Efficient inclined plate thickener
By introducing swing cleaning and stirring mechanisms into the inclined plate thickening machine, the surface and internal cleaning problems of inclined plates are solved, automatic cleaning and efficient concentration are achieved, and the efficiency of thickening and clarification is improved.
Patent Information
- Application Number
- CN202510464886.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-07-11
AI Technical Summary
In existing inclined plate thickening machines, the surface and interior of the inclined plates are difficult to clean, and water is difficult to extrude from the thick phase layer, affecting the density and clarification efficiency.
The swing cleaning mechanism is used to drive the reciprocating movement of the inclined plate group module, combined with the stirring mechanism to prevent the slurry from condensing, remove the deposits through the gravity of the solid matter and the action of water, and improve the slurry fluidity and concentration through the stirring mechanism to promote the rapid discharge of water.
Automatic cleaning of inclined plate thickener is realized, setting efficiency and concentration effect are improved, solid materials are prevented from bonding to the inner wall, and the fluidity and concentration of the concentrated slurry are enhanced.
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Figure CN120285625A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mineral processing equipment, and particularly to an efficient inclined plate thickener. Background Art
[0002] In the beneficiation process, it is often necessary to thicken and clarify pulp with low density and fine particle size. If natural sedimentation is used for thickening and clarification, the thickening and clarification speed is extremely slow, and a large sedimentation area is required, so the thickening and clarification efficiency is extremely low. An inclined plate thickener is a solid-liquid separation device based on gravity sedimentation. The inclined plate thickener is internally provided with an inclined plate group, and the sedimentation occurs in the cavities between the inclined plates of the inclined plate group. The distance between the inclined plates is very small, and laminar flow is easily formed. Since the inclined plates are stacked layer by layer, the space of the thickener is fully utilized. Therefore, the sedimentation area of the inclined plate thickener with the same floor area is much larger than that of the ordinary rake thickener, and the cross-sectional area of the inclined plate thickener with the same sedimentation area is much smaller than that of the ordinary rake thickener. The fluid velocity in the inclined plate thickener is much greater than the water flow velocity in the ordinary rake thickener. Therefore, its thickening and clarification efficiency is high, and it is widely used in various beneficiation enterprises.
[0003] After the inclined plate group in the inclined plate thickener is used for a period of time, the surface of the inclined plate will inevitably scale or form material accumulation, reducing the channel between the inclined plates and reducing the processing capacity of the inclined plate thickener; the existing inclined plate thickener lacks an internal cleaning structure, and sediments are easy to accumulate on the side wall of the conical hopper, affecting the discharging and cleaning.
[0004] Generally, effective flocculants need to be added to thicken and clarify materials with low density and fine particle size. The fine particles are flocculated into larger flocs to increase the sedimentation speed, effectively improve the clarification efficiency, and reduce the clarification area of the thickening equipment. However, research shows that the concentrated phase layer formed by the flocs after precipitation is a uniform system. It is an extremely difficult and long process to squeeze out water from the concentrated phase layer only by its own gravity. Summary of the Invention
[0005] The purpose of the present invention is to provide an efficient inclined plate thickener to solve the problems that the surface and interior of the inclined plate in the existing inclined plate thickener are difficult to clean, and it is difficult to squeeze out water from the concentrated phase layer.
[0006] To solve the above technical problems, the present invention adopts the following technical solutions:
[0007] An efficient inclined plate thickener of the present invention includes a bottom plate, a support platform is arranged on the top surface of the bottom plate, a rotatable cylinder is arranged above the support platform, a first driving mechanism for driving the rotation of the cylinder is arranged on one side of the cylinder, a stirring mechanism is arranged inside the cylinder, a discharging mechanism is arranged on the side surface of the cylinder, a discharging pipe is arranged at the bottom of the discharging mechanism, a box body is arranged above the cylinder, the box body is connected to the bottom plate through a support frame, an inclined plate group module is arranged inside the box body, an overflow mechanism is arranged at the top of the inclined plate group module, and a swinging cleaning mechanism for driving the movement of the inclined plate group module is arranged at the top of the box body.
[0008] Further, the first driving mechanism includes a gear ring, the gear ring is arranged on the outer side of the cylinder, a gear is meshed and connected to one side of the gear ring, and a driving component for driving the rotation of the gear is arranged on one side of the gear.
