An agm separator slurry dross removal device
By introducing a slag-bearing filter plate and pressure ring design into the AGM slurry slag removal device, the slurry is thrown out by centrifugal force and the residue is squeezed out when necessary. This solves the problem of filter hole clogging, reduces maintenance costs and cleaning frequency, and improves slag removal efficiency and device stability.
Patent Information
- Application Number
- CN202411961081.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2044-12-30
AI Technical Summary
In existing AGM slurry removal devices, simple extrusion filtration can easily lead to filter pore blockage, increasing equipment maintenance costs and cleaning frequency.
The filter adopts a design with a slag-collecting filter disc and a pressure ring. The drive mechanism drives the slag removal filter cylinder to rotate, and centrifugal force is used to throw out the slurry. Squeezing is only performed when there is too much residue, which avoids clogging of the filter holes and reduces the number of maintenance and cleaning times.
It effectively avoids filter clogging, reduces equipment maintenance costs and cleaning frequency, and improves slag removal efficiency and device stability.
Smart Images

Figure CN119633479B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of battery production, and in particular to an AGM separator slurry deslagging device. Background Art
[0002] AGM separator is an integrated structural material composed of adsorbed glass fiber, rubber, conductive material and separator membrane, which is used to separate and isolate the positive and negative electrodes of the battery. In the production process of AGM separator, slurry deslagging is a crucial link, which is directly related to the quality and production efficiency of the separator.
[0003] The patent publication number of the existing patent application is: CN211836663U, and the publication date is November 3, 2020. The name of the patent is "A glass slag removal device for slurry in battery separator production". The patent includes a box body, the bottom wall of the box body is connected to a support leg, the bottom wall of the box body is plugged with a discharge pipe, the bottom of the box body is connected to a motor by bolts, and the output end of the motor passes through the inner wall of the box body and is connected to a support base. The outer wall of the support base is connected to a filter cartridge, the outer wall of the filter cartridge is connected to a filter hole, the inner wall of the filter cartridge is connected to a block, the inner wall of the filter cartridge is provided with a pressure plate, the top wall of the pressure plate is connected to a pressure rod, the inner wall of the pressure plate is provided with a valve, the top wall of the pressure rod is connected to a hydraulic cylinder, the inner top wall of the box body is connected to a support plate, and the bottom of the support plate is connected to a rotating plate; during use, the utility model can filter out the mixed slurry in the dirt and debris, so that the slurry can be used twice, saving a lot of slurry.
[0004] The above application has shortcomings. Most of the AGM partition slurry deslagging devices in the existing technology use centrifugal motion or extrusion to filter impurities in the slurry. However, although simple extrusion can accelerate the flow of the slurry, it often causes the filter holes to be clogged. With the continuous use of the filter screen, it needs to be frequently replaced and cleaned, which increases the maintenance cost of the equipment. Summary of the Invention
[0005] The object of the present invention is to provide an AGM separator slurry deslagging device to solve the above-mentioned deficiencies in the prior art.
[0006] In order to achieve the above object, the present invention provides the following technical solutions:
[0007] The filter element is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing, so that the filter housing is fixed to the filter housing, and the filter element is fixed to the filter housing,
[0008] Preferably, a lifting basket is nested inside the slag removal filter cartridge, a plurality of limiting rods are distributed in a ring on the inner wall of the slag removal filter cartridge, a sliding groove matching the limiting rods is vertically opened on the outer side of the lifting basket, and the edges of the slag filter plate and the pressure ring are respectively clamped with the lifting basket.
[0009] Preferably, the driving mechanism includes a driving motor fixed to the bottom of the barrel, the output shaft of the driving motor is equipped with a transmission shaft in the barrel, a plurality of abutment rods are installed on the transmission shaft, the abutment rods are located between two adjacent wedge-shaped abutment blocks, and the abutment rods are respectively abutted against both sides of the wedge-shaped abutment blocks.
[0010] Preferably, the transmission shaft outer sleeve is provided with a top spring, the bottom end of the top spring is against the bottom of the inner wall of the slag removal filter cartridge, and the top end of the top spring is against the bottom of the slag filter plate.
