A dust removal device for electric power equipment
By combining the synchronous dust removal mechanism and the filtering mechanism, the problems of complicated dust removal operation and low cleaning efficiency of power equipment are solved, automatic dust removal and efficient dust sedimentation are achieved, and cleaning costs are reduced.
Patent Information
- Application Number
- CN202510824024.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2045-06-19
AI Technical Summary
Existing dust removal methods for power equipment are cumbersome to operate, have low cleaning efficiency, and easily stir up dust, increasing cleaning costs.
A synchronous dust removal mechanism is installed on the frame of the distribution cabinet using magnetic adsorption, and is sealed with a rotating sealer. A filtering mechanism is equipped to collect dust by settling. The water level is used to control water replenishment to achieve automatic dust removal and dust sedimentation.
It realizes automatic dust removal, reduces dust, improves cleaning efficiency, avoids secondary pollution and reduces cleaning costs.
Smart Images

Figure CN120325620B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of equipment dust removal, and in particular relates to a dust removal device for electric power equipment. Background Art
[0002] Power equipment refers to various devices used for power generation, transmission, distribution and consumption, including power generation equipment, transmission equipment, distribution equipment, power consumption equipment, and protection and control equipment. They are widely used in industry, agriculture and daily life, and are the basis for the operation of modern society.
[0003] Among them, the distribution cabinet, as the core hub of power equipment, is usually installed in industrial areas, construction sites or dusty environments. Dust is more likely to enter the cabinet and adhere to electrical components. In order to avoid dust accumulation, corrosion of internal circuits, and impact on heat dissipation, manual cleaning of the interior is required in a timely manner. High-pressure air is used for blowing, and additional vacuuming equipment is required for dust collection. However, this method is not only cumbersome to operate and has low cleaning efficiency, but also stirs up dust, requiring additional cleaning of the ground or equipment surface, increasing overall cleaning costs. Summary of the Invention
[0004] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides a dust removal device for electric power equipment to solve the technical problems raised in the background technology.
[0005] The technical solution adopted by the present invention is as follows: The present invention provides a dust removal device for power equipment, including a synchronous dust removal mechanism, an air supply mechanism, a filtering mechanism and a transfer platform. The synchronous dust removal mechanism is placed on the top layer of the transfer platform, the air supply mechanism is arranged on the lower layer of the transfer platform, and the filtering mechanism is arranged on the lower layer of the transfer platform. The air supply mechanism is a group of air pumps that provide pressurized airflow for the synchronous dust removal mechanism.
[0006] Furthermore, the synchronous dust removal mechanism includes a dust removal carrying cabin, and also includes a wind pressure channel, a sealed docking cabin, an air supply channel and a resistance sliding system. The wind pressure channel is arranged on the side wall of the dust removal carrying cabin, the sealed docking cabin is fixedly connected to the dust removal carrying cabin, the air supply channel is rotatably connected to the dust removal carrying cabin, and the resistance sliding system is arranged on the side wall of the dust removal carrying cabin.
[0007] Furthermore, a sealing baffle rod is symmetrically provided for sliding in the sealed docking cabin, and sealing springs are connected to both ends of the sealing baffle rod, and the sealing springs are also connected to the interior of the sealed docking cabin. The sealing spring pushes the sealing baffle rod in the middle of the sealed docking cabin, and a sealing folding plate is connected to the middle of the sealing baffle rod, and the sealing folding plate is also connected to the frame of the sealed docking cabin. The sealing folding plate is a foldable metal plate that can be folded and deformed as the sealing baffle rod slides.
[0008] Furthermore, the resistance sliding system includes a sliding frame, a sliding shaft, a sliding wheel, a rubber track, a sliding base, a support spring, a resistance magnet and a connecting bridge arm. The sliding frame is arranged on the side wall of the dust removal cabin, the sliding shaft is arranged on the sliding frame, the sliding wheel is rotatably arranged on the sliding shaft, the rubber track is sleeved on the outside of the sliding wheel, the connecting bridge arm is fixed to the sliding shaft, the sliding base is slidably arranged on the connecting bridge arm, the support spring is arranged between the sliding base and the connecting bridge arm, and the resistance magnet is fixed to the sliding base. When the synchronous dust removal mechanism is installed, the resistance magnet of the resistance sliding system is used to adsorb the outer shell of the distribution cabinet. At the same time, the resistance magnet can provide positive pressure to the rubber track to control the speed at which the resistance sliding system slides downward.