[0009] Still further, the driving component includes a second motor, a support plate is arranged on the support frame on the right side, the second motor is arranged below the support plate, and the second motor is connected to the gear through a first transmission component.
[0010] Still further, the stirring mechanism includes a third motor, the third motor is arranged below the cylinder, the output shaft of the third motor extends into the cylinder and is connected to a rotating seat, and stirring paddles, a bottom wall scraper, a side wall scraper and a pushing plate are arranged on the outer wall of the rotating seat.
[0011] Still further, the discharging mechanism includes a fixed frame, a discharging port is arranged on the side wall of the cylinder, the fixed frame is arranged outside the discharging port, a cylinder is arranged on one side of the fixed frame away from the discharging port, the piston rod of the cylinder penetrates through the fixed frame and is connected to a movable frame, a baffle plate matching the discharging port is arranged on the movable frame, moving wheels are arranged on both sides of the movable frame, a wheel groove matching the moving wheels is arranged on the top surface of the fixed frame, and the discharging pipe is arranged below the fixed frame.
[0012] Still further, the number of the inclined plate group modules is set to two, the two inclined plate group modules are symmetrically arranged, and one swinging cleaning mechanism is arranged above each inclined plate group module.
[0013] Still further, the inclined plate group module includes a frame, partitions are arranged at positions near the front and rear sides inside the frame, and a plurality of inclined plates are arranged between the two partitions.
[0014] Furthermore, the overflow mechanism includes an overflow groove, the overflow groove is connected to the inner wall of the box body, one end of the overflow groove is connected to an overflow pipe, and a plurality of overflow holes are opened on the side wall of the overflow groove.
[0015] Furthermore, the swing cleaning mechanism includes two symmetrically arranged swing components, and a second driving mechanism is arranged above the two swing components; the swing component includes a horizontal support plate, a vertical support plate is arranged on the top surface of the horizontal support plate, a turntable is arranged on the vertical support plate, a connecting column is eccentrically arranged on the turntable, a slide groove is arranged on the horizontal support plate, a movable frame is arranged in the slide groove, the movable frame is connected to the connecting column through a connecting rod, the movable frame is connected to the frame, and the second driving mechanism simultaneously drives the two symmetrically arranged turntables to rotate.
[0016] Furthermore, the second driving mechanism includes a first motor, which is arranged on a side of the vertical support plate away from the turntable, and a connecting shaft is arranged between the vertical support plates. The output shaft of the first motor is connected to the connecting shaft, and the central axis of the turntable is connected to the connecting shaft through a second transmission assembly.
[0017] Compared with the prior art, the beneficial technical effects of the present invention are:
[0018] The present invention drives the inclined plate group module to reciprocate by arranging a swing cleaning mechanism, and the solids accumulated on the inclined plate are separated from the inclined plate by the gravity of the solids and the action of water, so as to achieve the function of removing the solid materials accumulated in the sedimentation cavity and realize the automatic cleaning of the sedimentation cavity; by arranging a stirring mechanism, the concentrated slurry is prevented from agglomerating into blocks, the fluidity and concentration of the concentrated slurry are improved, and the solid materials are prevented from adhering to the inner wall of the cylinder; the dense phase layer is subjected to the rotation action of the stirring mechanism and the cylinder in the cylinder, so that the uniform system of the dense phase layer is destroyed, and a large amount of water channels are generated inside the dense phase layer, so that the water in the dense phase layer is quickly discharged. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will be further described below in conjunction with the accompanying drawings.
[0020] Figure 1 It is a front view of the high-efficiency inclined plate thickener of the present invention;
[0021] Figure 2 is a cross-sectional view of the box body of the present invention;
[0022] Figure 3 A top view of the box of the present invention;
[0023] Figure 4 It is a schematic diagram of the three-dimensional structure of the inclined plate group module of the present invention;
[0024] Figure 5 Side view of the swing cleaning mechanism of the present invention;
[0025] Figure 6 Schematic three-dimensional structure diagram of the swing assembly of the present invention;
[0026] Figure 7 Schematic three-dimensional structure diagram of the overflow tank and overflow pipe of the present invention;
[0027] Figure 8 Schematic three-dimensional structure diagram of the stirring mechanism and discharging mechanism of the present invention.
