavity of the reuse tank 201 under the filtration of the filter cotton. This design realizes the reuse of water resources; the glass continues to move forward to the other end of the cleaning tank 1 under the drive of the transmission sleeve 110, and the water remaining on the surface of the glass falls to the bottom of the inner cavity of the cleaning tank 1 under the blowing of the hair dryer 302. This design enables the glass after cleaning to be quickly dried, avoiding the poor cleaning effect caused by the water remaining on the surface of the glass; the partition plate 111 plays a role in partitioning, preventing the water sprayed by 211 from falling onto the surface of the glass in the drying stage.
[0024] In one embodiment, two of the four support plates 104 that face each other form a group. A worm 108 is embedded in the interior of the two groups of support plates 104 through bearings. One end of each of the two worms 108 is connected to a motor 109. The output ends of the two motors 109 are fixedly embedded in the centers of one ends of the two worms 108. The surfaces of the two motors 109 are fixedly connected to one side of the two motor plates 103.
[0025] Specifically: The output end of the motor 109 drives the worm 108 to rotate, and multiple worm wheels 107 rotate following the worm 108. The upper worm wheel 107 rotates counterclockwise, and the lower worm wheel 107 rotates clockwise; the motor 109 is fixed to one side of the motor plate 103 to prevent the shaking of the motor 109 during operation from affecting the normal operation of the equipment.
[0026] In one embodiment, the surfaces of the two worms 108 are each engaged with a plurality of worm wheels 107. A rotating shaft 106 is fixedly embedded in the interior of each of the multiple worm wheels 107. A transmission sleeve 110 is fixedly sleeved on the surface of each rotating shaft 106. Both ends of the multiple rotating shafts 106 are embedded in the interior of multiple bearing holes 105 through bearings. Multiple brush plates 113 are fixedly embedded on both sides of the inner cavity of the cleaning tank 1.
[0027] Specifically: Every two of the multiple brush plates 113 are arranged in a relative state in the inner cavity of the cleaning tank 1, and every two of the multiple brush plates 113 are arranged in a staggered manner in the relative inner sides of the multiple transmission sleeves 110 located on one side of the cleaning tank 1; the brush plates 113 can brush the upper and lower surfaces of the moving glass.
[0028] In one embodiment, the reuse component 2 includes a reuse box 201. A placement groove 202 is formed on one side of the reuse box 201. Both sides of the inner cavity of the reuse box 201 are fixedly connected with sliding plates 203. A filter box 204 is movably embedded in the interior of the placement groove 202. The bottom of the filter box 204 is attached to the surfaces of the two sliding plates 203. One side of the filter box 204 is fixedly connected with a handle 205. A plurality of overflow ports 206 are formed through one side of the filter box 204. A plurality of through holes 207 are formed at the bottom of the inner cavity of the filter box 204.
[0029] Specifically: Workers can hold the handle 205 and pull the filter box 204 out of the inner cavity of the cleaning box 1 to replace the filter cotton in the inner cavity of the filter box 204; the overflow ports 206 can prevent the filter cotton from being blocked, avoiding water from flowing out of the filter box 204. When the filter cotton is blocked, water can flow from the overflow ports 206 to the bottom of the reuse box 201.
[0030] In one embodiment, a water delivery main pipe 208 is fixedly embedded on one side of the reuse box 201. One end of the water delivery main pipe 208 is connected with a nozzle 211. The other end of the water delivery main pipe 208 is connected with two water delivery branch pipes 209. One side of each of the two water delivery branch pipes 209 is connected with a plurality of cleaning pipes 210. A plurality of nozzles 211 are connected to the surfaces of the plurality of cleaning pipes 210. A water replenishing pipe 212 and a valve 215 are fixedly embedded on one side of the reuse box 201. A float valve 213 is arranged at one end of the water replenishing pipe 212. A drain pipe 214 is arranged on the surface of the other end of the water replenishing pipe 212. A water pump 216 is arranged on the surface of one end of the valve 215. The drying component 3 includes a mounting frame 301, and a plurality of hair dryers 302 are fixedly embedded in the interior of the mounting frame 301.
