CN214262314U - Multistage magnetic separation separator - Google Patents

Multistage magnetic separation separator Download PDF

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Publication number
CN214262314U
CN214262314U CN202023206869.1U CN202023206869U CN214262314U CN 214262314 U CN214262314 U CN 214262314U CN 202023206869 U CN202023206869 U CN 202023206869U CN 214262314 U CN214262314 U CN 214262314U
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magnetic separation
magnet
frame
box
shaft
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CN202023206869.1U
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邹亚剑
陈满
陈俊谕
陈凯镇
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Guangdong Gaoci Technology Corp ltd
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Guangdong Gaoci Technology Corp ltd
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Abstract

The utility model discloses a multistage magnetic separation machine, including frame and spiral material loading machine, one side of frame is provided with spiral material loading machine, still includes: slurry concentration guiding mechanism, magnetic separation mechanism and automatic thick liquid feeding mechanism of advancing, the one end that the frame top is located spiral material loading machine is provided with slurry concentration guiding mechanism, and the one end that slurry concentration guiding mechanism was kept away from at the frame top is provided with magnetic separation mechanism, the backup pad is installed to the opposite side of frame, and the backup pad top is provided with first collecting vat, this magnetic separation machine realizes the automatic feeding process through spiral material loading machine, can be to slurry concentration mixing through slurry concentration guiding mechanism, be convenient for better separation, can realize multistage magnetic separation through magnetic separation mechanism, adopt multistage magnetic field combination formula strong magnetic separation technique and equipment, can realize the effective magnetic separation of fine fraction and useful mineral of superfine fraction among all kinds of ore resources, improve ore source magnetic separation classification scope, reduce the tailing and produce.