[0011] Preferably, the pressing brake member includes a connecting rod vertically slidably mounted on the outer wall of the slag removal filter cartridge, a pad rod is fixedly connected to one side of the connecting rod, a through groove for the pad rod to move is vertically opened on the slag removal filter cartridge, a pressure block is fixedly connected to the top of the connecting rod, and the pressure block is in contact with the surface of the friction ring.
[0012] Preferably, the slag removal filter cartridge is provided with a plurality of slag discharge ports, the slag discharge ports are located above the pressure ring, and a pulling rod penetrating the slag filter plate is fixedly connected to the bottom of the pressure ring.
[0013] Preferably, a cover plate is movably installed in the slag discharge port, a shift block is hinged on the inner side of the cover plate, a top column is fixedly connected to the top of the pressure ring below the shift block, and an annular slag storage bin connected to the slag discharge port is installed outside the barrel.
[0014] Preferably, an annular boss is fixedly connected to the inner wall of the barrel, and a push-on connector is slidably installed at the mouth of the slag removal filter cartridge. The bottom of the push-on connector is in abutment with the top surface of the annular boss. When one end of the push-on connector is engaged with the lifting basket, the slag removal filter cartridge is forced to lift.
[0015] Preferably, the push-pull coupling includes a toggle frame, a sliding rod is fixedly connected to the bottom of the toggle frame, the sliding rod passes through the mouth of the slag filter cartridge and is fixedly connected to an abutment block, an annular groove is provided on the outer periphery of the top surface of the annular boss, the abutment block is located in the annular groove, and a limiting slot is provided at one end of the bottom of the toggle frame to be engaged with the lifting basket.
[0016] Preferably, the diameter of the conical protrusion of the slag filter disc is equal to the inner diameter of the pressure ring.
[0017] In the above technical solution, a slag filter disc is provided to store and filter the residue in the slurry. When there is less residue on the slag filter disc, the driving mechanism can directly drive the entire slag filter cartridge to rotate and quickly throw out the slurry in the cartridge. When there is too much residue on the slag filter disc, the slag filter disc will sink to a certain height under the action of gravity, and the braking member will limit the rotation of the slag filter cartridge. At this time, when the driving mechanism rotates in the opposite direction, it will not only intermittently lift the slag filter cartridge, but also drive the pressure ring in the slag filter cartridge to descend, and the pressure ring and the slag filter disc will cooperate with each other to squeeze while vibrating the slag. Squeezing is only performed when there is too much residue in the cartridge, which can avoid frequent squeezing that may cause the filter holes on the slag filter cartridge to be clogged, thereby reducing the maintenance cost and cleaning times of the device.
[0018] It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure.
[0019] This application document provides an overview of various implementations or examples of the technology described in this disclosure, and is not a comprehensive disclosure of the full scope or all features of the disclosed technology. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments described in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0021] Figure 1 This is a schematic diagram of the overall structure of an AGM separator slurry deslagging device according to the present invention;
[0022] Figure 2 This is an overall cross-sectional view of an AGM separator slurry deslagging device according to the present invention;
[0023] Figure 3 This is a schematic diagram of the internal structure of a material barrel in an AGM separator slurry deslagging device of the present invention;
[0024] Figure 4A top view of a deslagging filter cartridge in an AGM separator slurry deslagging device according to the present invention;
[0025] Figure 5 It is a partial cross-sectional schematic diagram of a deslagging filter cartridge in an AGM separator slurry deslagging device of the present invention;
[0026] Figure 6 For the present invention Figure 5 A magnified view of the structure at point A;
[0027] Figure 7 This is a structural schematic diagram of a basket in an AGM separator slurry deslagging device according to the present invention;
[0028] Figure 8 The present invention is a schematic structural diagram of an annular boss and a push-on clip in an AGM separator slurry removal device.