[0028] Explanation of reference numerals: 1, bottom plate; 2, support frame; 3, box body; 4, support platform; 5, cylinder; 5-1, discharge port; 6, inclined plate group module; 6-1, frame; 6-2, partition plate; 6-3, inclined plate; 7, overflow tank; 7-1, overflow hole; 8, overflow pipe; 9, swing cleaning mechanism; 9-1, horizontal support plate; 9-1-1, chute; 9-2, vertical support plate; 9-3, turntable; 9-4, connecting column; 9-5, connecting rod; 9-6, moving frame; 9-7, first motor; 9-8, first pulley; 9-9, connecting shaft; 9-10, second pulley; 9-11, first synchronous belt; 10, gear ring; 11, gear; 12, support plate; 13, second motor; 14, third pulley; 15, fourth pulley; 16, second synchronous belt; 17, stirring mechanism; 17-1, third motor; 17-2, rotating seat; 17-3, stirring paddle; 17-4, bottom wall scraper; 17-5, side wall scraper; 17-6, pushing plate; 18, discharging mechanism; 18-1, fixed frame; 18-2, cylinder; 18-3, movable frame; 18-4, baffle plate; 18-5, moving wheel; 18-6, wheel groove; 19, discharge pipe. Detailed implementation manners
[0029] As Figure 1-8 shown, a high-efficiency inclined plate thickener includes a bottom plate 1, a support platform 4 is connected to the top surface of the bottom plate 1, a rotatable cylinder 5 is rotatably installed above the support platform 4 through a bearing, a first driving mechanism for driving the rotation of the cylinder 5 is arranged on one side of the cylinder 5, a stirring mechanism 17 is installed inside the cylinder 5, a discharging mechanism 18 is installed on the side surface of the cylinder 5, a discharge pipe 19 is connected to the bottom of the discharging mechanism 18, a box body 3 is connected to the upper part of the cylinder 5 through a rotary sealing structure, the box body 3 is connected to the bottom plate 1 through two support frames 2, an inclined plate group module 6 is installed inside the box body 3, an overflow mechanism is installed at the top of the inclined plate group module 6, and a swing cleaning mechanism 9 for driving the movement of the inclined plate group module 6 is installed on the top of the box body 3.
[0030] The first driving mechanism includes a ring gear 10, which is installed on the outside of the cylinder 5, and one side of the ring gear 10 is meshed with a gear 11, and one side of the gear 11 is provided with a driving component for driving the gear 11 to rotate; the driving component includes a second motor 13, and a support plate 12 is connected to the support frame 2 located on the right side, the second motor 13 is installed under the support plate 12, and the second motor 13 is connected to the gear 11 through a first transmission component; the first transmission component includes a third pulley 14 and a fourth pulley 15, the third pulley 14 is installed on the output shaft of the second motor 13, and the fourth pulley 15 is installed on the central axis of the gear 11, and the third pulley 14 and the fourth pulley 15 are connected through a second synchronous belt 16.
[0031] In this embodiment, the first transmission assembly is located above the second motor 13 and the gear 11. This arrangement increases the distance between the second motor 13 and the cylinder 5, preventing the discharge mechanism 18 from colliding with the second motor 13 during the rotation of the cylinder 5.
[0032] When in use, the second motor 13 drives the third pulley 14 to rotate, the third pulley 14 drives the fourth pulley 15 to rotate through the second synchronous belt 16, the rotation of the fourth pulley 15 drives the gear 11 to rotate, the gear 11 drives the ring gear 10 to rotate, thereby driving the cylinder 5 to rotate.
[0033] like Figure 2 , 3 As shown, the bottom surface of the box body 3 is set as an inclined surface to facilitate the slurry to flow into the cylinder 5; the number of the inclined plate group modules 6 is set to two, the two inclined plate group modules 6 are symmetrically arranged, and each inclined plate group module 6 is provided with a swing cleaning mechanism 9 above.
[0034] like Figure 4 As shown, the inclined plate group module 6 includes a frame 6-1, and a partition 6-2 is installed inside the frame 6-1 near the front and rear sides. A plurality of inclined plates 6-3 are installed between two of the partitions 6-2. The plurality of inclined plates 6-3 are arranged in an inclined and stacked manner in sequence, and a sedimentation cavity is formed between two adjacent inclined plates 6-3.
