Cleaning device for sintered plate of dust remover
By designing an automated transportation and cleaning mechanism, the problem of existing equipment being unable to handle multiple sintered plates has been solved, achieving efficient and safe cleaning of sintered plates and reducing labor intensity and maintenance costs.
Patent Information
- Application Number
- CN202511310141.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-11-21
AI Technical Summary
Existing dust collector sintering plate cleaning devices are difficult to process multiple sintering plates at the same time and require manual handling, resulting in high work intensity and low safety.
A cleaning device was designed, comprising a transport mechanism, a brushing mechanism, and a blowing mechanism. Automatic quick disassembly is achieved through the cooperation of a hanging plate, a locking tongue, and an inclined slider. The device combines a roller brush, a spray column, and a high-pressure airflow for automated cleaning, ensuring thorough cleaning of each plate.
It enables parallel operation of multiple sintered plates, reduces the need for manual handling, improves cleaning efficiency and safety, ensures cleaning effect, and reduces maintenance costs.
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Figure CN120984604A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of sintered plate cleaning devices, specifically a dust collector sintered plate cleaning device. Background Technology
[0002] Sintered plate dust collectors are widely used in fields with extremely high dust removal efficiency, such as chemical, food, pharmaceutical, and powder recycling, due to their high filtration accuracy and long service life. However, after long-term operation, sticky dust or oil mist that is difficult to remove by conventional blowing will accumulate on the surface and internal micropores of the sintered plate. At this time, a special cleaning device is required for deep cleaning.
[0003] Patent CN221966214U discloses a dust collector sintered plate cleaning device, belonging to the field of sintered plate cleaning technology. It includes a sintered plate dust collector shell, a water tank installed on one side of the shell, a water inlet pipe installed at the top of the tank, a spray mechanism installed on the inner wall of the shell, and a liquid collection tank installed at the top of the shell. The patent utilizes a spray mechanism that allows water from the tank to be pumped out and sprayed through nozzles to clean the inner wall of the dust collector shell, ensuring its continued use. Furthermore, the patent incorporates an automatic pressurization mechanism that uses a motor to drive a cam, continuously pressurizing the water in the liquid collection tank, resulting in higher water pressure from the nozzles and improved cleaning of the dust collector shell.
[0004] However, the above-mentioned device is difficult to process multiple sintered plates at the same time during operation, and it is also difficult to load sintered plates quickly, which requires manual handling of heavy sintered plates and increases the workload. Therefore, a dust collector sintered plate cleaning device is proposed to solve the above-mentioned problems. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to provide a dust collector sintering plate cleaning device in view of the shortcomings of the prior art.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is: a dust collector sintering plate cleaning device, including a foundation, a steel frame fixedly connected to the top of the foundation, a partition fixedly connected to the top of the steel frame, an outer wall of the device fixedly connected to the surface of the steel frame, a transportation mechanism provided on the top of the foundation, a brushing mechanism provided on the top of the partition, and a blowing mechanism provided on the top of the foundation. The transportation mechanism includes: a transportation frame, guide wheels, a mounting plate, an electric hoist, a hoisting plate, a locking tongue, an inclined slider, and a track. The track is fixedly connected to the top of the foundation, and the guide wheels are arranged on the surface of the track. The transport frame has guide wheels rotatably connected to its bottom. The mounting plate is installed on the inner wall of the transport frame, and a dust collector sintering plate is located at the bottom of the mounting plate. An electric hoist is installed on the top of the inner wall of the outer wall of the device. The hanging plate is fixedly connected to the bottom of the electric hoist. A locking tongue is slidably connected to both ends of the hanging plate, and an elastic element is provided between the end of the locking tongue and the hanging plate. A sludge storage tank is formed on the foundation surface. A groove is formed on the inner wall of the mounting plate, and a sloping slider is slidably connected to the groove on the inner wall of the mounting plate. During operation, the device lifts the dust collector sintering plate to be cleaned using an external hoisting mechanism in conjunction with the mounting plate. The sintered plates are loaded into a transport frame, which is then guided by guide wheels and rails into a device for purging, scraping, and separate fine washing to complete the cleaning process. The transport frame first loads multiple sintered plates, then transports them via rails. During loading and separate cleaning, specially designed lifting platforms are used for hoisting. During hoisting, an electric boom lowers the platform until the latch contacts the surface of the mounting plate. As the platform continues to descend, the latch is compressed back into the platform, compressing the elastic element at its end. Finally, the latch reaches the groove in the mounting plate, where it is released from obstruction and ejected by the force of the elastic element's return. After docking is completed in the mounting plate and loading is finished, the electric boom moves down and is placed stably on the sintering plate. The electric boom continues to move down until the locking tongue contacts the inclined slider. The locking tongue is squeezed back into the lifting plate by the inclined slider and the elastic element at its end is compressed. When the locking tongue reaches the bottom inclined surface of the inclined slider, it loses its obstruction and is ejected by the force of the elastic element and locks on the bottom inclined surface of the inclined slider. The electric boom moves up and the locking tongue pushes the inclined slider to rise together until the inclined slider contacts the top of the groove of the mounting plate and is blocked. The locking tongue is squeezed back by the inclined surface at the bottom of the inclined slider. As the electric boom moves up, the lifting plate is disassembled.