[0029] Description of reference numerals:
[0030] 1. Material barrel; 101. Friction ring; 102. Annular slag storage bin; 103. Annular boss; 104. Annular groove; 2. Slag removal filter cartridge; 201. Wedge-shaped abutment; 202. Limit rod; 203. Through groove; 204. Slag discharge port; 205. Cover plate; 206. Diverter block; 3. Slag filter disc; 4. Driving mechanism; 401. Driving motor; 402. Transmission shaft; 403. Abutment rod; 404. Top spring; 5. Pressing ring; 501. Push column; 502. Pulling rod; 6. Abutment brake; 601. Connecting rod; 602. Pad rod; 603. Pressing block; 7. Lifting basket; 701. Slide groove; 8. Abutment connector; 801. Diverter frame; 802. Slide rod; 803. Abutment block; 804. Limiting notch. DETAILED DESCRIPTION
[0031] In order to make the technical solution of the present invention clearer, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0032] See also Figure 1-8The embodiment of the present invention provides an AGM separator slurry deslagging device, comprising a material barrel 1, and a deslagging filter cartridge 2, which is rotatably mounted in the material barrel 1. A deslagging filter disc 3 is elastically connected to the deslagging filter cartridge 2, and the center of the deslagging filter disc 3 is a conical protrusion. A driving mechanism 4 is mounted at the bottom of the material barrel 1. A circle of wedge-shaped abutting blocks 201 are provided at the bottom of the deslagging filter cartridge 2 to abut against the driving mechanism 4. A pressure ring 5 is installed above the deslagging filter disc 3 inside the deslagging filter cartridge 2. The driving mechanism 4 It passes through the center of the slag filter disc 3 and is threadedly connected to the pressure ring 5. The pressure brake 6 is vertically movably installed on the outer wall of the slag filter cartridge 2. One side of the pressure brake 6 is located below the slag filter disc 3. The inner wall of the barrel 1 is installed with a friction ring 101 that elastically abuts against the top of the pressure brake 6. When the slag filter disc 3 sinks and presses against the pressure brake 6, the pressure brake 6 presses against the friction ring 101 to limit the rotation of the slag filter cartridge 2, so that the driving mechanism 4 drives the pressure ring 5 to move downward toward the filter disc.
[0033] Specifically, first, the main structure of the device includes a material barrel 1, which is used to hold the slurry to be deslagging. Inside the material barrel 1, a deslagging filter cartridge 2 is rotatably installed, and the deslagging filter cartridge 2 is used to filter the residue in the slurry. The deslagging filter disc 3 in the deslagging filter cartridge 2 is elastically connected to the deslagging filter cartridge 2, and the central part of the deslagging filter disc 3 is designed with a conical protrusion. This design helps the residue in the slurry to diffuse to the outer edge under the action of centrifugal force, and the driving mechanism 4 at the bottom of the material barrel 1 can provide rotational power to the deslagging material barrel 1. The bottom of the deslagging filter cartridge 2 is provided with a circle of wedge-shaped blocks 201, which abut and cooperate with the driving part of the driving mechanism 4, thereby realizing the rotation of the deslagging filter cartridge 2. Inside the deslagging filter cartridge 2, and above the deslagging filter disc 3, a pressure ring 5 is installed. The driving shaft of the driving mechanism 4 passes through the central part of the deslagging filter disc 3 and is connected to The pressure ring 5 is threadedly connected. In addition, a pressure brake 6 is vertically movably installed on the outer wall of the slag filter cartridge 2. One side of the pressure brake 6 is located below the slag filter disc 3. When the residue on the slag filter disc 3 accumulates to a certain extent and causes the weight to increase, the slag filter disc 3 will sink and press against the pressure brake 6. At the same time, a friction ring 101 that elastically presses against the top of the pressure brake 6 is installed on the inner wall of the barrel 1. When the pressure brake 6 is pressed by the slag filter disc 3, it will further press against the friction ring 101, thereby limiting the rotation of the slag filter cartridge 2 through friction force. In this way, when the driving mechanism 4 rotates, as long as the slag filter cartridge does not rotate, the pressure ring 5 can be driven up and down by the threaded connection. When the device is working, the slurry is poured into the barrel 1. Through the rotation of the slag filter cartridge 2, the liquid part of the slurry is thrown out, and the residue is trapped on the slag filter disc 3. When there is less residue on the slag filter disc 3, the drive mechanism 4 can directly drive the slag filter cartridge 2 to rotate, achieving rapid slag removal. As the residue accumulates, the slag filter disc 3 sinks due to gravity, triggering the pressure brake 6 to press against the friction ring 101, thereby limiting the rotation of the slag filter cartridge 2. At this time, the drive mechanism 4 rotates in the opposite direction, not only intermittently lifting the slag filter cartridge 2 to disperse the slag, but also driving the pressure ring 5 to descend, cooperating with the slag filter disc 3 to squeeze the residue, achieving deep slag removal. This design avoids the problem of filter hole clogging caused by frequent squeezing, effectively reducing the maintenance cost and cleaning frequency of the device.
