A synergistic purification type mine dust removal device

By combining a spiral guide plate and an electrostatic eccentric ring with high-temperature atomized water mist and surfactants, the dust removal component solves the problem of low water resource utilization in mining dust removal devices and achieves efficient removal of large and small dust particles.

CN120139922BActive Publication Date: 2026-04-10DEEP MINING LABORATORY BRANCH OF SHANDONG GOLD MINING TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
DEEP MINING LABORATORY BRANCH OF SHANDONG GOLD MINING TECHNOLOGY CO LTD
Filing Date
2025-03-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing dust removal equipment in mines has low water resource utilization and is difficult to effectively remove dust, especially ultrafine particles. In addition, the spray system consumes a lot of water, which is particularly prominent in arid mining areas.

Method used

The dust removal assembly, which combines a spiral guide plate and an electrostatic eccentric ring, separates large dust particles through centrifugal force and electrostatic adsorption. It also utilizes high-temperature atomized water mist to agglomerate the dust particles and form large agglomerates with surfactants, thereby achieving efficient dust removal.

Benefits of technology

It improves the removal efficiency of both large and small dust particles, reduces the water resource requirements of the spray system, and enhances the evaporation efficiency of water mist and the dust removal effect.

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Abstract

The application discloses a kind of collaborative purification type mine dust removal devices, including first box, dust suction assembly is arranged in the outer end of first box, dust removal assembly is arranged in the inside of first box, and rubber ring is fixed in the inside of first box, fixed turbine blade is arranged in the top inside of first box, cleaning assembly is arranged in the top outer end of first box.The application can make dust removal box generate centrifugal force inside electrostatic eccentric ring in the process of rotation by eccentric distribution of electrostatic eccentric ring and dust removal box, friction ring of electrostatic eccentric ring outer end can be rubbed with rubber ring in the process of rotation, static electricity is generated on the surface of friction ring, and electrostatic eccentric ring is integrated structure with friction ring, so that static electricity can be transmitted to the surface of electrostatic eccentric ring, under the double action of centrifugal force and electrostatic adsorption, smaller particle dust in air can be effectively adsorbed, and the centrifugal adsorption effect of electrostatic eccentric ring can effectively provide the collaborative purification effect of equipment.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of dust removal devices for environmental protection, in particular to a collaborative purification type mine dust removal device. BACKGROUND

[0002] Mining covers multiple links such as rock drilling, blasting, loading and transportation, and each link is accompanied by dust generation and diffusion. During rock drilling, the high-speed impact of machinery on rock causes the rock to break, and fine particles diffuse in the air. The powerful impact force generated in the blasting instant throws a large amount of rock powder to the surrounding environment. During the loading and transportation process, the loading and moving of materials also raise a large amount of dust. These dusts have different particle sizes, among which inhalable particulate matter (PM10) and fine particulate matter (PM2.5) can be suspended in the air for a long time and widely spread with atmospheric circulation.

[0003] The large emission of mine dust causes damage to the environment in many aspects. In terms of natural ecology, dust settles in the soil, changes the physical and chemical properties of the soil, affects soil aeration and nutrient cycling, and thus inhibits plant growth and destroys the balance of the vegetation ecosystem. Dust also enters water bodies with rainwater, leading to water quality deterioration and affecting the survival environment of aquatic organisms. From the perspective of atmospheric environment, mine dust is one of the important pollution sources causing haze weather, reducing atmospheric visibility, affecting regional air quality, and aggravating air pollution.

[0004] In addition, in the field of spray dust removal technology, existing devices mainly achieve settlement by directly spraying water mist to contact with dust, but the conventional atomized particles are large, and the contact area with dust is limited, resulting in low water resource utilization rate and difficulty in effectively removing ultrafine particles. Some improved technologies try to add chemical additives to enhance the agglomeration effect, but the water consumption of the spray system is still high, especially in arid mining areas, this problem is more prominent. SUMMARY

[0005] The purpose of the present application is to provide a collaborative purification type mine dust removal device to solve the problems raised in the background art.