[0007] Preferably, the scrubbing mechanism includes: a connecting frame, a roller brush, and a spray column. The connecting frame is fixedly connected to the top of the partition, the roller brush is rotatably connected to the inner wall of the connecting frame, and the roller brush is driven by an external motor. The spray column is fixedly connected to the top of the partition. The scrubbing mechanism also includes: a connecting shaft, a friction wheel, a scraper frame, and a winding reel. The connecting shaft is rotatably connected to the top of the transport vehicle frame via a bearing frame. The friction wheel is fixedly connected to the circumferential surface of the connecting shaft. The scraper frame is slidably connected to the inner wall of the transport vehicle frame. The winding reel is fixedly connected to the circumferential surface of the connecting shaft, and a steel wire rope is wound on the winding reel. The other end of the steel wire rope wound on the winding reel is fixedly connected to the top of the scraper frame. A water mist nozzle is provided at one end of the spray column near the roller brush. The friction wheel is located at... On the loading trajectory, after multiple sintered plates are loaded onto the transport vehicle frame and reach the designated position, the electric boom rises to lift the sintered plates. During this process, the motor outside the connecting frame starts, driving the roller brush to rotate. At the same time, the spray column sprays water mist and cleaning fluid, and as the sintered plates rise, their surfaces are finely cleaned. As the electric boom lifts the sintered plates through the lifting plate, the sintered plates will come into contact with the friction wheel during the ascent. As the sintered plates rise, the friction wheel rotates, which drives the connecting shaft to rotate. The rotating connecting shaft drives the winding reel to rotate, and the winding reel rotates to wind up the wire rope. As the wire rope winds up, the scraper frame is lifted by the wire rope. The rising scraper frame scrapes off the hardened and accumulated filter material on the upper surface of the sintered plates. The scraped-off material falls directly into the sludge collection tank on the foundation surface for collection.
[0008] Preferably, the purging mechanism includes: a mounting frame, a liquid outlet tank, an air pipe, and a sliding frame. The mounting frame is fixedly connected to the top of the foundation, the liquid outlet tank is located on the foundation surface and communicates with a sludge storage tank located on the foundation surface, the sliding frame is slidably connected to the surface of the mounting frame, and the air pipe is fixedly connected to one end of the sliding frame near the track. The purging mechanism also includes: a threaded rod, a nozzle, and a liquid distribution plate. The threaded rod is movably connected to the inner wall of the sliding frame, and a servo motor is installed at the bottom of the threaded rod to drive it. The nozzle is fixedly connected to the circumferential surface of the air pipe, and the liquid distribution plate is fixedly connected to the inner wall of the outer wall of the device away from the mounting frame. The partition plate has a liquid outlet at the liquid distribution plate, and the liquid outlet tank is located at the bottom of the liquid distribution plate. During the cleaning process, the nozzle simultaneously opens, and the high-pressure air in the air pipe is sprayed through the nozzle into the gaps between the sintered plates. During the purging process, the servo motor at the bottom of the mounting frame starts and drives the threaded rod to rotate. The rotation of the threaded rod causes the sliding frame to move up and down, expanding the spray range of the nozzle. After the sintered plate that has been individually cleaned is finished, it falls back to the transport vehicle frame. The high-speed airflow from the nozzle can also quickly dry it, preventing moisture residue from causing dust to re-cause and block the micropores on the surface of the sintered plate. The wastewater flowing out during the cleaning process at the top of the partition plate will flow down to the surface of the liquid distribution plate through the water outlet on the surface of the partition plate. It will form a dispersed water curtain through the multi-stage liquid distribution plate. The high-pressure air sprayed from the nozzle carries the dust scraped off by the scraper frame and crashes into the water curtain. The dust is absorbed by the water curtain and flows into the liquid outlet tank, and is then collected in the sludge storage tank opened on the foundation surface for temporary storage, which is convenient for cleaning during subsequent equipment maintenance. This effectively reduces the dust concentration inside the equipment during operation and reduces the overall maintenance cost of the equipment.