[0009] Furthermore, a rotary sealer that is symmetrical in top and bottom is provided in the dust removal carrying cabin, and the rotary sealer includes a sealing cabin, a sealing shaft, a bearing, a sleeve, a sealing film, a magnetic iron plate and a torsion spring. The sealing cabin is arranged in the dust removal carrying cabin, and the sealing shaft is arranged in the sealing cabin. The sleeve is rotatably connected to the sealing shaft through the bearing, the sealing film is wrapped around the outside of the sleeve, the magnetic iron plate is connected to the sealing film, and the sealing film is also connected to the sleeve. One end of the torsion spring is connected to the inner wall of the sleeve, and the other end of the torsion spring is connected to the sealing shaft. By pulling the magnetic iron plate, the magnetic iron plate is adsorbed to the top frame of the distribution cabinet (another set of rotary sealers adsorbs the bottom frame), and the sealing film is pulled out. The sealing film is used to isolate the distribution cabinet from the outside world, so as to avoid dust during dust removal.
[0010] Furthermore, an air flow baffle is provided in the air delivery channel, and an air flow impeller is rotatably provided at the opening of the air delivery channel. The air flow impeller can form turbulence in the inner direction of the air delivery channel, thereby assisting in guiding the dust-laden air through the two sets of air delivery channels into the dust removal cabin.
[0011] Furthermore, a worm gear shaft is connected to the side wall of the air transmission channel, an adjusting worm wheel is provided on the worm gear shaft, an adjusting worm is rotatably provided on the dust removal carrying cabin, the adjusting worm is meshed with the adjusting worm wheel, and an adjusting arm is provided at the upper end of the adjusting worm, and the angle of the air transmission channel can be adjusted by rotating the adjusting arm.
[0012] Furthermore, an exhaust port is provided at the rear of the dust removal cabin.
[0013] Furthermore, the filtering mechanism includes a filtering channel, a filtering cabin, an exhaust duct, a guide frame and a Venturi pipe. The filtering cabin is installed on the transfer platform, the exhaust duct is arranged through the top of the filtering cabin, the guide frame is arranged in the filtering cabin, the Venturi pipe is connected to the side wall of the filtering cabin, one end of the filtering channel is connected to the Venturi pipe, and the other end of the filtering channel is connected to the exhaust port. Water is contained inside the filtering cabin for collecting dust.
[0014] Furthermore, the Venturi pipe includes a contraction tube, a throat tube and an expansion tube, the throat tube is located between the contraction tube and the expansion tube, the expansion tube is connected to the filter cabin, the contraction tube is connected to the filter channel, the lower end of the throat tube is connected to a water pumping pipe, and the water pumping pipe is connected to the interior of the filter cabin. When the airflow passes through the throat tube position, the airflow velocity increases, the pressure at the throat tube position decreases, and the water inside the filter cabin is pumped out through the water pumping pipe to soak the dust, so that it can be gathered in a smaller volume and thus separated from the air.
[0015] Furthermore, a hollow float rod is slidingly provided in the filter cabin, a fluid replenishment permanent magnet is provided on the top of the hollow float rod, and a float is provided at the bottom of the hollow float rod. The water level inside the filter cabin will directly affect the height of the float and drive the horizontal height of the fluid replenishment permanent magnet through the hollow float rod.
[0016] Furthermore, a water bottle rack is provided on the side wall of the filter cabin, a water supply bottle is provided on the water bottle rack, the water supply bottle is connected to the filter cabin through a water supply pipe, a water stop valve is connected to the water supply pipe, and the water stop valve is located on the side wall of the filter cabin.
[0017] Furthermore, a closing slider is provided for sliding inside the water stop valve, and a closing spring is provided between the closing slider and the inner wall of the water stop valve. The fluid replenishment permanent magnet can adsorb the closing slider to cut off the water replenishment pipe. In addition, the buoyancy of the float needs to be greater than the magnetic attraction force of the fluid replenishment permanent magnet on the closing slider, and the magnetic attraction force of the fluid replenishment permanent magnet on the closing slider needs to be greater than the elastic force of the closing spring.
[0018] Furthermore, the air outlet end of the air supply mechanism is connected to an air supply pipe, and the air supply pipe is also connected to the wind pressure channel.