[0034] Compared with the prior art, the embodiment of the present invention stores and filters the residue in the slurry by providing a residue filter disc 3. When there is less residue on the residue filter disc, the driving mechanism 4 can directly drive the entire residue filter cylinder 2 to rotate and quickly throw out the slurry in the cylinder. When there is too much residue on the residue filter disc 3, the residue filter disc 3 will sink to a certain height under the action of gravity, and the pressing brake 6 will limit the rotation of the residue filter cylinder 2. At this time, when the driving mechanism 4 rotates in the opposite direction, it will not only intermittently lift the residue filter cylinder 2, but also drive the pressure ring 5 in the residue filter cylinder 2 to descend, and let the pressure ring 5 and the residue filter disc 3 cooperate with each other to squeeze while vibrating the slag. Squeezing is only performed when there is too much residue in the cylinder. Frequent squeezing can avoid clogging of the filter holes on the residue filter cylinder 2, thereby reducing the maintenance cost and cleaning times of the device.
[0035] In a further embodiment of the present invention, a lifting basket 7 is nested inside the slag filter cartridge 2, and a number of limiting rods 202 are annularly distributed on the inner wall of the slag filter cartridge 2. A slide groove 701 matching the limiting rod 202 is vertically opened on the outer side of the lifting basket 7, and the edges of the slag filter disc 3 and the pressure ring 5 are respectively engaged with the lifting basket 7. Specifically, when the lifting basket 7 is placed in the slag filter cartridge 2, the limiting rod 202 will slide into the slide groove 701. Due to the engaging cooperation between the lifting basket 7 and the slag filter disc 3, the stability and reliability of the lifting basket 7 in the slag filter cartridge 2 are ensured. Even in the case of high-speed rotation, the lifting basket 7 will not shake or fall off. At the same time, the slag filter disc 3 and the pressure ring 5 are all in the lifting basket, and both and the lifting basket 7 rotate with the rotation of the slag filter cartridge 2 to achieve synchronous throwing out of the slurry.
[0036] In a further embodiment of the present invention, the driving mechanism 4 includes a driving motor 401 fixed to the bottom of the barrel 1, and the output shaft of the driving motor 401 is equipped with a transmission shaft 402 in the barrel 1, and a plurality of abutting rods 403 are installed on the transmission shaft 402, and the abutting rods 403 are located between two adjacent wedge-shaped abutting blocks 201, and the abutting rods 403 are respectively abutted with both sides of the wedge-shaped abutting blocks 201. Specifically, under normal working conditions, the driving motor 401 is started and drives the transmission shaft 402 to rotate, and the abutting rods 403 on the transmission shaft 402 rotate along with it, and drive the slag filter drum 2 to rotate through the abutment with the wedge-shaped abutting blocks 201. When the residue on the slag filter disc 3 is less, the slag filter drum 2 can rotate smoothly, and the slurry in the drum is quickly thrown out by centrifugal force. The slag will also be intercepted by the slag filter disc 3. When the residue on the slag filter disc 3 accumulates to a certain level and causes the weight to increase, the slag filter disc 3 will sink a certain height under the action of gravity and trigger the pressure brake 6 to limit the rotation of the slag filter cartridge 2. At this time, if the drive motor 401 continues to rotate, due to the action of the pressure brake 6, the slag filter cartridge 2 will not rotate, but will drive the pressure ring 5 in the slag filter cartridge 2 to descend alone to achieve the squeezing of the residue. At the same time, the abutment rod 403 on the transmission shaft 402 will continue to abut and cooperate with the wedge-shaped abutment block 201, but since the rotation of the slag filter cartridge 2 is restricted, the abutment rod 403 will generate a certain impact force on the slag filter cartridge 2 through the wedge-shaped abutment block 201, so that the slag filter cartridge 2 is intermittently lifted up, further improving the filtering effect of the residue in the slurry.