[0035] like Figures 5-6As shown, the swinging cleaning mechanism 9 includes two symmetrically arranged swinging components. The two swinging components are located on the front and rear sides of the inclined plate group module 6, and a second driving mechanism is arranged above the two swinging components. The swinging component includes a horizontal support plate 9-1. The top surface of the horizontal support plate 9-1 is connected with a vertical support plate 9-2. A turntable 9-3 is rotatably installed on the vertical support plate 9-2. An eccentric connecting column 9-4 is connected to the turntable 9-3. A chute 9-1-1 is formed in the horizontal support plate 9-1. A moving frame 9-6 is slidably arranged in the chute 9-1-1. The moving frame 9-6 is connected with the connecting column 9-4 through a connecting rod 9-5. The moving frame 9-6 is connected with the frame 6-1. The second driving mechanism simultaneously drives the two symmetrically arranged turntables 9-3 to rotate.
[0036] The second driving mechanism includes a first motor 9-7. The first motor 9-7 is installed on one of the vertical support plates 9-2, and the first motor 9-7 and the turntable 9-3 are respectively arranged on both sides of the vertical support plate 9-2. A connecting shaft 9-9 is rotatably installed between the vertical support plates 9-2 through bearings. The output shaft of the first motor 9-7 is connected with the connecting shaft 9-9. The central axis of the turntable 9-3 is in transmission connection with the connecting shaft 9-9 through a second transmission component. The second transmission component includes a first pulley 9-8. The central axis of the turntable 9-3 penetrates through the vertical support plate 9-2 and is connected with the first pulley 9-8. Second pulleys 9-10 are installed at both ends of the connecting shaft 9-9. The first pulley 9-8 and the second pulleys 9-10 are in transmission connection through a first synchronous belt 9-11.
[0037] When the solid particles and suspended matters between the inclined plate channels accumulate to a certain extent, the first motor 9-7 drives the connecting shaft 9-9 to rotate. The second pulleys 9-10 rotate together with the connecting shaft 9-9. The rotation of the second pulleys 9-10 drives the first pulley 9-8 to rotate through the first synchronous belt 9-11. The rotation of the first pulley 9-8 drives the turntable 9-3 to rotate. During the rotation of the turntable 9-3, the moving frame 9-6 is driven to perform a reciprocating motion through the connecting rod 9-5, thereby driving the inclined plate group module 6 to reciprocate. Through the gravity of the solid matter and the action of water, the solid matter accumulated on the inclined plate 6-3 leaves the inclined plate 6-3, achieving the function of removing the solid materials accumulated in the sedimentation cavity and realizing the automatic cleaning of the sedimentation cavity.
[0038] As Figure 3 shown, three overflow mechanisms are installed at the top of the inclined plate group module 6. The three overflow mechanisms are arranged side by side in the front-rear direction; As Figure 7As shown, the overflow mechanism includes an overflow tank 7. The left and right ends of the overflow tank 7 are connected to the left and right inner walls of the box body 3. An overflow pipe 8 is connected to the left end of the overflow tank 7. A number of overflow holes 7-1 are provided on the side wall of the overflow tank 7.
[0039] As Figure 8 As shown, the stirring mechanism 17 includes a third motor 17-1. The third motor 17-1 is arranged below the cylinder body 5. The output shaft of the third motor 17-1 extends into the interior of the cylinder body 5 and is connected to a rotating seat 17-2. A rotating seal structure is installed at the connection position between the output shaft of the third motor 17-1 and the bottom of the cylinder body 5. Stirring paddles 17-3, a bottom wall scraper 17-4, a side wall scraper 17-5 and a pushing plate 17-6 are connected to the outer wall of the rotating seat 17-2. The stirring paddles 17-3, the bottom wall scraper 17-4, the side wall scraper 17-5 and the pushing plate 17-6 are evenly distributed in a circular pattern; specifically, the side wall scraper 17-5 is connected to the outer wall of the rotating seat 17-2 through a scraper support, and the side wall scraper 17-5 clears the solid materials adhered to the side wall of the cylinder body 5; the dimension of the stirring paddle 17-3 in the radial direction is smaller than the dimension of the bottom wall scraper 17-4 in the radial direction. During the rotation of the rotating seat 17-2 driving the stirring paddle 17-3 and the bottom wall scraper 17-4, the stirring radius of the stirring paddle 17-3 is smaller than the stirring radius of the bottom wall scraper 17-4, and the stirring effect is better; the settled solid particles form a high-concentration thickened underflow at the bottom of the inclined plate thickener. During the rotation of the pushing plate 17-6, the underflow can be pushed to the discharge port 5-1, facilitating the discharge of the underflow.