[0019] The beneficial effects of the dust removal device for electric power equipment provided by this solution are as follows:
[0020] (1) In order to reduce dust and improve cleaning efficiency, a synchronous dust removal mechanism is set up and installed on the frame of the distribution cabinet by magnetic adsorption. The synchronous dust removal mechanism uses its own gravity to perform dust removal operations from top to bottom. At the same time, a rotating sealer is used to seal the frame to suppress dust and collect dust in time, achieving the technical effect of automatic dust removal of the distribution cabinet, solving the technical problems of cumbersome operation and low cleaning efficiency of traditional dust removal methods;
[0021] (2) Set up a filtering mechanism to collect dust in the distribution cabinet to avoid secondary pollution;
[0022] (3) A rotating sealer is provided to seal the frame of the distribution cabinet, thereby suppressing dust;
[0023] (4) In order to prevent the venturi pipe from consuming too much water when the filter mechanism collects dust, the height of the water surface in the filter chamber is used to control the height of the float, thereby controlling the adsorption relationship between the hollow float rod and the closed slider to open and close the water supply pipe, and using the water supply bottle to replenish water in the filter chamber, thereby ensuring stable dust infiltration and improving dust settling efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic structural diagram of a dust removal device for electric power equipment proposed by the present invention;
[0025] Figure 2 It is a structural diagram of the synchronous dust removal mechanism;
[0026] Figure 3 This is a schematic diagram of the internal structure of the sealed docking cabin;
[0027] Figure 4 It is a structural diagram of the resistance sliding system;
[0028] Figure 5 Schematic diagram of the internal structure of the resistance sliding system;
[0029] Figure 6 It is a partial structural diagram of the rotary sealer;
[0030] Figure 7 is a connection diagram of the sealing membrane;
[0031] Figure 8 Schematic diagram of the internal structure of the rotary sealer;
[0032] Figure 9 This is a schematic diagram of the installation of the rotary sealer;
[0033] Figure 10 Schematic diagram of the transmission relationship of the gas transmission channel;
[0034] Figure 11 Schematic diagram of the internal structure of the gas transmission channel;
[0035] Figure 12 It is a partial structural diagram of the filtering mechanism;
[0036] Figure 13 Schematic diagram of the internal structure of the filtering mechanism;
[0037] Figure 14 Schematic diagram of the internal structure of the water stop valve.
[0038] Among them, 1. Synchronous dust removal mechanism, 2. Air supply mechanism, 3. Filter mechanism, 4. Transfer platform, 101. Dust removal cabin, 102. Wind pressure channel, 103. Sealed docking cabin, 104. Air supply channel, 105. Resistance sliding system, 106. Sealing spring, 108. Sealing folding plate, 110. Sealing lever, 112. Sliding frame, 113. Sliding shaft, 114. Sliding wheel, 115. Rubber track, 116. Sliding base, 117. Support spring, 118. Resistance magnet, 119. Connecting bridge arm, 120. Rotating sealer, 121. Sealed cabin, 122. Sealed rotating shaft, 123. Bearing, 124. Sleeve, 125. Sealing membrane, 126. Magnetic attraction Iron plate, 127, torsion spring, 128, air flow impeller, 129, air flow baffle, 130, adjusting worm, 131, worm gear shaft, 132, adjusting worm gear, 133, adjusting arm, 134, exhaust port, 201, air supply pipe, 301, filter channel, 302, filter cabin, 303, exhaust pipe, 304, guide frame, 306, Venturi pipe, 307, water suction pipe, 308, contraction tube, 309, throat, 310, expansion tube, 311, hollow float rod, 312, float, 313, liquid replenishment permanent magnet, 314, water replenishment bottle, 315, water bottle holder, 316, water stop valve, 317, water replenishment pipe, 318, closing spring, 319, closing slider.
[0039] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only 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 ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0041] In the description of the present invention, it should be understood that terms such as "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside" and "outside" indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limiting the present invention.
[0042] like Figures 1-14As shown, the present invention provides a dust removal device for electric power equipment, including a synchronous dust removal mechanism 1, an air supply mechanism 2, a filtering mechanism 3 and a transfer platform 4, the synchronous dust removal mechanism 1 is placed on the top layer of the transfer platform 4, the air supply mechanism 2 is arranged on the lower layer of the transfer platform 4, and the filtering mechanism 3 is arranged on the lower layer of the transfer platform 4.