[0037] In a further embodiment of the present invention, a top spring 404 is provided on the outer sleeve of the transmission shaft 402, the bottom end of the top spring 404 is against the bottom of the inner wall of the slag removal filter cartridge 2, and the top end of the top spring 404 is against the bottom of the slag filter disc 3. Specifically, the top spring 404 adds an elastic support and buffer mechanism to the entire device, which can be expanded and contracted according to the weight change of the residue on the slag filter disc 3, thereby realizing floating support for the slag filter disc 3, allowing the slag filter disc 3 to be lowered at an appropriate time, thereby reducing the number of manual observation and maintenance.
[0038] In a further embodiment of the present invention, the pressing brake member 6 includes a connecting rod 601 vertically slidably mounted on the outer wall of the slag filter cartridge 2, a pad rod 602 is fixedly connected to one side of the connecting rod 601, a through groove 203 for the pad rod 602 to move is vertically opened on the slag filter cartridge 2, a pressure block 603 is fixedly connected to the top of the connecting rod 601, and the pressure block 603 is in contact with the surface of the friction ring 101. Specifically, the slag filter cartridge 2 rotates smoothly under the drive of the driving mechanism 4. At this time, the connecting rod 601 and the pad rod 602 and the pressure block 603 thereon remain relatively stationary, the slag filter disc 3 in the slag filter cartridge 2 is not placed on the pad rod 602, and the pressure block 603 does not contact the friction ring 101, so it will not hinder the rotation of the slag filter cartridge 2. However, when the slag filter disc 3 is When the residue accumulates to a certain extent and causes its weight to increase, the residue filter disc 3 will sink and rest on the pad rod 602, thereby driving the connecting rod 601 to slide vertically. As the connecting rod 601 slides, the pressure block 603 will gradually approach and contact the surface of the friction ring 101. When the pressure block 603 is in close contact with the friction ring 101, due to the action of friction, it will limit the further rotation of the residue filter cartridge 2. At this time, if the driving mechanism 4 continues to try to rotate the residue filter cartridge 2, the friction between the pressure block 603 and the friction ring 101 will produce a braking effect, which improves the safety and stability of the device through friction braking. At the same time, it also provides convenience for subsequent residue processing and cleaning operations, and enables the pressure ring 5 to squeeze the residue on the residue filter disc 3 alone.
[0039] In a further embodiment of the present invention, a plurality of slag discharge ports 204 are provided on the slag removal filter cartridge 2, and the slag discharge ports 204 are located above the pressure ring 5, and a pulling rod 502 that passes through the slag filter disc 3 is fixedly connected to the bottom of the pressure ring 5. Specifically, when the output shaft of the drive motor 401 rotates in the other direction, as long as the slag removal filter cartridge 2 remains in a state where it cannot rotate, the slag filter disc 3 inside it can move upward with the filtered residue driven by the pressure ring 5. While moving, the edge part can also scrape off the residue attached to the inner wall of the slag removal filter cartridge 2, and then push the residue into the slag discharge port 204, which makes cleaning quick and convenient.