[0031] Specifically: The water pump 216 pumps out the water in the inner cavity of the reuse box 201 and sprays it from the nozzles 211 to the surface of the glass through the water delivery main pipe 208, the water delivery branch pipes 209 and the cleaning pipes 210, and cooperates with the brush plate 113 to clean the glass; the float valve 213 is an existing valve that controls the opening or closing of the valve according to the water level, and its specific structure will not be described here in detail. The float valve 213 can replenish water into the inner cavity of the reuse box 201 according to the water level inside the reuse box 201; there is a certain distance between the float valve 213 and the sliding plate 203 to avoid water remaining at the bottom of the inner cavity of the cleaning box 1 flowing into the inner cavity of the reuse box 201 when the equipment stops, causing the water level in the inner cavity of the reuse box 201 to rise and flow out from the placement groove 202; the valve 215 can be opened and the valve of the water supply pipeline can be closed according to requirements to drain all the water in the inner cavity of 201. Every two of the plurality of cleaning pipes 210 are arranged in a group and are relatively arranged on the opposite inner sides of the plurality of conveying sleeves 110 and are correspondingly arranged on one side of the plurality of groups of brush plates 113.
[0032] In one embodiment, the surfaces of a plurality of cleaning pipes 210 are fixedly embedded on one side of the cleaning tank 1, the other sides of the cleaning pipes 210 are connected to the other side of the inner cavity of the cleaning tank 1, and then the top of the reuse tank 201 is fixedly sleeved on the surface of the water collecting pipe 112, and the inner cavity of the reuse tank 201 communicates with the inner cavity of the water collecting pipe 112.
[0033] Specifically: The water after cleaning and the water blown off from the glass surface fall to the bottom of the inner cavity of the cleaning tank 1 and enter the inside of the reuse tank 201 from the water collecting pipe 112.
[0034] In one embodiment, the surfaces of a plurality of mounting frames 301 are fixedly embedded on one side of the cleaning tank 1, and the interiors of the plurality of mounting frames 301 communicate with the inner cavity of the cleaning tank 1.
[0035] Specifically: The water remaining on the glass surface falls to the bottom of the inner cavity of the cleaning tank 1 under the blowing of the hair dryer 302. This design enables the glass after cleaning to be quickly dried, avoiding poor cleaning effect caused by the water remaining on the glass surface; the mounting frames 301 are arranged on the other side of the outer wall of the cleaning tank 1 and correspond to the opposite inner sides of a plurality of conveying sleeves 110 located on the other side of the cleaning tank 1.
[0036] Working principle: Connect the nozzle 211 to the water supply pipe and connect this glass manufacturing production cleaning device to an external power supply device. The external power supply device is electrically connected to an external controller, a motor 109, a water pump 216, and a hair dryer 302 to provide power. The external controller is electrically connected to the motor 109, the water pump 216, and the hair dryer 302 and is associated for control. Start the motor 109, the water pump 216, and the hair dryer 302 through the external controller. The output end of the motor 109 drives the worm 108 to rotate. A plurality of worm wheels 107 rotate following the worm 108. The upper worm wheel 107 rotates counterclockwise, and the lower worm wheel 107 rotates clockwise. The conveying sleeve 110 rotates following the worm wheel 107. In the glass manufacturing production process, place the glass to be cleaned inside one end of the feeding and discharging port 102, that is, the opposite end of the motor plate 103. The glass enters the inner cavity of the cleaning tank 1 driven by the conveying sleeves 110 on the upper and lower sides. The water pump 216 pumps out the water in the inner cavity of the reuse tank 201 and sprays it from the nozzle 211 onto the surface of the glass through the water conveying main pipe 208, the water conveying branch pipe 209, and the cleaning pipe 210, and cooperates with the brush plate 113 to clean the glass. The water after cleaning falls to the bottom of the inner cavity of the cleaning tank 1 and enters the inside of the reuse tank 201 from the water collecting pipe 112. A filter cotton is placed on the surface of the filter box 204. The water passes through the through holes 207 after being filtered by the filter cotton and returns to the bottom of the inner cavity of the reuse tank 201 again to be pumped out by the water pump 216. Such a design realizes the reuse of water resources and achieves the purpose of saving water resources. The glass continues to move forward to the other end of the cleaning tank 1 driven by the conveying sleeve 110. The water remaining on the surface of the glass falls to the bottom of the inner cavity of the cleaning tank 1 under the blowing of the hair dryer 302. Such a design enables the glass after cleaning to be quickly dried to avoid poor cleaning effect caused by the water remaining on the surface of the glass.