[0043] Among them, the synchronous dust removal mechanism 1 includes a dust removal cabin 101, and also includes a wind pressure channel 102, a sealed docking cabin 103, an air supply channel 104 and a resistance sliding system 105. The wind pressure channel 102 is arranged on the side wall of the dust removal cabin 101, the sealed docking cabin 103 is fixedly connected to the dust removal cabin 101, the air supply channel 104 is rotatably connected to the dust removal cabin 101, and the resistance sliding system 105 is arranged on the side wall of the dust removal cabin 101; a sealing baffle 110 symmetrically arranged in the upper and lower sliding of the sealed docking cabin 103 is provided, and sealing springs 106 are connected to both ends of the sealing baffle 110. The sealing spring 106 is connected to the interior of the sealed docking cabin 103 at the same time, and the sealing spring 106 pushes the sealing baffle 110 in a sealing direction. In the middle of the docking cabin 103, the middle of the sealing baffle 110 is connected with a sealing folding plate 108, and the sealing folding plate 108 is also connected to the frame of the sealed docking cabin 103; the resistance sliding system 105 includes a sliding frame 112, a sliding shaft 113, a sliding wheel 114, a rubber track 115, a sliding base 116, a support spring 117, a resistance magnet 118 and a connecting bridge arm 119. The sliding frame 112 is arranged on the side wall of the dust removal cabin 101, the sliding shaft 113 is arranged on the sliding frame 112, the sliding wheel 114 is rotatably arranged on the sliding shaft 113, the rubber track 115 is sleeved on the outside of the sliding wheel 114, the connecting bridge arm 119 is fixed to the sliding shaft 113, the sliding base 116 is slidably arranged on the connecting bridge arm 119, and the support spring The spring 117 is arranged between the sliding base 116 and the connecting bridge arm 119, and the resistance magnet 118 is fixedly connected to the sliding base 116; a rotary sealer 120 symmetrically arranged in the dust removal carrying cabin 101 is provided, and the rotary sealer 120 includes a sealing cabin 121, a sealing shaft 122, a bearing 123, a sleeve 124, a sealing film 125, a magnetic iron plate 126 and a torsion spring 127. The sealing cabin 121 is arranged in the dust removal carrying cabin 101, and the sealing shaft 122 is arranged in the sealing cabin 121. The sleeve 124 is rotatably connected to the sealing shaft 122 through the bearing 123, the sealing film 125 is wrapped around the outside of the sleeve 124, the magnetic iron plate 126 is connected to the sealing film 125, and the sealing film 125 is also connected to the sleeve 124. The torsion spring One end of 127 is connected to the inner wall of the sleeve 124, and the other end of the torsion spring 127 is connected to the sealing shaft 122; an air flow baffle 129 is provided in the air delivery channel 104, and an air flow impeller 128 is rotatably provided at the opening of the air delivery channel 104; a worm gear shaft 131 is connected to the side wall of the air delivery channel 104, and an adjusting worm gear 132 is provided on the worm gear shaft 131, and an adjusting worm 130 is rotatably provided on the dust removal cabin 101, and the adjusting worm 130 is meshed with the adjusting worm gear 132, and an adjusting rotating arm 133 is provided at the upper end of the adjusting worm 130; an exhaust port 134 is provided at the tail end of the dust removal cabin 101; the air outlet end of the air supply mechanism 2 is connected to the air supply pipe 201, and the air supply pipe 201 is also connected to the wind pressure channel 102.