Description

Multistage magnetic separation separator
Technical Field
The utility model relates to a magnetic separator technical field specifically is a multistage magnetic separator.
Background
Magnetic separation is a mineral separation means for separating mineral particles in a separation magnetic field by using the magnetic difference of the separated materials. The magnetic separation is common in the mineral separation process, and is also the most common one, and has the advantages of simple operation, reasonable process, economic investment, high recovery rate and the like. Magnetic separation is a mineral separation method for separating different minerals by utilizing the magnetic difference between the minerals in an inhomogeneous magnetic field, and the magnetic separation method is widely applied to the aspects of separation of ceramic raw materials, concentration of non-ferrous and rare metal ores, recovery and purification of magnetic media in heavy medium mineral separation, removal of iron-containing impurities in non-metallic ores, removal of iron substances in coal mines, treatment of garbage and sewage and the like, and has single performance.
The traditional magnetic separator has the defects that the grade of the separated materials is not high due to the phenomena of magnetic agglomeration, magnetic inclusion and the like, and the requirements of final products are difficult to meet.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a multistage magnetic separation machine to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a multistage magnetic separation machine, includes frame and spiral material loading machine, one side of frame is provided with spiral material loading machine, still includes: thick liquids concentration adjustment mechanism, magnetic separation mechanism and automatic thick liquid feeding mechanism of advancing, the one end that the frame top is located spiral material loading machine is provided with thick liquids concentration adjustment mechanism, and the frame top one end of keeping away from thick liquids concentration adjustment mechanism is provided with magnetic separation mechanism, the backup pad is installed to the opposite side of frame, and the backup pad top is provided with first collecting vat, thick liquids concentration adjustment mechanism's top is provided with automatic thick liquid feeding mechanism of advancing.
Preferably, thick liquids concentration guiding mechanism includes (mixing) shaft, stirring paddle leaf and agitator motor, the one end fixed mounting that the frame top is located spiral feeding machine has the compounding case, and the one end at compounding incasement top is provided with the feeder hopper, spiral feeding machine's top is provided with out the feed cylinder, and goes out the tip of feed cylinder and directly over the feeder hopper, spiral feeding machine's low side is provided with the feeding funnel, it is connected with the (mixing) shaft to rotate through the bearing in the compounding case, and is provided with stirring paddle leaf outside the (mixing) shaft, stirring paddle leaf's surperficial equidistance has seted up the filtration pore, agitator motor is installed at compounding case's top, and agitator motor's output shaft tip stretches into in the compounding case fixed with the (mixing) shaft.
Preferably, the automatic slurry feeding and feeding mechanism comprises a first water pump and a discharge pipe, the first water pump is installed at the other end of the top of the mixing box, a material suction pipe is installed at the feeding end of the first water pump, and the end of the material suction pipe extends into the lower end of the interior of the mixing box.
Preferably, magnetic separation mechanism includes magnetic separation case, feed inlet, vibrating motor, magnet axle, arc passageway, scrapes the flitch and feeds through a section of thick bamboo, the magnetic separation case is installed to the one end that the frame top is located first collecting vat, the arc passageway is installed on the inside top of magnetic separation case, and the arc passageway internal rotation is connected with the magnet axle, the feed inlet is installed on the inside top of magnetic separation case, and the feed inlet is fixed with the arc passageway, vibrating motor is installed to the feed inlet bottom, the outside fixed mounting that the inside top of magnetic separation case is located the magnet axle scrapes the flitch, and the outside contact of the tip of scraping the flitch and magnet axle, the tip of scraping the flitch passes the magnetic separation case and is connected with first discharge gate, and first discharge gate is located first collecting vat directly over.
Preferably, the arc passageway tip is located the fixed a communicating cylinder that is provided with in bottom of scraping the flitch, the magnetic separation incasement is located the below of scraping the flitch and is provided with cylindrical passageway, and the one end fixed mounting that is located the magnet axle in the cylindrical passageway has semi-cylindrical magnet, the outside that is located semi-cylindrical magnet in the cylindrical passageway rotates and is connected with the rolling circle, the water tank is installed to the one end of magnetic separation bottom of the case portion, cylindrical passageway's bottom is provided with second discharge gate and third discharge gate respectively, the tip of second discharge gate is located the top of water tank, the side that is located the water tank in the magnetic separation incasement is provided with the second collecting vat, the third discharge gate is located the top of second collecting vat, the magnet screen cover is installed at the top of water tank.