[0006] To achieve the above purpose, the present application provides the following technical solutions:

[0007] The utility model provides a kind of collaborative purification type mine dust removal device, including first box, dust suction assembly is arranged at the outer end of the first box, and dust removal assembly is arranged in the inside of first box, the dust removal assembly includes dust removal box, gas inlet is formed in the inside of the bottom of the dust removal box, and meshing tooth groove is formed in the outer end of dust removal box, spiral guide vane is arranged in the inside of the bottom of the dust removal box, and array arrangement's collection groove is formed in the inner wall surface of dust removal box, sealing plug is arranged at the opening of the collection groove, first ventilation groove is formed in the inside of the dust removal box, and friction ring is fixed in the inside of dust removal box, electrostatic eccentric ring is arranged in the inside of the friction ring, second ventilation groove is formed in the inside of the electrostatic eccentric ring, and dynamic turbine blade is arranged at the top outer end of electrostatic eccentric ring, outer end of dynamic turbine blade is arranged with blocking surrounding sealing plate, and ball is arranged at the top end of blocking surrounding sealing plate and first box.

[0008] Further, the dust suction assembly includes a suction machine, the bottom end of the suction machine is connected with a rotating air suction pipe, and the bottom end of the rotating air suction pipe is provided with a rotating seat. The bottom end of the rotating seat is provided with a dust suction seat. The outer end of the rotating air suction pipe is fixed with a driven rotating seat. The outer end of the first box is provided with a motor, and the output end of the motor is connected with a driving gear. The shaft end of the driving gear is connected with a transmission shaft. The bottom end of the transmission shaft is connected with a driving rotating seat. The driving rotating seat and the driven rotating seat are provided with a transmission belt.

[0009] Further, the motor drives the driving gear to rotate, and the driving gear drives the dust removal box to rotate in the first box through the meshing with the meshing tooth groove.

[0010] Further, the driving gear drives the driving rotating seat to rotate through the transmission shaft, and the driving rotating seat drives the driven rotating seat, the rotating air suction pipe and the rotating seat to rotate through the transmission belt.

[0011] Further, the inside of the first box is fixed with a rubber ring, and the top inside of the first box is provided with a fixed turbine blade. The top outer end of the first box is provided with a cleaning assembly.

[0012] Further, the outer surface of the friction ring is matched with the outer surface of the rubber ring, and the friction ring, the electrostatic eccentric ring and the dynamic turbine blade are integrated.

[0013] Further, the dynamic turbine blade and the fixed turbine blade are staggered, and the blocking surrounding sealing plate cooperates with the first box to form a full-enclosing structure for the dynamic turbine blade and the fixed turbine blade.

[0014] Further, the cleaning assembly comprises a pair of through pipes, ends of the pair of through pipes are connected with a cleaning box, and an outer end of the cleaning box is provided with a water storage box, an inner part of the cleaning box is arranged with an atomizing nozzle, and an inner part of the cleaning box is arranged with a guide partition plate, an inner side of a bottom of the cleaning box is provided with a sedimentation groove, and an outer end of the bottom of the cleaning box is arranged with a sedimentation box, an outer end of the water storage box is arranged with a water through pipe, and an inner part of the water through pipe is provided with an electric control valve, and a right side top end of the cleaning box is provided with an air outlet.

[0015] Further, the first box body is communicated with the cleaning box through the pair of through pipes, and the water storage box is communicated with the pair of through pipes through the water through pipe.

[0016] Further, the water storage box is communicated with the atomizing nozzle, and the cleaning box and the guide partition plate are integrated structures.