[0044] The filter mechanism 3 includes a filter channel 301, a filter cabin 302, an exhaust pipe 303, a guide frame 304, and a Venturi pipe 306. The filter cabin 302 is installed on the transfer platform 4. The exhaust pipe 303 runs through the top of the filter cabin 302. The guide frame 304 is arranged in the filter cabin 302. The Venturi pipe 306 is connected to the side wall of the filter cabin 302. One end of the filter channel 301 is connected to the Venturi pipe 306, and the other end of the filter channel 301 is connected to the exhaust port 134. The Venturi pipe 306 includes a contraction tube 308, a throat pipe 309, and an expansion pipe 310. The throat pipe 309 is located between the contraction tube 308 and the expansion pipe 310. The expansion pipe 310 is connected to the filter cabin 302, and the contraction tube 308 is connected to the filter channel. 301, the lower end of the throat pipe 309 is connected to the water suction pipe 307, and the water suction pipe 307 is connected to the interior of the filter cabin 302; a hollow float rod 311 is slidingly provided in the filter cabin 302, and a liquid replenishment permanent magnet 313 is provided on the top of the hollow float rod 311, and a float 312 is provided at the bottom of the hollow float rod 311; a water bottle rack 315 is provided on the side wall of the filter cabin 302, and a water replenishment bottle 314 is provided on the water bottle rack 315. The water replenishment bottle 314 is connected to the filter cabin 302 through a water replenishment pipe 317, and the water replenishment pipe 317 is connected to a water stop valve 316, which is located on the side wall of the filter cabin 302; a closing slider 319 is slidingly provided in the water stop valve 316, and a closing spring 318 is provided between the closing slider 319 and the inner wall of the water stop valve 316.
[0045] During specific use, open the door of the power distribution cabinet and install the synchronous dust removal mechanism 1 first; during installation, start the resistance magnet 118, which is an electromagnet, and the magnetic force generated attracts the power distribution cabinet. The synchronous dust removal mechanism 1 uses the resistance sliding system 105 on both sides to be adsorbed on the power distribution cabinet. At the same time, the magnetic iron plates 126 located at the upper and lower ends of the dust removal carrying cabin 101 are elongated and adsorbed on the upper and lower ends of the power distribution cabinet. The magnetic iron plates 126 are permanent magnets and can be directly adsorbed on the power distribution cabinet. As the magnetic iron plates 126 are pulled, the sealing film 125 is pulled out of the sealing cabin 121. During the process of pulling out the sealing cabin 121, the sleeve 124 is pulled to rotate, and the sleeve 124 rotates to pull the torsion spring 127 to form The sealing film 125 can be tightened by the elastic force of the torsion spring 127, and the power distribution cabinet can be sealed by the sealing film 125; the dust removal operation is started, the air supply mechanism 2 is started, the air supply mechanism 2 sends out the air flow and enters the wind pressure channel 102 through the air supply pipe 201. After the air flow enters the wind pressure channel 102, it passes through the inner cavity of the wind pressure channel 102 and is discharged from the opening on the inner side wall. Due to Bernoulli's principle, the air flow rate at the opening of the wind pressure channel 102 increases, forming a negative pressure area, forming an air pressure difference with the atmospheric pressure, and because the air is a viscous fluid, a viscous shear force is formed, which drives the surrounding air to move together, and the external air is sucked into the dust removal carrying cabin 101 through the wind pressure channel 102. And it can obtain wind force higher than that generated by the air supply mechanism 2 of the same power, which is more energy-saving and has lower noise; the subsequent air flow continues to enter the air delivery channel 104 after passing through the dust removal cabin 101, and is discharged from the air delivery channel 104 to perform jet cleaning on the inside of the distribution cabinet, and the dust attached to the inside of the distribution cabinet is blown up and passes through the two air delivery channels 104 with the air flow, and is discharged from the dust removal cabin 101 through the exhaust port 134; the air flow mixed with dust enters the Venturi pipe 306 through the filter channel 301, and when the air flow passes through the throat 309 (middle) position of the Venturi pipe 306, the air flow velocity increases, and the pressure at the throat 309 of the Venturi pipe 306 decreases, and the dust passing through the water pump 307 is discharged. The water at the bottom of the filter chamber 302 is pumped to the throat 309. The water pumped to the throat 309 is atomized by the high-speed airflow. The dust in the air contacts the atomized droplets and is lubricated. After entering the expansion tube 310, the airflow velocity decreases, the dust adheres to each other, and the volume increases. The airflow then mixes with the dust and enters the filter chamber 302. After entering the filter chamber 302, the airflow is guided by the guide frame 304, forming a spiral airflow in the filter chamber 302. The dust is thrown to the bottom of the filter chamber 302 by the centrifugal force and gravity of the