Preferably, the cylinder is installed to the magnetic separation case lateral wall, the top of magnet screen lid slides and is provided with the scraping wings, the tailpiece of the piston rod portion of cylinder passes the magnetic separation case and fixes with the scraping wings, the frame top is located the magnetic separation case side and installs the second water pump, the end of intaking of second water pump is connected with the low side of water tank, and the play water end of second water pump is connected with the compounding case.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses a spiral material loading machine realizes automatic feeding process, can be to thick liquids concentration mixing through thick liquids concentration guiding mechanism, and the sorting that is convenient for better can realize multistage magnetic separation through magnetic separation mechanism, adopts the strong magnetic separation technique of multistage magnetic field combination formula and equips, can realize the effective magnetic separation of the useful mineral of fine fraction and fine grain level in all kinds of ore resources, improves ore resources magnetic separation classification scope, reduces the tailing and produces.
Drawings
FIG. 1 is a schematic view of the overall internal connection structure of the present invention;
fig. 2 is a schematic diagram of an enlarged view of a position a of the present invention.
In the figure: 1. a frame; 2. a spiral feeder; 3. a slurry concentration adjusting mechanism; 4. a magnetic separation mechanism; 5. an automatic slurry feeding mechanism; 6. feeding a hopper; 7. a semi-cylindrical magnet; 8. rotating the ring; 9. a mixing box; 10. a cylindrical passage; 11. a stirring shaft; 12. a stirring paddle; 13. a stirring motor; 14. a first water pump; 15. a discharge pipe; 16. a magnetic separation box; 17. a feed inlet; 18. a vibration motor; 19. a magnet shaft; 20. an arc-shaped channel; 21. a scraping plate; 22. a first discharge port; 23. a first holding tank; 24. a communication cylinder; 25. a second discharge port; 26. a third discharge port; 27. a second holding tank; 28. a water tank; 29. a magnet screen cover; 30. a cylinder; 31. and a second water pump.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1, the present invention provides a technical solution: the utility model provides a multistage magnetic separation machine, includes frame 1 and spiral material loading machine 2, one side of frame 1 is provided with spiral material loading machine 2, still includes: the slurry concentration adjusting mechanism 3, the magnetic separation mechanism 4 and the automatic slurry feeding and feeding mechanism 5 are convenient to feed through the spiral feeding machine 2;
referring to fig. 1, a slurry concentration adjusting mechanism 3 is arranged at one end, located on the spiral feeding machine 2, of the top of the frame 1, a magnetic separation mechanism 4 is arranged at one end, away from the slurry concentration adjusting mechanism 3, of the top of the frame 1, a supporting plate is mounted at the other side of the frame 1, a first collecting groove 23 is arranged at the top of the supporting plate, an automatic slurry feeding mechanism 5 is arranged at the top of the slurry concentration adjusting mechanism 3, and iron wires are convenient to collect through the first collecting groove 23.
Referring to fig. 1, the slurry concentration adjusting mechanism 3 includes a stirring shaft 11, a stirring blade 12 and a stirring motor 13, a mixing box 9 is fixedly installed at one end of the top of the rack 1, which is located at the spiral feeding machine 2, a feeding hopper is arranged at one end of the top of the mixing box 9, a discharging cylinder is arranged at the top end of the spiral feeding machine 2, the end of the discharging cylinder is directly above the feeding hopper, and a feeding hopper 6 is arranged at the lower end of the spiral feeding machine 2;
the spiral feeding machine 2 is used for conveniently feeding mineral aggregate, and the spiral feeding machine 2 is used for conveying the mineral aggregate into the mixing box 9 so as to conveniently mix the mineral aggregate;
referring to fig. 1, a stirring shaft 11 is rotatably connected in the mixing box 9 through a bearing, stirring blades 12 are arranged outside the stirring shaft 11, filtering holes are equidistantly formed in the surfaces of the stirring blades 12, a stirring motor 13 is installed at the top of the mixing box 9, and the end part of an output shaft of the stirring motor 13 extends into the mixing box 9 and is fixed with the stirring shaft 11;
the electric control system that sets up through the device controls the work of second water pump 31, takes out the inside liquid of water tank 28 to the mixing box 9 inside, and agitator motor 13 work stirs the compounding of inside this moment, makes thick liquids concentration stirring adjustment even, the fine magnetic separation of carrying on of being convenient for.