[0017] Beneficial effects:

[0018] 1. After the airflow enters the dust removal box, it can flow along the track of the spiral guide plate. The use of the spiral guide plate can make the airflow flow along the spiral path under the guidance of the spiral guide plate, form a stable vortex, generate a centrifugal force field, and separate large particle dust through airflow rotation. This makes large particle dust gather towards the edge of the spiral guide plate. The collection groove is provided at the edge of the spiral guide plate, so that the gathered large particle dust can be collected by the collection groove. During the operation of the equipment, the motor can drive the driving gear to rotate. The driving gear is engaged with the meshing tooth groove of the dust removal box, so that the dust removal box can rotate in the first box body. The rotation direction of the dust removal box is consistent with the spiral direction of the spiral guide plate, which can generate greater centrifugal force during airflow flow. Through the design, when dust bursts in the process of mine blasting or ore crushing, the driving spiral guide plate can increase the rotational speed to quickly enhance the centrifugal force to cope with the high concentration of large particles in a short time. In addition, during the rotation of the driving gear, the transmission shaft, the driving rotating seat, the transmission belt, the driven rotating seat, and the rotating air suction pipe can drive the rotating seat to rotate, thereby improving the dust collection range of the device.

[0019] 2. The eccentricity of the electrostatic eccentric ring and the dust removal box is distributed, so that the dust removal box can generate centrifugal force in the electrostatic eccentric ring during rotation. In addition, the friction ring at the outer end of the electrostatic eccentric ring can rub with the rubber ring during rotation. Through high-frequency friction, static electricity can be generated on the surface of the friction ring. Since the friction ring and the electrostatic eccentric ring are integrated structures, the static electricity can be transmitted to the surface of the electrostatic eccentric ring. Under the dual action of centrifugal force and static adsorption, small particle dust in the air can be effectively adsorbed. The centrifugal adsorption effect of the electrostatic eccentric ring can be automatically realized during the rotation of the dust removal box, so that the synergistic purification effect of the equipment can be improved.

[0020] 3、The present application is by the dynamic turbine blade and static eccentric ring together in the eccentric state, the fixed turbine blade is in the first box body center position, through the eccentric rotating dynamic turbine blade can extrude the air into the blocking seal plate inside, until into the turbine center of dynamic turbine blade and fixed turbine blade, both turbine center is located at the first box and the connection of the pipe, which makes the high temperature and high pressure gas after compression can enter into the cleaning box through the pipe, through the atomizing nozzle work, can extract the water in the water storage tank and atomizing spray, which makes the water mist can contact with high temperature air, through the gas temperature rise again with water mist, can effectively improve the evaporation efficiency of water mist, after the evaporation efficiency is improved, can make the water mist particle smaller, the surface area increases greatly, can more efficient adsorption of dust particles, in addition, through the rapid evaporation of high temperature can promote the collision and condensation of water mist and dust particles, and the water in the water storage tank is added with surfactant, through the synergistic effect of surfactant, can form larger, heavier agglomerates, the structure of the cleaning box is formed by the interval of the guide baffle U-shaped space, which makes the water mist can be settled by gravity, so as to realize better dust removal effect, and the sediment can pass through the sediment tank into the sediment tank for collection, in addition, efficient evaporation means that unit water quantity can handle more dust, which can greatly reduce the total water demand of the spraying system. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the whole three-dimensional structure schematic diagram of the synergistic purification type mine dust removal device of the application;

[0022] Figure 2 It is the first box internal structure schematic diagram of the synergistic purification type mine dust removal device of the application;

[0023] Figure 3 It is the whole structure schematic diagram of the dust removal assembly of the synergistic purification type mine dust removal device of the application;

[0024] Figure 4 It is the dust removal assembly sectional structure schematic diagram of the synergistic purification type mine dust removal device of the application;

[0025] Figure 5 It is the dynamic turbine blade structure schematic diagram of the synergistic purification type mine dust removal device of the application;

[0026] Figure 6 It is the first box structure schematic diagram of the synergistic purification type mine dust removal device of the application;

[0027] Figure 7 It is the cleaning assembly internal structure schematic diagram of the synergistic purification type mine dust removal device of the application;

[0028] Figure 8 It is the whole sectional structure schematic diagram of the synergistic purification type mine dust removal device of the application.