airflow, and falls into the water at the bottom of the filter chamber 302, where it automatically settles. After cleaning is completed, the opening at the bottom of the filter chamber 302 is opened to discharge the wastewater mixed with the dust.When the filter 302 is cleaned, the filter 302 will be dried and the filter 302 will be put into the water tank 302. When the filter 302 is cleaned, the filter 302 will be dried and the filter 302 will be put into the water tank 302. When the filter 302 is cleaned, the filter 302 will be dried and the filter 302 will be put into the water tank 302. When the filter 302 is cleaned, the filter 302 will be dried and the filter 302 will be put into the water tank 302. When the filter 302 is cleaned, the filter 302 will be dried and the filter 302 will be put into the water tank 302. 17. When the water in the water replenishment bottle 314 stops replenishing, to ensure a smooth replenishment process, the buoyancy provided by the float 312 must be greater than the suction force of the liquid replenishment permanent magnet 313 on the closing slider 319, and the suction force of the liquid replenishment permanent magnet 313 on the closing slider 319 must be greater than the elastic force of the closing spring 318 after being squeezed and deformed. When cleaning, it is only necessary to reduce the output power of the resistance magnet 118. The magnetic force generated by the resistance magnet 118 on the distribution cabinet is reduced, and the pressure of the resistance magnet 118 on the rubber track 115 is reduced. The synchronous dust removal mechanism 1 slides from top to bottom under its own gravity, completing the dust removal inside the distribution cabinet. When adjusting the angle of the air transmission channel 104, the adjustment arm 133 is rotated. The adjustment arm 133 drives the adjustment worm 130 to rotate, the adjustment worm 130 drives the adjustment worm gear 132 to rotate, and the adjustment worm gear 132 drives the worm gear shaft 131 and the air transmission channel 104 to rotate together.
[0046] The above is the specific working process of the present invention. Just repeat this step next time you use it.
[0047] It should be noted that, in this document, relational terms such as first and second, etc. are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.
[0048] Furthermore, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0049] While the embodiments of the present invention have been shown and described, it will be apparent to those skilled in the art that various changes, modifications, substitutions, and alterations can be made to these embodiments without departing from the principles and spirit of the invention.
[0050] The present invention and its embodiments are described above. Such description is not restrictive. What is shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto.
[0051] In summary, if ordinary technicians in this field are inspired by this and design structural methods and embodiments similar to this technical solution without creatively designing them without departing from the purpose of the invention, they should all fall within the scope of protection of the invention.
Claims
1. A dust removal device for electric power equipment, characterized in that: The invention comprises a synchronous dust removal mechanism (1), an air supply mechanism (2), a filtering mechanism (3) and a transfer platform (4), wherein the synchronous dust removal mechanism (1) is placed on the top layer of the transfer platform (4), the air supply mechanism (2) is arranged on the lower layer of the transfer platform (4), and the filtering mechanism (3) is arranged on the lower layer of the transfer platform (4); the synchronous dust removal mechanism (1) comprises a dust removal carrying cabin (101), and also comprises an air pressure channel (102), a sealed docking cabin (103), an air supply channel (104) and The resistance sliding system (105) is provided on the top floor of the transfer platform (4), the air pressure channel (102) is provided on the side wall of the dust removal carrying cabin (101), the sealed docking cabin (103) is fixedly connected to the dust removal carrying cabin (101), the air supply channel (104) is rotatably connected to the dust removal carrying cabin (101), and the resistance sliding system (105) is provided on the side wall of the dust removal carrying cabin (101); the dust removal carrying cabin (101) is provided with a plurality of air pressure channels (102). An exhaust port (134) is provided at the rear end; a rotary sealer (120) symmetrical in upper and lower directions is provided in the dust removal carrying cabin (101); the rotary sealer (120) comprises a sealing cabin (121), a sealing rotating shaft (122), a bearing (123), a sleeve (124), a sealing film (125), a magnetic iron plate (126) and a torsion spring (127); the sealing cabin (121) is provided in the dust removal carrying cabin (101); the sealing rotating shaft (122) is provided in the sealing cabin ( 121), the sleeve (124) is rotatably connected to the sealing shaft (122) through a bearing (123), the sealing film (125) is wound around the outside of the sleeve (124), the magnetic iron plate (126) is connected to the sealing film (125), and the sealing film (125) is also connected to the sleeve (124), one end of the torsion spring (127) is connected to the inner wall of the sleeve (124), and the other end of the torsion spring (127) is connected to the sealing shaft (122).