[0037] The above is only a preferred embodiment of the present invention and is not a limitation to the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. A cleaning device for glass manufacturing, characterized in that: include: A cleaning box (1), wherein four supporting legs (101) are fixedly connected to the bottom of the cleaning box (1), both sides of the cleaning box (1) are penetrated with material inlet and outlet ports (102), one side of the cleaning box (1) is fixedly connected with two motor plates (103), both ends of one side of the cleaning box (1) are fixedly connected with two supporting plates (104), both sides of the cleaning box (1) are penetrated with a plurality of bearing holes (105), two partition plates (111) are fixedly connected to the two sides of the inner cavity of the cleaning box (1), a water collecting pipe (112) is fixedly embedded in the bottom of the inner cavity of the cleaning box (1), a recycling component (2) is arranged at the bottom of the cleaning box (1), and a plurality of drying components (3) are arranged on one side of the cleaning box (1).
2. A cleaning device for glass manufacturing production according to claim 1, characterized in that: Two opposing ones of the four support plates (104) form a group, and worms (108) are embedded inside the two groups of support plates (104) through bearings, one end of each of the two worms (108) is connected to a motor (109), the output ends of the two motors (109) are fixedly embedded at the center of one end of the two worms (108), and the surfaces of the two motors (109) are fixedly connected to one side of the two motor plates (103).
3. A cleaning device for glass manufacturing production according to claim 2, characterized in that: The surfaces of the two worms (108) are meshedly connected with a plurality of worm wheels (107), a rotating shaft (106) is fixedly embedded inside the plurality of worm wheels (107), a transmission sleeve (110) is fixedly sleeved on the surface of the rotating shaft (106), both ends of the plurality of rotating shafts (106) are embedded inside a plurality of bearing holes (105) via bearings, and a plurality of brush plates (113) are fixedly embedded on both sides of the inner cavity of the cleaning box (1).
4. A cleaning device for glass manufacturing production according to claim 1, characterized in that: The recycling component (2) comprises a recycling box (201), a placement groove (202) is provided on one side of the recycling box (201), slide plates (203) are fixedly connected to both sides of the inner cavity of the recycling box (201), a filter box (204) is movably embedded in the placement groove (202), the bottom of the filter box (204) is attached to the surfaces of the two slide plates (203), a handle (205) is fixedly connected to one side of the filter box (204), a plurality of overflow ports (206) are provided through one side of the filter box (204), and a plurality of through holes (207) are provided at the bottom of the inner cavity of the filter box (204).
5. The cleaning equipment for glass manufacturing according to claim 1, characterized in that: A water main pipe (208) is fixedly embedded on one side of the recycling box (201), one end of the water main pipe (208) is connected to a water pump (216), the other end of the water main pipe (208) is connected to two water branch pipes (209), one side of the two water branch pipes (209) is connected to a plurality of cleaning pipes (210), the surfaces of the plurality of cleaning pipes (210) are connected to a plurality of nozzles (211), a water supply pipe (212) and a drainage pipe (214) are fixedly embedded on one side of the recycling box (201), a float valve (213) is provided on one end of the water supply pipe (212), and a valve (215) is provided on the surface of one end of the drainage pipe (214), and the drying component (3) comprises a mounting frame (301), a plurality of hair dryers (302) are fixedly embedded inside the mounting frame (301).
6. A cleaning device for glass manufacturing production according to claim 5, characterized in that: The surfaces of the plurality of cleaning pipes (210) are fixedly embedded in one side of the cleaning box (1), and the other side of the cleaning pipe (210) is connected to the other side of the inner cavity of the cleaning box (1). The top of the recycling box (201) is fixedly sleeved on the surface of the water collecting pipe (112), the inner cavity of the recycling box (201) is connected to the inner cavity of the water collecting pipe (112), and the bottom of the water pump (216) is fixedly connected to the bottom of the inner cavity of the recycling box (201).
7. The cleaning equipment for glass manufacturing according to claim 5, characterized in that: The surfaces of the plurality of installation frames (301) are fixedly embedded in one side of the cleaning box (1), and the interiors of the plurality of installation frames (301) are connected to the inner cavity of the cleaning box (1).