[0029] In the figure: 1, the first box; 2, dust suction assembly; 201, suction machine; 202, rotating air suction pipe; 203, rotating seat; 204, dust suction seat; 205, driven rotating seat; 206, motor; 207, driving gear; 208, transmission shaft; 209, driving rotating seat; 210, transmission belt; 3, dust removal assembly; 301, dust removal box; 302, air inlet; 303, meshed tooth groove; 304, spiral guide plate; 305, collection groove; 306, sealing plug; 307, first air vent groove; 308, friction ring; 309, electrostatic eccentric ring; 310, second air vent groove; 311, movable turbine blade; 312, blocking and sealing plate; 313, ball; 4, rubber ring; 5, fixed turbine blade; 6, cleaning assembly; 601, opposite pipe; 602, cleaning box; 603, water storage tank; 604, atomizing nozzle; 605, guide partition plate; 606, settling tank; 607, settling box; 608, water pipe; 609, electric control valve; 610, air outlet. DETAILED DESCRIPTION

[0030] The embodiments of the present application will be described herein below with reference to drawings. Numerous specific details will be set forth in the following description in order to provide a thorough understanding of the application. However, it will be appreciated by those of ordinary skill in the art that the application can be practiced without these details. In other instances, well-known structures and components are not described in detail in order to avoid obscuring the application. Also, the drawings are in simplified form and not to precise scale for the sake of clarity.

[0031] In addition, the technical solutions among various embodiments can be combined with each other, but it must be based on that a person of ordinary skill in the art can realize, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.

[0032] The embodiments of the present application will be described herein below with reference to drawings. Numerous specific details will be set forth in the following description in order to provide a thorough understanding of the application. However, it will be appreciated by those of ordinary skill in the art that the application can be practiced without these details. In other instances, well-known structures and components are not described in detail in order to avoid obscuring the application. Also, the drawings are in simplified form and not to precise scale for the sake of clarity.

[0033] Please refer to Figures 1 to 8 The present application provides a synergistic purification type mine dust removal device, which comprises a first box 1, a dust suction assembly 2 arranged at the outer end of the first box 1, a dust removal assembly 3 arranged in the interior of the first box 1, a rubber ring 4 fixed in the interior of the first box 1, a fixed turbine blade 5 arranged at the top inner side of the first box 1, and a cleaning assembly 6 arranged at the top outer end of the first box 1.

[0034] In some embodiments, the dust collection assembly 2 comprises a suction machine 201, the bottom end of the suction machine 201 is connected with a rotating air suction pipe 202, the bottom end of the rotating air suction pipe 202 is provided with a rotating seat 203, the bottom end of the rotating seat 203 is provided with a dust collection seat 204, the outer end of the rotating air suction pipe 202 is fixed with a driven rotating seat 205, the outer end of the first box body 1 is provided with a motor 206, the output end of the motor 206 is connected with a driving gear 207, the shaft end of the driving gear 207 is connected with a transmission shaft 208, the bottom end of the transmission shaft 208 is connected with a driving rotating seat 209, and the driving rotating seat 209 and the driven rotating seat 205 are provided with a transmission belt 210.

[0035] In some other embodiments, the dust removal assembly 3 comprises a dust removal box 301, the bottom inner side of the dust removal box 301 is provided with an air inlet 302, the outer end of the dust removal box 301 is provided with a meshing tooth groove 303, the bottom inner side of the dust removal box 301 is provided with a spiral flow guide plate 304, the inner wall surface of the dust removal box 301 is provided with an array of collection grooves 305, the opening of the collection groove 305 is provided with a sealing plug 306, the inside of the dust removal box 301 is provided with a first air passage 307, the inside of the dust removal box 301 is fixed with a friction ring 308, the inside of the friction ring 308 is provided with an electrostatic eccentric ring 309, the inside of the electrostatic eccentric ring 309 is provided with a second air passage 310, the top outer end of the electrostatic eccentric ring 309 is provided with a dynamic turbine blade 311, the outer end of the dynamic turbine blade 311 is provided with a surrounding sealing plate 312, and the top end of the surrounding sealing plate 312 is provided with a ball bearing 313.