Referring to fig. 1 and 2, the automatic slurry feeding and feeding mechanism 5 includes a first water pump 14 and a discharge pipe 15, the first water pump 14 is installed at the other end of the top of the mixing box 9, a material suction pipe is installed at the feed end of the first water pump 14, and the end of the material suction pipe extends into the lower end of the mixing box 9.
Referring to fig. 1 and 2, the magnetic separation mechanism 4 includes a magnetic separation box 16, a feed port 17, a vibration motor 18, a magnet shaft 19, an arc-shaped channel 20, a scraper 21 and a communication cylinder 24, the magnetic separation box 16 is installed at one end of the top of the rack 1, which is located at a first collecting tank 23, the arc-shaped channel 20 is installed at the top end of the inside of the magnetic separation box 16, the magnet shaft 19 is rotatably connected to the arc-shaped channel 20, the feed port 17 is installed at the top end of the inside of the magnetic separation box 16, and the feed port 17 is fixed to the arc-shaped channel 20;
the iron wires contained in the ore pulp are conveniently separated through the arrangement of the magnetic separation mechanism 4;
when the magnetic separation device is used, ore pulp in the mixing box 9 is conveyed into the feeding hole 17 through the work of the first water pump 14, meanwhile, the vibration motor 18 is controlled to work, the vibration motor 18 can sufficiently and uniformly vibrate the ore pulp, so that the magnet shaft 19 can better adsorb iron wires in the ore pulp, the magnet shaft 19 rotates clockwise under the action of an external driving mechanism, the iron wires on the magnet shaft 19 are scraped off by the scraping plate 21 in the rotating process of the magnet shaft 19, the iron wires enter the first discharging hole 22 through the scraping plate 21 and enter the first collecting tank 23 through the first discharging hole 22 for collection, and the rest ore pulp enters the cylindrical channel 10 through the communicating cylinder 24 for next-stage magnetic separation;
referring to fig. 2, a vibration motor 18 is installed at the bottom of the feed port 17, a scraping plate 21 is fixedly installed at the top end inside the magnetic separation box 16 and located outside the magnet shaft 19, the end of the scraping plate 21 contacts with the outside of the magnet shaft 19, the end of the scraping plate 21 penetrates through the magnetic separation box 16 and is connected with a first discharge port 22, and the first discharge port 22 is located right above the first collecting tank 23.
Referring to fig. 2, a communicating cylinder 24 is fixedly arranged at the end of the arc-shaped channel 20 at the bottom of the scraper 21, a cylindrical channel 10 is arranged in the magnetic separation box 16 below the scraper 21, a semi-cylindrical magnet 7 is fixedly arranged at one end of the cylindrical channel 10 at the magnet shaft 19, and a rotating ring 8 is rotatably connected to the outer side of the semi-cylindrical magnet 7 in the cylindrical channel 10;
the ore pulp in the mixing box 9 is conveyed into the feeding hole 17 through the work of the first water pump 14, and meanwhile, the work of the vibration motor 18 is controlled, so that the vibration motor 18 can sufficiently and uniformly vibrate the ore pulp, and the magnet shaft 19 can better adsorb iron wires in the ore pulp;
it should be noted that, by providing the communicating cylinder 24, the liquid inside the arc-shaped channel 20 can conveniently enter the cylindrical channel 10 through the communicating cylinder 24, the rotating ring 8 is driven to rotate by the externally provided electric driving mechanism, in the process that the water flow enters the left side of the cylindrical channel 10, the iron wire is adsorbed outside the rotating ring 8 under the action of the semi-cylindrical magnet 7, in the process that the driving mechanism drives the rotating ring 8 to rotate, when the rotating ring 8 with the adsorbed iron wire rotates to the side without the semi-cylindrical magnet 7, the iron wire falls into the third discharge port 26 under the action of gravity, and the iron wire is collected in the second collecting tank 27 through the third discharge port 26;
referring to fig. 1 and fig. 2, a water tank 28 is installed at one end of the bottom of the magnetic separation tank 16, a second discharge hole 25 and a third discharge hole 26 are respectively arranged at the bottom of the cylindrical channel 10, an end of the second discharge hole 25 is located above the water tank 28, a second collecting tank 27 is arranged at a side edge of the water tank 28 in the magnetic separation tank 16, the third discharge hole 26 is located above the second collecting tank 27, and a magnet filter cover 29 is installed at the top of the water tank 28;
circle 8 is rotated in the electric drive mechanism drive that sets up through the outside, get into cylindrical passageway 10 left side in-process at rivers, make the iron wire adsorb outside rotating circle 8 under the effect of semicylinder magnet 7, in circle 8 rotations is rotated in the actuating mechanism drive, when the rotation circle 8 that adsorbs the iron wire rotates to the one side of no semicylinder magnet 7, make the iron wire drop to in third discharge gate 26 under the effect of gravity, it collects in second collecting vat 27 to make the iron wire arrange in through third discharge gate 26, and magnet screen lid 29 department is arranged in to liquid through second discharge gate 25, divide through magnet screen lid 29 to remaining iron wire and elect, water is retrieved to in water tank 28, can carry out reuse.