[0009] The present invention, by adopting the above technical solution, can bring the following beneficial effects: 1. This dust collector sintered plate cleaning device is easy for workers to operate, avoiding damage to the heavy sintered plates. While processing one truckload of sintered plates, another truckload can be loaded from the initial position, achieving parallel operation, maximizing equipment utilization, and shortening the overall cleaning cycle. The device achieves automatic quick-release function through the cooperation between the lifting plate, locking tongue, and mounting plate. The quick-release function of the lifting plate reduces the need and risk of personnel climbing to heights. Compared with traditional lifting tools that require workers to manually pass the hook through the lifting hole or lug of the sintered plate, it significantly improves operating efficiency and enhances operational safety.
[0010] 2. The dust collector's sintered plate cleaning device ensures that there is enough space in front of and behind each plate to be cleaned by the roller brush. It also ensures that the cleaning liquid flow sprayed by the roller brush and the spray column can fully act on every groove, covering the entire surface and internal micropores, greatly improving the cleaning effect. It can also effectively reduce the load of subsequent cleaning through the scraper frame, prevent the dry and caking dust accumulated on the surface of the sintered plate from affecting the subsequent cleaning time, and improve the quality of the final cleaning.
[0011] 3. The dust collector sintered plate cleaning device can significantly improve pretreatment efficiency. The airflow impact can help soften or loosen some edge clumps, making the scraping process easier and faster, greatly shortening the operation time and improving the overall efficiency of the device. It can also quickly dry the cleaned sintered plate to prevent moisture residue from causing dust to re-clump and block the micropores on the surface of the sintered plate.
[0012] 4. The dust collector sintering plate cleaning device can facilitate cleaning during subsequent equipment maintenance. The liquid separation plate can also effectively reduce the dust concentration inside the equipment during operation, thereby reducing the overall maintenance cost of the equipment. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a cross-sectional view of the overall structure of the present invention; Figure 3 This is a partial schematic diagram of the transportation mechanism of the present invention; Figure 4 This is a partial enlarged view of the transportation mechanism of the present invention; Figure 5 This is a partial schematic diagram of the brushing mechanism of the present invention; Figure 6 For the present invention Figure 3 Enlarged view of the structure at point A in the middle; Figure 7 This is a schematic diagram of the scraper frame structure of the present invention; Figure 8 This is a schematic diagram of the purging mechanism of the present invention; Figure 9 This is an enlarged view of the mounting bracket structure of the present invention; Figure 10 This is a schematic diagram showing the installation position of the liquid separator structure of the present invention; Figure 11 This is an enlarged view of the liquid spray column structure of the present invention.