[0036] The motor 206 drives the driving gear 207 to rotate, and the driving gear 207 drives the dust removal box 301 to rotate in the first box body 1 through the meshing with the meshing tooth groove 303, the driving gear 207 drives the driving rotating seat 209 to rotate through the transmission shaft 208, and the driving rotating seat 209 drives the driven rotating seat 205, the rotating air suction pipe 202 and the rotating seat 203 to rotate through the transmission belt 210, the outer surface of the friction ring 308 is combined with the outer surface of the rubber ring 4, and the friction ring 308 and the electrostatic eccentric ring 309, the dynamic turbine blade 311 are integrated, the dynamic turbine blade 311 and the fixed turbine blade 5 are staggered, and the surrounding sealing plate 312 cooperates with the first box body 1 to form a full-enclosed structure of the dynamic turbine blade 311 and the fixed turbine blade 5.

[0037] Specific operation as follows, staff will be set in the mining process of the device in the mine dust larger environment, through the suction machine 201 work, can make suction force through the rotating air pipe 202, rotating seat 203 transmission to the dust suction seat 204, which makes the dust suction seat 204 can dust suction, dust suction can enter to the inside of the first box 1, and through the air inlet 302 into the dust removal box 301 inside, airflow into the dust removal box 301 inside, can flow along the track of the spiral guide plate 304, the use of spiral guide plate 304, can make the airflow flow along the spiral path under the guidance of spiral guide plate 304, form stable vortex, produce centrifugal field can be separated by airflow rotation large particle dust, which makes the large particle dust can be gathered to the edge of the spiral guide plate 304, the collection groove 305 is set in the edge of the spiral guide plate 304, which makes the large particle dust can be collected by the collection groove 305.

[0038] When the dust collected in the collection groove 305 is too much, the staff can clean the dust collected in the collection groove 305 by opening the sealing plug 306.

[0039] It should be noted that, in the process of working of the device, through the motor 206 driven driving gear 207 rotation, because the driving gear 207 and the meshing groove 303 of the dust removal box 301 meshing, so that the dust removal box 301 can rotate in the inside of the first box 1, the rotation direction of the dust removal box 301 is consistent with the spiral direction of the spiral guide plate 304, which makes the airflow flow process can produce greater centrifugal force, through the design, in the mine blasting or ore crushing moment dust explosion, the driving rotating spiral guide plate 304 can improve the rotational speed, quickly enhance the centrifugal force, cope with the high concentration of large particles in a short time impact.

[0040] In addition, in the process of rotation of the driving gear 207, the driving shaft 208, the driving rotation seat 209, the transmission belt 210, the driven rotation seat 205, the transmission belt driving rotating seat 203 of the rotating air pipe 202 can be rotated, which makes the dust suction seat 204 can have a large dust suction range.

[0041] The air after removing large particle dust can enter the inside of the static eccentric ring 309 through the first air passage 307, the static eccentric ring 309 is eccentrically distributed with the dust removal box 301, which can generate centrifugal force in the inside of the static eccentric ring 309 during the rotation of the dust removal box 301, and the friction ring 308 at the outer end of the static eccentric ring 309 can rub with the rubber ring 4 during the rotation, and the surface of the friction ring 308 can generate static electricity through high-frequency friction, and the static electricity can be transmitted to the surface of the static eccentric ring 309 due to the integrated structure of the friction ring 308 and the static eccentric ring 309, so that the smaller particle dust in the air can be effectively adsorbed under the double action of centrifugal force and static adsorption, and the centrifugal adsorption effect of the static eccentric ring 309 is automatically realized during the rotation of the dust removal box 301, so that the synergistic purification effect of the equipment can be improved.