Referring to fig. 1 and 2, an air cylinder 30 is installed on the side wall of the magnetic separation box 16, a material pushing plate is slidably installed on the top of the magnetic filter screen cover 29, the end of a piston rod of the air cylinder 30 penetrates through the magnetic separation box 16 and is fixed to the material pushing plate, a second water pump 31 is installed on the top of the rack 1 and located on the side edge of the magnetic separation box 16, the water inlet end of the second water pump 31 is connected with the lower end of the water tank 28, and the water outlet end of the second water pump 31 is connected with the material mixing box 9;
the iron wires on the magnet filter screen cover 29 can be pushed to the inside of the second collecting tank 27 to be collected through the matching work of the air cylinder 30 and the material pushing plate on the magnet filter screen cover 29, so that the multistage magnetic separation of the iron wires is realized, and the product quality is ensured;
through the liquid discharged from the second discharge port 25 for removing iron wires, after the liquid is placed in the water tank 28 through the magnetic filter screen cover 29, the iron wires contained therein, which are not excessively sorted, are placed on the magnetic filter screen cover 29, and the electric control system arranged by the device controls the operation of the air cylinder 30, so that the iron wires on the magnetic filter screen cover 29 can be pushed to the inside of the second collecting tank 27 to be collected under the action of the material pushing plate.
The working principle is as follows: when the device is used, mineral materials are placed into the feeding hopper 6, the spiral feeding machine 2 is controlled to work through an electric control system arranged in the device, the mineral materials are conveyed into the mixing box 9, the second water pump 31 is controlled to work, liquid in the water tank 28 is pumped into the mixing box 9, the stirring motor 13 works to stir the internal mixed materials at the moment, the concentration of the slurry is uniformly stirred, the first water pump 14 works to convey ore pulp in the mixing box 9 into the feeding hole 17, the vibration motor 18 is controlled to work at the same time, the vibration motor 18 can sufficiently and uniformly vibrate the ore pulp, the magnet shaft 19 can better adsorb iron wires in the ore pulp, the magnet shaft 19 rotates clockwise under the action of an external driving mechanism, the iron wires on the magnet shaft 19 in the rotation process are scraped off by the scraping plate 21, the iron wires enter the first discharging hole 22 through the scraping plate 21 and enter the first collecting groove 23 through the first discharging hole 22 to be collected, and remaining ore pulp gets into cylindrical channel 10 through a intercommunication section of thick bamboo 24 inside and carries out the magnetic separation of next grade, get into cylindrical channel 10 left side in-process at rivers, make the iron wire adsorb outside rotating ring 8 under the effect of semicylinder magnet 7, in 8 rotations of actuating mechanism drive rotating ring, when the rotating ring 8 that adsorbs the iron wire rotates to the one side that does not have semicylinder magnet 7, make the iron wire drop to in third discharge gate 26 under the effect of gravity, make the iron wire arrange second collecting vat 27 in through third discharge gate 26 and collect, and magnet screen cover 29 department is arranged in through second discharge gate 25 to liquid, divide through magnet screen cover 29 and select remaining iron wire, water is retrieved to in water tank 28, can carry out reuse.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a multistage magnetic separation machine, includes frame (1) and spiral material loading machine (2), one side of frame (1) is provided with spiral material loading machine (2), its characterized in that still includes: thick liquids concentration adjustment mechanism (3), magnetic separation mechanism (4) and automatic thick liquids feed mechanism (5) of advancing, the one end that frame (1) top is located spiral material loading machine (2) is provided with thick liquids concentration adjustment mechanism (3), and the one end that thick liquids concentration adjustment mechanism (3) were kept away from at frame (1) top is provided with magnetic separation mechanism (4), the backup pad is installed to the opposite side of frame (1), and the backup pad top is provided with first collecting vat (23), the top of thick liquids concentration adjustment mechanism (3) is provided with automatic thick liquids feed mechanism (5) of advancing.