[0040] The stirring mechanism 17 is used to stir the high-concentration pulp, improve the thickening effect and prevent blockage; the rotating seat 17-2, the stirring paddles 17-3, the bottom wall scraper 17-4, the side wall scraper 17-5 and the pushing plate 17-6 slowly creep in the cylinder body 5, preventing the thickened pulp from coagulating into blocks, improving the fluidity and concentration of the thickened pulp, and preventing solid materials from adhering to the inner wall of the cylinder body 5.
[0041] The discharging mechanism 18 includes a fixing frame 18-1. A discharge port 5-1 is provided on the side wall of the cylinder body 5. The fixing frame 18-1 is arranged outside the discharge port 5-1. A cylinder 18-2 is installed on the side of the fixing frame 18-1 away from the discharge port 5-1. The piston rod of the cylinder 18-2 passes through the fixing frame 18-1 and is connected to a movable frame 18-3. A baffle plate 18-4 matching the discharge port 5-1 is installed on the movable frame 18-3. Moving wheels 18-5 are connected to both sides of the movable frame 18-3. A wheel groove 18-6 matching the moving wheels 18-5 is connected to the top surface of the fixing frame 18-1. The discharge pipe 19 is connected below the fixing frame 18-1.
[0042] During discharging, the piston rod of cylinder 18-2 contracts, driving the baffle plate 18-4 to move outward, and the thickened underflow enters the discharge pipe 19 through the discharge port 5-1.
[0043] In this embodiment, the first driving mechanism controls the rotation of the cylinder body 5, and the third motor 17-1 controls the rotation of the rotating seat 17-2, the stirring paddle 17-3, the bottom wall scraper 17-4, the side wall scraper 17-5, and the pushing plate 17-6, so that the cylinder body 5 and the stirring mechanism 17 can be controlled separately. The operator can, according to actual needs, control the cylinder body 5 and the stirring mechanism 17 to rotate together or one of them to rotate, and can also control the rotation direction, making it more convenient and flexible to use.
[0044] The working process of the present invention is as follows:
[0045] During operation, the pulp enters the top of the box body 3 of the thickener from above the inclined plate group module 6, and attention should be paid not to add it into the overflow tank 7. Subsequently, it enters the settlement cavity between two adjacent inclined plates 6-3. The coarse particles directly sink into the cylinder body 5, and the fine particles and liquid enter the settlement cavity between the inclined plates 6-3 under the action of the upward water flow. Under the dual action of the upward water flow and the gravity of the particles, sedimentation and separation are completed in the settlement cavity, and the particles gradually sink into the cylinder body 5 to form a thick phase layer. The clarified liquid and a small amount of fine particles enter the overflow tank 7 through the overflow hole 7-1 on the side of the overflow tank 7 and are discharged by the overflow pipe 8.
[0046] This thick phase layer is affected by the rotation of the stirring mechanism 17 and the cylinder body 5 in the cylinder body 5, which destroys the uniform system of this thick phase layer, generates a large number of water channels inside it, enables the water in the thick phase layer to be quickly discharged, and at the same time the thick phase solid remains in the cylinder body 5, that is, the high-concentration underflow is discharged from the discharge port 5-1, achieving the effect of concentrating the slurry.
[0047] The above-described embodiments are only descriptions of the preferred embodiments of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention shall fall within the protection scope determined by the claims of the present invention.
Claims
1. An efficient inclined plate thickener, characterized in that: It includes a bottom plate (1), a support platform (4) is arranged on the top surface of the bottom plate (1), a rotatable cylinder body (5) is arranged above the support platform (4), a first driving mechanism for driving the rotation of the cylinder body (5) is arranged on one side of the cylinder body (5), a stirring mechanism (17) is arranged inside the cylinder body (5), a discharging mechanism (18) is arranged on the side surface of the cylinder body (5), a discharging pipe (19) is arranged at the bottom of the discharging mechanism (18), a box body (3) is arranged above the cylinder body (5), the box body (3) is connected to the bottom plate (1) through a support frame (2), an inclined plate group module (6) is arranged inside the box body (3), an overflow mechanism is arranged at the top of the inclined plate group module (6), and a swinging cleaning mechanism (9) for driving the movement of the inclined plate group module (6) is arranged at the top of the box body (3).