[0042] Please refer to Figures 1 to 8 The cleaning assembly 6 comprises a through pipe 601, the end of the through pipe 601 is connected with a cleaning box 602, the outer end of the cleaning box 602 is provided with a water storage box 603, the inside of the cleaning box 602 is provided with an atomizing nozzle 604, the inside of the cleaning box 602 is provided with a guide partition plate 605, the bottom inside of the cleaning box 602 is provided with a sedimentation groove 606, the bottom outside of the cleaning box 602 is provided with a sedimentation box 607, the outer end of the water storage box 603 is provided with a water passage pipe 608, the inside of the water passage pipe 608 is provided with an electric control valve 609, the right top of the cleaning box 602 is provided with an air outlet 610, the first box body 1 is connected with the cleaning box 602 through the through pipe 601, the water storage box 603 is connected with the through pipe 601 through the water passage pipe 608, the water storage box 603 is connected with the atomizing nozzle 604, and the cleaning box 602 and the guide partition plate 605 are in an integrated structure.

[0043] Through the above setting, the air after secondary purification can enter the inside of the blocking sealing plate 312 through the second air passage 310, the dynamic turbine blade 311 is in an eccentric state with the static eccentric ring 309, and the static turbine blade 5 is at the center position of the first box body 1, the air entering the inside of the blocking sealing plate 312 can be extruded through the eccentric rotation of the dynamic turbine blade 311 until entering the turbine center of the dynamic turbine blade 311 and the static turbine blade 5, and the turbine center is just located at the joint of the first box body 1 and the through pipe 601, so that the compressed high-temperature and high-pressure gas can enter the inside of the cleaning box 602 through the through pipe 601, and the water in the water storage box 603 can be extracted and atomized through the working of the atomizing nozzle 604, so that the water mist can contact with the high-temperature air, the evaporation efficiency of the water mist can be effectively improved by contacting the gas after being heated with the water mist, and the water mist particles can be finer after the evaporation efficiency is improved, the surface area is greatly increased, and the dust particles can be more efficiently adsorbed.

[0044] It can be understood that the collision and coagulation of the water mist and the dust particles can be promoted by the rapid evaporation at high temperature, the water body in the water storage tank 603 is added with a surfactant, and through the synergistic effect of the surfactant, larger and heavier agglomerates can be formed, the structure inside the cleaning tank 602 is formed by the interval of the guide partition plate 605 to form a U-shaped space, which enables the water mist to be settled by gravity, thereby achieving a better dust removal effect, and the settled impurities can pass through the settling tank 606 and enter the settling tank 607 for collection, in addition, the efficient evaporation means that more dust can be treated per unit of water, which can greatly reduce the total water demand of the spraying system, and the purified air can be discharged from the equipment through the air outlet 610.

[0045] The water pipe 608 can communicate the water storage tank 603 and the air pipe 601, so that the water in the water storage tank 603 can enter the first tank body 1, the use of the blocking sealing plate 312 enables the clean water to flow in the reverse direction along the air flow direction, in the process, the dust removal tank 301 is driven to rotate by the motor 206, so that the clean water can uniformly clean the components such as the spiral guide plate 304 and the electrostatic eccentric ring 309, and after the electrostatic eccentric ring 309 contacts with the clean water, the static electricity on the surface of the electrostatic eccentric ring 309 can be quickly eliminated, through the above design, the cleaning of the equipment in the non-use state can be greatly facilitated.