2. A multi-stage magnetic separator as claimed in claim 1 wherein: the slurry concentration adjusting mechanism (3) comprises a stirring shaft (11), a stirring blade (12) and a stirring motor (13), a mixing box (9) is fixedly arranged at one end of the top of the frame (1) positioned on the spiral feeding machine (2), and one end of the top of the mixing box (9) is provided with a feed hopper, the top end of the spiral feeding machine (2) is provided with a discharge barrel, and the end part of the discharge barrel is arranged right above the feed hopper, the lower end of the spiral feeding machine (2) is provided with a feeding hopper (6), a stirring shaft (11) is rotatably connected in the mixing box (9) through a bearing, and the outer side of the stirring shaft (11) is provided with stirring blades (12), the surfaces of the stirring blades (12) are equidistantly provided with filtering holes, the top of the mixing box (9) is provided with a stirring motor (13), and the end part of an output shaft of the stirring motor (13) extends into the mixing box (9) and is fixed with the stirring shaft (11).
3. The multi-stage magnetic separator of claim 2, wherein: the automatic slurry feeding and feeding mechanism (5) comprises a first water pump (14) and a discharge pipe (15), the first water pump (14) is installed at the other end of the top of the mixing box (9), a material suction pipe is installed at the feeding end of the first water pump (14), and the end of the material suction pipe extends into the lower end inside the mixing box (9).
4. A multistage magnetic separator as claimed in claim 3, wherein: the magnetic separation mechanism (4) comprises a magnetic separation box (16), a feed inlet (17), a vibration motor (18), a magnet shaft (19), an arc-shaped channel (20), a scraping plate (21) and a communicating cylinder (24), wherein the magnetic separation box (16) is installed at one end of the top of the rack (1) located at a first collecting tank (23), the arc-shaped channel (20) is installed at the top end of the inside of the magnetic separation box (16), the magnet shaft (19) is rotationally connected to the arc-shaped channel (20), the feed inlet (17) is installed at the top end of the inside of the magnetic separation box (16), the feed inlet (17) is fixed with the arc-shaped channel (20), the vibration motor (18) is installed at the bottom of the feed inlet (17), the magnet shaft (19) is fixedly installed at the outer side of the top end of the inside of the magnetic separation box (16), the magnet shaft (19) is fixedly installed with the scraping plate (21), and the end part of the scraping plate (21) is in contact with the outer side of the arc-shaped channel (19), the end part of the scraping plate (21) penetrates through the magnetic separation box (16) to be connected with a first discharge hole (22), and the first discharge hole (22) is located right above the first collecting groove (23).
5. A multi-stage magnetic separator as claimed in claim 4 wherein: the end part of the arc-shaped channel (20) is positioned at the bottom of the scraping plate (21) and is fixedly provided with a communicating cylinder (24), a cylindrical channel (10) is arranged in the magnetic separation box (16) below the scraping plate (21), a semi-cylindrical magnet (7) is fixedly arranged at one end of the cylindrical channel (10) positioned at the magnet shaft (19), the outer side of the semi-cylindrical magnet (7) in the cylindrical channel (10) is rotatably connected with a rotating ring (8), a water tank (28) is arranged at one end of the bottom of the magnetic separation box (16), a second discharge hole (25) and a third discharge hole (26) are respectively arranged at the bottom of the cylindrical channel (10), the end part of the second discharge hole (25) is positioned above the water tank (28), a second collecting groove (27) is arranged at the side edge of the water tank (28) in the magnetic separation box (16), and the third discharge hole (26) is positioned above the second collecting groove (27), and a magnet filter screen cover (29) is arranged at the top of the water tank (28).
6. The multi-stage magnetic separator of claim 5, wherein: cylinder (30) are installed to magnetic separation case (16) lateral wall, the top of magnet filter screen lid (29) slides and is provided with the scraping wings, the tailpiece of the piston rod portion of cylinder (30) passes magnetic separation case (16) and is fixed with the scraping wings, frame (1) top is located magnetic separation case (16) side and installs second water pump (31), the end of intaking of second water pump (31) is connected with the low side of water tank (28), and the play water end and the compounding case (9) of second water pump (31) are connected.
CN202023206869.1U 2020-12-28 2020-12-28 Multistage magnetic separation separator Active CN214262314U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023206869.1U CN214262314U (en) 2020-12-28 2020-12-28 Multistage magnetic separation separator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023206869.1U CN214262314U (en) 2020-12-28 2020-12-28 Multistage magnetic separation separator

Publications (1)

Publication Number Publication Date
CN214262314U true CN214262314U (en) 2021-09-24

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Application Number Title Priority Date Filing Date
CN202023206869.1U Active CN214262314U (en) 2020-12-28 2020-12-28 Multistage magnetic separation separator

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114014419A (en) * 2021-12-09 2022-02-08 佛山市水润环保科技有限公司 Super magnetic separation sewage treatment plant

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114014419A (en) * 2021-12-09 2022-02-08 佛山市水润环保科技有限公司 Super magnetic separation sewage treatment plant
CN114014419B (en) * 2021-12-09 2024-01-23 佛山市水润环保科技有限公司 Supermagnetic separation sewage treatment device

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