[0014] In the diagram: 1. Foundation; 2. Steel frame; 3. Transportation mechanism; 301. Transport vehicle frame; 302. Guide wheel; 303. Mounting plate; 304. Electric hoist; 305. Hanging plate; 306. Locking tongue; 307. Inclined slider; 308. Track; 4. Brushing mechanism; 401. Connecting frame; 402. Roller brush; 403. Spray column; 404. Connecting shaft; 405. Friction wheel; 406. Scraper frame; 407. Winding reel; 5. Blowing mechanism; 501. Mounting frame; 502. Liquid outlet tank; 503. Air pipe; 504. Threaded rod; 505. Nozzle; 506. Distributor plate; 507. Sliding frame; 6. External wall of the device; 7. Partition plate. Detailed Implementation
[0015] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0016] Please see Figures 1-11 One embodiment of the present invention is: a dust collector sintering plate cleaning device, comprising a foundation 1, a steel frame 2 fixedly connected to the top of the foundation 1, a partition 7 fixedly connected to the top of the steel frame 2, an outer wall 6 fixedly connected to the surface of the steel frame 2, a transport mechanism 3 provided on the top of the foundation 1, a brushing mechanism 4 provided on the top of the partition 7, and a blowing mechanism 5 provided on the top of the foundation 1. The transport mechanism 3 includes: a transport frame 301, guide wheels 302, a mounting plate 303, an electric hoist 304, and a lifting mechanism. Plate 305, locking tongue 306, inclined slider 307, and track 308 are included. Track 308 is fixedly connected to the top of foundation 1. Guide wheel 302 is set on the surface of track 308. Guide wheel 302 is rotatably connected to the bottom of transport frame 301. Mounting plate 303 is installed on the inner wall of transport frame 301. Dust collector sintering plate is set at the bottom of mounting plate 303. Electric hoist 304 is installed on the top of the inner wall of outer wall 6 of the device. Hanging plate 305 is fixedly connected to the bottom of electric hoist 304. Locking tongue 306... The sliding connection is located at both ends of the hanging plate 305. An elastic element is provided between the end of the locking tongue 306 and the hanging plate 305. A sludge storage tank is provided on the surface of the foundation 1. A groove is provided on the inner wall of the mounting plate 303, and the inclined slider 307 is slidably connected to the groove on the inner wall of the mounting plate 303. This facilitates worker operation and avoids damage to the heavy sintered plates. When the device is processing one truckload of sintered plates, another truckload can be loaded at the initial position to achieve parallel operation, maximize equipment utilization, and shorten the overall cleaning cycle. The automatic quick-release function is achieved through the cooperation between the hanging plate 305, the locking tongue 306, and the mounting plate 303. When it is necessary to load the sintered plates onto the higher transport frame 301, the traditional method requires workers to step on the platform and operate manually, which is time-consuming and has low safety. However, the hanging plate 305 with quick-release function reduces the need and risk of workers climbing to heights. Compared with traditional lifting tools that require workers to manually pass the hook through the lifting hole or lug of the sintered plate, it significantly improves the operation efficiency and enhances the operation safety.
[0017] Working principle: The device lifts the sintered plates from the dust collector to be cleaned onto the transport frame 301 using an external hoisting mechanism and mounting plate 303. Then, the transport frame 301 is sent into the device via guide wheels 302 and rails 308 for blowing, scraping, and separate fine washing to complete the cleaning of the sintered plates. The transport frame 301 is loaded with multiple sintered plates first, and then transported via rails 308, which facilitates worker operation and avoids damage to the heavy sintered plates. While the device is processing one load of sintered plates, another load can be loaded at the initial position, realizing parallel operation, maximizing equipment utilization, and shortening the overall cleaning cycle.