[0040] In a further embodiment of the present invention, a cover plate 205 is movably installed in the slag discharge port 204, a shift block 206 is hinged on the inner side of the cover plate 205, a top column 501 is fixedly connected to the top of the pressure ring 5 below the shift block 206, and an annular slag storage bin 102 connected to the slag discharge port 204 is installed outside the barrel 1. Specifically, under normal working conditions, the cover plate 205 closes the slag discharge port 204 to prevent slurry and residue from leaking out of the slag discharge port 204. When the pressure ring 5 rises under the action of the driving mechanism 4, the residue squeezed on the slag filter plate 3 is gradually released, and the residue is kept in the slag filter plate 3 until the pressure ring 5 is released. The gap between the ring 5 and the slag filter disc 3 becomes larger, and the traction rod at the bottom of the pressure ring 5 pulls the slag filter disc 3 upward, and the top column 501 on the top of the pressure ring 5 will contact and push the dial block 206, thereby driving the cover plate 205 to open the slag discharge port 204, and the extruded residue will be smoothly discharged into the annular slag storage bin 102 for collection through the slag discharge port 204 of the slag removal filter cartridge 2 and the opened cover plate 205. This design not only improves the slag removal efficiency, but also ensures the smooth discharge of the residue and the cleanliness of the device, while avoiding the problem of residue leakage during the discharge process.
[0041] In a further embodiment of the present invention, an annular boss 103 is fixedly connected to the inner wall of the barrel 1, and a push-on clip 8 is slidably installed at the mouth of the slag filter cartridge 2. The bottom of the push-on clip 8 is in contact with the top surface of the annular boss 103. When one end of the push-on clip 8 is engaged with the lifting basket 7, the slag filter cartridge 2 is forced to lift. Specifically, under normal working conditions, the slag filter cartridge 2 is located in the barrel 1, and the push-on clip 8 at the mouth of the barrel keeps in contact with the annular boss 103 but does not generate any friction. Lifting force. If there is too much residue in the slag filter cartridge 2, the push-pull clamp 8 can be pushed to slide along the tube mouth of the slag filter cartridge 2, and the slag filter cartridge 2 is lifted as a whole by means of the abutment with the annular boss 103. The push-pull clamp 8 also plays a role in limiting the rotation of the lifting blue, so that the driving mechanism 4 can drive the pressure ring 5 to rise alone without being affected by the wedge-shaped block 201, thereby improving the efficiency of discharging the residue from the slag discharge port 204.
[0042] In a further embodiment of the present invention, the push-pull coupling 8 includes a toggle frame 801, a sliding rod 802 is fixedly connected to the bottom of the toggle frame 801, the sliding rod 802 passes through the mouth of the slag removal filter cartridge 2 and is fixedly connected to an abutment block 803, an annular groove 104 is provided on the outer periphery of the top surface of the annular boss 103, and the abutment block 803 is located in the annular groove 104, and a limiting notch 804 is provided at one end of the bottom of the toggle frame 801 for engaging with the basket 7. Specifically, during the normal slag removal filtering process, the abutment block 803 of the push-pull coupling 8 is stably embedded in the annular groove 104 of the annular boss 103, and the toggle frame 80 1 is located at the mouth of the slag filter cartridge 2. If the lifting basket 7 needs to be lifted, the toggle frame 801 needs to be pushed toward the center along the mouth of the slag filter cartridge 2. Due to the fixed connection between the slide rod 802 and the abutment block 803 and the abutment cooperation between the abutment block 803 and the annular groove 104, when the toggle frame 801 slides, it will transfer the slide rod 802 and the abutment block 803 to move the abutment block 803 out of the annular groove 104, forcing the slag filter cartridge 2 to be lifted as a whole. After lifting, the abutment brake 6 no longer has any related effect, making the driving mechanism 4 more stable when driving the slag filter cartridge 2.