[0046] Embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the disclosed form. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. A synergistic purifying mine dust removal device, characterized in that, Including first box body (1), the outer end of first box body (1) is provided with dust collection assembly (2), and the inside of first box body (1) is provided with dust removal assembly (3); The dust removal assembly (3) includes a dust removal box (301), a gas inlet (302) is formed in the bottom inner side of the dust removal box (301), and a meshing tooth groove (303) is formed in the outer end of the dust removal box (301), a spiral guide plate (304) is arranged in the bottom inner side of the dust removal box (301), and a plurality of collection grooves (305) are arranged in an array on the inner wall surface of the dust removal box (301), a sealing plug (306) is arranged at the opening of the collection groove (305), a first air passage (307) is formed in the inside of the dust removal box (301), and a friction ring (308) is fixed in the inside of the dust removal box (301), an electrostatic eccentric ring (309) is arranged in the inside of the friction ring (308), a second air passage (310) is formed in the inside of the electrostatic eccentric ring (309), and a dynamic turbine blade (311) is arranged at the top outer end of the electrostatic eccentric ring (309), a blocking sealing plate (312) is arranged at the outer end of the dynamic turbine blade (311), and a ball (313) is arranged at the top end of the blocking sealing plate (312) abutting against the first box body (1). The dust collection assembly (2) includes a suction machine (201), a rotating air suction pipe (202) is connected to the bottom end of the suction machine (201), a rotating seat (203) is arranged at the bottom end of the rotating air suction pipe (202), a dust collection seat (204) is arranged at the bottom end of the rotating seat (203), a driven rotating seat (205) is fixed at the outer end of the rotating air suction pipe (202), a motor (206) is arranged at the outer end of the first box body (1), a driving gear (207) is connected to the output end of the motor (206), a transmission shaft (208) is connected to the shaft end of the driving gear (207), and a driving rotating seat (209) is connected to the bottom end of the transmission shaft (208), a transmission belt (210) is arranged between the driving rotating seat (209) and the driven rotating seat (205); the motor (206) drives the driving gear (207) to rotate, and the driving gear (207) drives the dust removal box (301) to rotate in the first box body (1) through the meshing with the meshing tooth groove (303). A rubber ring (4) is fixed in the inside of the first box body (1), and a fixed turbine blade (5) is arranged at the top inner side of the first box body (1), and a cleaning assembly (6) is arranged at the top outer end of the first box body (1). The outer surface of the friction ring (308) abuts against the outer surface of the rubber ring (4), and the friction ring (308) and the electrostatic eccentric ring (309) and the dynamic turbine blade (311) are integrated; the dynamic turbine blade (311) and the fixed turbine blade (5) are distributed in a staggered manner, and the blocking sealing plate (312) cooperates with the first box body (1) to form a full-enclosing structure for the dynamic turbine blade (311) and the fixed turbine blade (5).

2. The synergistic scrubbing mine dust removal device according to claim 1, characterized in that, The driving gear (207) drives the driving rotating seat (209) to rotate through a transmission shaft (208), and the driving rotating seat (209) drives the driven rotating seat (205), the rotating air inlet pipe (202) and the rotating seat (203) to rotate through a transmission belt (210).

3. The synergistic scrubbing mine dust removal device according to claim 1, characterized in that, The cleaning assembly (6) comprises a pair of through pipes (601), the ends of the pair of through pipes (601) are connected with cleaning boxes (602), the outer ends of the cleaning boxes (602) are provided with water storage boxes (603), the interiors of the cleaning boxes (602) are arranged with atomizing nozzles (604), the interiors of the cleaning boxes (602) are arranged with guide partitions (605), the bottom inner sides of the cleaning boxes (602) are provided with sedimentation grooves (606), the bottom outer ends of the cleaning boxes (602) are arranged with sedimentation boxes (607), the outer ends of the water storage boxes (603) are arranged with water through pipes (608), the interiors of the water through pipes (608) are provided with electric control valves (609), and the right top ends of the cleaning boxes (602) are provided with air outlets (610).

4. The synergistic scrubbing mine dust removal device according to claim 3, characterized in that, The first box body (1) is connected with the cleaning boxes (602) through the pair of through pipes (601), and the water storage boxes (603) are connected with the pair of through pipes (601) through the water through pipes (608).

5. The synergistic scrubbing mine dust removal device according to claim 4, characterized in that, The water storage boxes (603) are connected with the atomizing nozzles (604), and the cleaning boxes (602) and the guide partitions (605) are integrated structures.

Citation Information

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