[0018] During loading and separate cleaning of the sintered plate, it is lifted using a specially designed lifting plate 305. During lifting, the electric lifting rod 304 moves downwards, causing the lifting plate 305 to fall until the locking tongue 306 contacts the surface of the mounting plate 303. As the lifting plate 305 continues to descend, the locking tongue 306 is compressed back into the lifting plate 305, compressing the elastic element at its end. This continues until the locking tongue 306 reaches the groove in the mounting plate 303, at which point it loses its resistance and is ejected by the force of the elastic element's return. The locking tongue 306 then locks into the mounting plate 303, completing the connection. After loading is complete, the electric lifting rod 304 moves downwards until the sintered plate is placed stably. The electric lifting rod 304 continues to descend until the locking tongue 306 contacts the inclined slider 307. The locking tongue 306 is compressed back into the lifting plate 305 by the inclined slider 307, compressing the elastic element at its end. This continues until the locking tongue 306 reaches the bottom inclined surface of the inclined slider 307, at which point it loses its resistance. The force of the elastic element causing the block to pop out and lock onto the bottom inclined surface of the inclined slider 307 causes the electric boom 304 to move upward. The locking tongue 306 pushes the inclined slider 307 upward together until the inclined slider 307 contacts the top of the groove of the mounting plate 303 and is blocked. The locking tongue 306 is squeezed back by the inclined surface at the bottom of the inclined slider 307. As the electric boom 304 moves upward, the lifting plate 305 is disassembled. The automatic quick-release function is achieved through the cooperation between the lifting plate 305, the locking tongue 306, and the mounting plate 303. When it is necessary to install the sintered plate onto the higher transport frame 301, the traditional method requires workers to step on the platform and operate manually, which is time-consuming and has low safety. However, the lifting plate 305 with quick-release function reduces the need and risk of workers climbing to heights. Compared with traditional lifting tools that require workers to manually pass the hook through the lifting hole or lug of the sintered plate, it significantly improves the operation efficiency and enhances the operation safety.
[0019] Please see Figures 1-11Based on the above embodiments, in another embodiment of the present invention, the scrubbing mechanism 4 includes: a connecting frame 401, a roller brush 402, and a spray column 403. The connecting frame 401 is fixedly connected to the top of the partition 7, the roller brush 402 is rotatably connected to the inner wall of the connecting frame 401, and the roller brush 402 is driven by an external motor of the connecting frame 401. The spray column 403 is fixedly connected to the top of the partition 7. The scrubbing mechanism 4 also includes: a connecting shaft 404, a friction wheel 405, a scraper frame 406, and a winding reel 407. The connecting shaft 404 is rotatably connected to the top of the transport frame 301 through a bearing frame. The friction wheel 405 is fixedly connected to the circumferential surface of the connecting shaft 404. The scraper frame 406 is slidably connected to the inner wall of the transport frame 301. The winding reel 407 is fixedly connected to the top of the transport frame 301. Connected to the circumference of the connecting shaft 404, a wire rope is wound on the reel 407, and the other end of the wire rope wound on the reel 407 is fixedly connected to the top of the scraper frame 406. A water mist nozzle is provided at one end of the spray column 403 near the roller brush 402. The friction wheel 405 is located on the movement trajectory of the mounting plate 303, which can ensure that there is enough space in front and behind each plate to be cleaned by the roller brush 402. It also ensures that the cleaning liquid flow sprayed by the roller brush 402 and the spray column 403 can fully act on each groove, covering the entire surface and internal micropores, greatly improving the cleaning effect. It can also effectively reduce the load of subsequent cleaning through the scraper frame 406, prevent the dry and caking dust accumulated on the surface of the sintered plate from affecting the subsequent cleaning time, and improve the quality of the final cleaning.
[0020] The purging mechanism 5 includes: a mounting frame 501, a liquid outlet 502, an air pipe 503, and a sliding frame 507. The mounting frame 501 is fixedly connected to the top of the foundation 1. The liquid outlet 502 is formed on the surface of the foundation 1 and is connected to a sludge storage tank formed on the surface of the foundation 1. The air pipe 503 is slidably connected to the surface of the mounting frame 501. The air pipe 503 is fixedly connected to one end of the sliding frame 507 near the track 308. The purging mechanism 5 also includes: a threaded rod 504, a nozzle 505, and a liquid distribution plate 506. The threaded rod 504 is movably connected to the inner wall of the sliding frame 507. A servo motor is provided at the bottom of the threaded rod 504 to drive the threaded rod 504. The nozzle 505 is fixedly connected to the circumferential surface of the air pipe 503. The liquid distribution plate 506 is fixedly connected to the inner wall of the outer wall 6 of the device at the end away from the mounting bracket 501. The partition plate 7 is located at the liquid distribution plate 506 and has a liquid outlet. The liquid outlet trough 502 is located at the bottom of the liquid distribution plate 506. This can significantly improve the pretreatment efficiency. The airflow impact can help soften or loosen some edge clumps, making the scraping process easier and faster, greatly shortening the operation time and improving the overall efficiency of the device. It can also quickly dry the sintered plate after cleaning to prevent moisture residue from causing dust to re-clump and block the micropores on the surface of the sintered plate, which is convenient for cleaning during subsequent device maintenance. The liquid distribution plate 506 can also effectively reduce the dust concentration inside the device during operation and reduce the overall maintenance cost of the device.