[0043] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. An AGM separator slurry deslagging device, comprising a barrel (1), characterized in that: Also includes: A slag removal filter cartridge (2) is rotatably mounted in the material barrel (1), wherein a slag filter disc (3) is elastically connected to the slag removal filter cartridge (2), and the center of the slag filter disc (3) is a conical protrusion; A driving mechanism (4) is installed at the bottom of the barrel (1); a wedge-shaped abutment block (201) is provided at the bottom of the slag removal filter cartridge (2) and is in contact with the driving mechanism (4); a pressure ring (5) is installed inside the slag removal filter cartridge (2) above the slag filter disc (3); the driving mechanism (4) passes through the center of the slag filter disc (3) and is threadedly connected to the pressure ring (5); A pressure brake member (6) is vertically movably mounted on the outer wall of the slag removal filter cartridge (2), one side of the pressure brake member (6) is located below the slag filter disc (3), and a friction ring (101) is mounted on the inner wall of the barrel (1) to elastically abut against the top of the pressure brake member (6); The pressing brake member (6) comprises a connecting rod (601) vertically slidably mounted on the outer wall of the slag removal filter cartridge (2), a pad rod (602) being fixedly connected to one side of the connecting rod (601), a through slot (203) for the pad rod (602) to move is vertically opened on the slag removal filter cartridge (2), a pressure block (603) is fixedly connected to the top of the connecting rod (601), and the pressure block (603) is in contact with the surface of the friction ring (101); The slag removal filter cartridge (2) is provided with a plurality of slag discharge ports (204), the slag discharge ports (204) being located above the pressure ring (5), and a pulling rod (502) penetrating the slag filter disc (3) is fixedly connected to the bottom of the pressure ring (5); A cover plate (205) is movably installed in the slag discharge port (204), a shift block (206) is hingedly connected to the inner side of the cover plate (205), a top column (501) is fixedly connected to the top of the pressure ring (5) below the shift block (206), and an annular slag storage bin (102) connected to the slag discharge port (204) is installed outside the barrel (1); When the slag filter disc (3) sinks and presses against the pressing brake member (6), the pressing brake member (6) presses against the friction ring (101) to limit the rotation of the slag filter cartridge (2), so that the driving mechanism (4) drives the pressure ring (5) to move downward toward the slag filter disc (3).
2. The AGM separator slurry deslagging device according to claim 1, characterized in that: A basket (7) is nested inside the slag removal filter cartridge (2), a plurality of limiting rods (202) are annularly distributed on the inner side wall of the slag removal filter cartridge (2), a sliding groove (701) matching the limiting rods (202) is vertically opened on the outer side of the basket (7), and the edges of the slag filter disc (3) and the pressure ring (5) are respectively engaged with the basket (7).
3. The AGM separator slurry deslagging device according to claim 1, characterized in that: The driving mechanism (4) comprises a driving motor (401) fixed to the bottom of the barrel (1); the output shaft of the driving motor (401) is provided with a transmission shaft (402) in the barrel (1); a plurality of abutting rods (403) are provided on the transmission shaft (402); the abutting rods (403) are located between two adjacent wedge-shaped abutting blocks (201), and the abutting rods (403) respectively abut against two sides of the wedge-shaped abutting blocks (201).
4. The AGM separator slurry deslagging device according to claim 3, characterized in that: The outer sleeve of the transmission shaft (402) is provided with a top spring (404), the bottom end of the top spring (404) abuts against the bottom of the inner wall of the slag removal filter cartridge (2), and the top end of the top spring (404) abuts against the bottom of the slag filter disc (3).
5. The AGM separator slurry deslagging device according to claim 2, characterized in that: An annular boss (103) is fixedly connected to the inner wall of the barrel (1), and a push-on connector (8) is slidably mounted at the mouth of the slag removal filter cartridge (2). The bottom of the push-on connector (8) abuts against the top surface of the annular boss (103). When one end of the push-on connector (8) is engaged with the lifting basket (7), the slag removal filter cartridge (2) is forced to rise.
6. The AGM separator slurry deslagging device according to claim 5, characterized in that: The push-pushing coupling (8) comprises a toggle frame (801), a sliding rod (802) fixedly connected to the bottom of the toggle frame (801), the sliding rod (802) passing through the mouth of the slag removal filter cartridge (2) and fixedly connected to an abutment block (803), an annular groove (104) is provided on the outer periphery of the top surface of the annular boss (103), the abutment block (803) is located in the annular groove (104), and a limiting notch (804) is provided at one end of the bottom of the toggle frame (801) for engaging with the basket (7).
7. The AGM separator slurry deslagging device according to claim 1, characterized in that: The diameter of the conical protrusion of the slag filter disc (3) is equal to the inner diameter of the pressure ring (5).
Citation Information
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