2. A dust removal device for electric power equipment according to claim 1, characterized in that: A sealing baffle (110) is slidably provided in the sealed docking chamber (103) and is symmetrical in both directions. Sealing springs (106) are connected to both ends of the sealing baffle (110). The sealing spring (106) is simultaneously connected to the interior of the sealed docking chamber (103). The sealing spring (106) pushes the sealing baffle (110) toward the middle of the sealed docking chamber (103). A sealing folding plate (108) is connected to the middle of the sealing baffle (110). The sealing folding plate (108) is simultaneously connected to the frame of the sealed docking chamber (103).
3. A dust removal device for electric power equipment according to claim 2, characterized in that: The resistance sliding system (105) includes a sliding frame (112), a sliding shaft (113), a sliding wheel (114), a rubber track (115), a sliding base (116), a support spring (117), a resistance magnet (118) and a connecting bridge arm (119), wherein the sliding frame (112) is arranged on the side wall of the dust removal carrying cabin (101), the sliding shaft (113) is arranged on the sliding frame (112), the sliding wheel (114) is rotatably arranged on the sliding shaft (113), the rubber track (115) is sleeved on the outside of the sliding wheel (114), the connecting bridge arm (119) is fixedly connected to the sliding shaft (113), the sliding base (116) is slidably arranged on the connecting bridge arm (119), the support spring (117) is arranged between the sliding base (116) and the connecting bridge arm (119), and the resistance magnet (118) is fixedly connected to the sliding base (116).
4. A dust removal device for electric power equipment according to claim 3, characterized in that: An airflow baffle (129) is provided in the air delivery channel (104), and an airflow impeller (128) is rotatably provided at the opening of the air delivery channel (104); a worm gear shaft (131) is connected to the side wall of the air delivery channel (104), and an adjusting worm wheel (132) is provided on the worm gear shaft (131); an adjusting worm (130) is rotatably provided on the dust removal carrying cabin (101), and the adjusting worm (130) is meshedly connected with the adjusting worm wheel (132); and an adjusting rotating arm (133) is provided at the upper end of the adjusting worm (130).
5. The dust removal device for electric power equipment according to claim 4, characterized in that: The filtering mechanism (3) comprises a filtering channel (301), a filtering cabin (302), an exhaust pipe (303), a guide frame (304) and a Venturi pipe (306); the filtering cabin (302) is mounted on the transfer platform (4); the exhaust pipe (303) is arranged through the top of the filtering cabin (302); the guide frame (304) is arranged in the filtering cabin (302); the Venturi pipe (306) is communicated with the side wall of the filtering cabin (302); one end of the filtering channel (301) is connected to the Venturi pipe (306); The other end of the filter channel (301) is connected to the exhaust port (134); the Venturi pipe (306) comprises a contraction tube (308), a throat tube (309) and an expansion tube (310); the throat tube (309) is located between the contraction tube (308) and the expansion tube (310); the expansion tube (310) is connected to the filter cabin (302); the contraction tube (308) is connected to the filter channel (301); the lower end of the throat tube (309) is connected to a water pumping pipe (307); and the water pumping pipe (307) is connected to the interior of the filter cabin (302).
6. A dust removal device for electric power equipment according to claim 5, characterized in that: A hollow floating rod (311) is slidably provided in the filter cabin (302), a liquid replenishing permanent magnet (313) is provided on the top of the hollow floating rod (311), and a float (312) is provided on the bottom of the hollow floating rod (311).
7. A dust removal device for electric power equipment according to claim 6, characterized in that: A water bottle rack (315) is provided on the side wall of the filter cabin (302), and a water supply bottle (314) is provided on the water bottle rack (315). The water supply bottle (314) is connected to the filter cabin (302) via a water supply pipe (317). A water stop valve (316) is connected to the water supply pipe (317). The water stop valve (316) is located on the side wall of the filter cabin (302). A closing slider (319) is provided in the water stop valve (316) for sliding movement. A closing spring (318) is provided between the closing slider (319) and the inner wall of the water stop valve (316).
8. The dust removal device for electric power equipment according to claim 7, characterized in that: The air outlet end of the air supply mechanism (2) is connected to an air supply pipe (201), and the air supply pipe (201) is also in communication with the wind pressure channel (102).
Citation Information
Patent Citations
Dust removal device for power system automation equipment
CN112620248A
Steel structure or concrete outer wall cleaning robot and control system thereof
CN119055143A