[0021] Working principle: After multiple sintered plates are loaded onto the transport frame 301 and reach the designated position, the electric boom 304 rises to lift the sintered plates. During this process, the motor outside the connecting frame 401 starts, driving the roller brush 402 to rotate. At the same time, the spray column 403 sprays water mist and cleaning fluid. As the sintered plates rise, their surfaces are thoroughly cleaned, ensuring that there is enough space in front of and behind each plate for the roller brush 402 to clean it. This also ensures that the cleaning fluid sprayed by the roller brush 402 and the spray column 403 can fully act on every groove, covering the entire surface and internal micropores, greatly improving the cleaning effect. During the process of the electric hoist 304 lifting the sintered plate via the lifting plate 305, the sintered plate comes into contact with the friction wheel 405 as it rises. As the sintered plate rises, the friction wheel 405 rotates, driving the connecting shaft 404 to rotate. The connecting shaft 404 then drives the winding reel 407 to rotate, which in turn winds up the wire rope. As the wire rope winds up, the scraper frame 406 is lifted by the wire rope, scraping off the hardened and accumulated filter material on the upper surface of the sintered plate. This effectively reduces the load on subsequent cleaning processes, prevents the accumulated dry and hardened dust on the sintered plate surface from affecting the subsequent cleaning time, and improves the final cleaning quality. The scraped-off material falls directly into the sludge collection tank on the surface of the foundation 1 for collection.
[0022] During the cleaning process, the nozzle 505 simultaneously opens, and the high-pressure air in the air pipe 503 is sprayed through the nozzle 505 into the gaps between the sintered plates for purging. During the purging process, the servo motor at the bottom of the mounting frame 501 starts and drives the threaded rod 504 to rotate. The rotation of the threaded rod 504 drives the sliding frame 507 to move up and down. The up and down movement of the sliding frame 507 expands the spray range of the nozzle 505. Combined with the scraper frame 406, the pretreatment efficiency is significantly improved. The airflow impact can help soften or loosen some edge clumps, making the scraping process easier and faster, greatly shortening the operation time and improving the overall efficiency of the device. After the sintered plates that have been finely cleaned are completed, they fall back onto the transport vehicle frame 30. 1. The high-speed airflow from nozzle 505 can quickly dry the dust, preventing moisture residue from causing dust to re-crystallize and clog the micropores on the surface of the sintered plate. During the cleaning process on the upper part of the partition plate 7, the wastewater flowing out will flow down through the outlet on the surface of the partition plate 7 to the surface of the liquid distribution plate 506. The liquid distribution plate 506 diffuses through multiple stages to form a dispersed water curtain. The high-pressure air from nozzle 505 carries the dust scraped off by scraper frame 406 and crashes into the water curtain. The dust is absorbed by the water curtain and flows into the liquid outlet tank 502, and is then collected in the sludge storage tank opened on the surface of the foundation 1 for temporary storage, which is convenient for cleaning during subsequent equipment maintenance. This effectively reduces the dust concentration inside the equipment during operation and reduces the overall maintenance cost of the equipment.
[0023] This invention provides a dust collector sintered plate cleaning device. Many methods and approaches exist for implementing this technical solution; the above description is merely a preferred embodiment of the invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this invention, and these improvements and modifications should also be considered within the scope of protection of this invention. All components not explicitly stated in this embodiment can be implemented using existing technology.
Claims
1. A dust collector sintered plate cleaning device, comprising a foundation (1), characterized in that: A steel frame (2) is fixedly connected to the top of the foundation (1), a partition (7) is fixedly connected to the top of the steel frame (2), an outer wall (6) is fixedly connected to the surface of the steel frame (2), a transportation mechanism (3) is provided on the top of the foundation (1), a brushing mechanism (4) is provided on the top of the partition (7), and a blowing mechanism (5) is provided on the top of the foundation (1). The transport mechanism (3) includes: a transport frame (301), guide wheels (302), mounting plate (303), electric boom (304), hanging plate (305), locking tongue (306), inclined slider (307), and track (308). The track (308) is fixedly connected to the top of the foundation (1). The guide wheels (302) are set on the surface of the track (308). The bottom of the transport frame (301) is rotatably connected to the guide wheels (302). The mounting plate (303) is installed on the inner wall of the transport frame (301). The bottom of the mounting plate (303) is provided with a dust collector sintering plate. The electric boom (304) is installed on the top of the inner wall of the outer wall (6) of the device. The hanging plate (305) is fixedly connected to the bottom of the electric boom (304). The locking tongue (306) is slidably connected to the front and rear ends of the hanging plate (305).
2. The dust collector sintered plate cleaning device according to claim 1, characterized in that: An elastic element is provided between the end of the locking tongue (306) and the hanging plate (305), a sludge storage tank is provided on the surface of the foundation (1), a groove is provided on the inner wall of the mounting plate (303), and the inclined slider (307) is slidably connected to the groove on the inner wall of the mounting plate (303).
3. The dust collector sintered plate cleaning device according to claim 2, characterized in that: The brushing mechanism (4) includes: a connecting frame (401), a roller brush (402), and a spray column (403). The connecting frame (401) is fixedly connected to the top of the partition (7). The roller brush (402) is rotatably connected to the inner wall of the connecting frame (401) and is driven by an external motor of the connecting frame (401). The spray column (403) is fixedly connected to the top of the partition (7).
4. The dust collector sintered plate cleaning device according to claim 3, characterized in that: The brushing mechanism (4) further includes: a connecting shaft (404), a friction wheel (405), a scraper frame (406), and a winding reel (407). The connecting shaft (404) is rotatably connected to the top of the transport frame (301) via a bearing frame. The friction wheel (405) is fixedly connected to the circumferential surface of the connecting shaft (404). The scraper frame (406) is slidably connected to the inner wall of the transport frame (301). The winding reel (407) is fixedly connected to the circumferential surface of the connecting shaft (404). The winding reel (407) is wound with a steel wire rope, and the other end of the steel wire rope wound on the winding reel (407) is fixedly connected to the top of the scraper frame (406).
5. A dust collector sintered plate cleaning device according to claim 4, characterized in that: The spray column (403) is provided with a water mist nozzle at one end near the roller brush (402), and the friction wheel (405) is located on the movement trajectory of the mounting plate (303).
6. The dust collector sintered plate cleaning device according to claim 5, characterized in that: The purging mechanism (5) includes: a mounting frame (501), a liquid outlet tank (502), an air pipe (503), and a sliding frame (507). The mounting frame (501) is fixedly connected to the top of the foundation (1). The liquid outlet tank (502) is opened on the surface of the foundation (1) and is connected to a sludge storage tank opened on the surface of the foundation (1). The sliding frame is slidably connected to the surface of the mounting frame (501). The air pipe (503) is fixedly connected to one end of the sliding frame (507) near the track (308).
7. A dust collector sintered plate cleaning device according to claim 6, characterized in that: The purging mechanism (5) further includes: a threaded rod (504), a nozzle (505), and a liquid distribution plate (506). The threaded rod (504) is movably connected to the inner wall of the sliding frame (507). A servo motor is provided at the bottom of the threaded rod (504) to drive the threaded rod (504). The nozzle (505) is fixedly connected to the circumferential surface of the air pipe (503). The liquid distribution plate (506) is fixedly connected to the inner wall of the outer wall (6) of the device at the end away from the mounting frame (501).
8. A dust collector sintered plate cleaning device according to claim 7, characterized in that: The partition (7) has a liquid outlet at the liquid distribution plate (506), and the liquid outlet trough (502) is located at the bottom of the liquid distribution plate (506).
Citation Information
Patent Citations
Cleaning device for sintered plate of dust remover
CN221966214U