2. The high-efficiency inclined plate thickener according to claim 1, characterized in that: The first driving mechanism includes a gear ring (10), the gear ring (10) is arranged outside the cylinder body (5), a gear (11) is meshed and connected to one side of the gear ring (10), and a driving component for driving the rotation of the gear (11) is arranged on one side of the gear (11).
3. The high-efficiency inclined plate thickener according to claim 2, characterized in that: The driving component includes a second motor (13), a support plate (12) is arranged on the support frame (2) on the right side, the second motor (13) is arranged below the support plate (12), and the second motor (13) is connected to the gear (11) through a first transmission component.
4. The high-efficiency inclined plate thickener according to claim 1, characterized in that: The stirring mechanism (17) includes a third motor (17-1), the third motor (17-1) is arranged below the cylinder body (5), the output shaft of the third motor (17-1) extends into the cylinder body (5) and is connected to a rotating seat (17-2), and a stirring paddle (17-3), a bottom wall scraper (17-4), a side wall scraper (17-5) and a pushing plate (17-6) are arranged on the outer wall of the rotating seat (17-2).
5. The high-efficiency inclined plate thickener according to claim 1, characterized in that: The discharging mechanism (18) includes a fixing frame (18-1), a discharging port (5-1) is arranged on the side wall of the cylinder body (5), the fixing frame (18-1) is arranged outside the discharging port (5-1), a cylinder (18-2) is arranged on the side of the fixing frame (18-1) away from the discharging port (5-1), the piston rod of the cylinder (18-2) penetrates through the fixing frame (18-1) and is connected to a movable frame (18-3), a baffle plate (18-4) matching the discharging port (5-1) is arranged on the movable frame (18-3), moving wheels (18-5) are arranged on both sides of the movable frame (18-3), a wheel groove (18-6) matching the moving wheels (18-5) is arranged on the top surface of the fixing frame (18-1), and the discharging pipe (19) is arranged below the fixing frame (18-1).
6. The high-efficiency inclined plate thickener according to claim 1, wherein: The number of the inclined plate group modules (6) is set to two, the two inclined plate group modules (6) are symmetrically arranged, and a swinging cleaning mechanism (9) is arranged above each inclined plate group module (6).
7. The high-efficiency inclined plate thickener according to claim 1, characterized in that: The inclined plate group module (6) includes a frame (6-1). Inside the frame (6-1), partition plates (6-2) are arranged near the front and rear sides. Between the two partition plates (6-2), a number of inclined plates (6-3) are arranged.
8. The high-efficiency inclined plate thickener according to claim 1, wherein: The overflow mechanism includes an overflow tank (7). The overflow tank (7) is connected to the inner wall of the box body (3). One end of the overflow tank (7) is connected to an overflow pipe (8). A number of overflow holes (7-1) are formed in the side wall of the overflow tank (7).
9. The high-efficiency inclined plate thickener according to claim 7, characterized in that: The swing cleaning mechanism (9) includes two symmetrically arranged swing components. Above the two swing components, a second driving mechanism is provided. The swing component includes a horizontal support plate (9-1). On the top surface of the horizontal support plate (9-1), a vertical support plate (9-2) is arranged. On the vertical support plate (9-2), a turntable (9-3) is arranged. An eccentric connecting column (9-4) is arranged on the turntable (9-3). A chute (9-1-1) is arranged on the horizontal support plate (9-1). A moving frame (9-6) is arranged in the chute (9-1-1). The moving frame (9-6) is connected to the connecting column (9-4) through a connecting rod (9-5). The moving frame (9-6) is connected to the frame (6-1). The second driving mechanism simultaneously drives the two symmetrically arranged turntables (9-3) to rotate.
10. The high-efficiency inclined plate thickener according to claim 9, characterized in that: The second driving mechanism includes a first motor (9-7). The first motor (9-7) is arranged on one side of the vertical support plate (9-2) away from the turntable (9-3). A connecting shaft (9-9) is arranged between the vertical support plates (9-2). The output shaft of the first motor (9-7) is connected to the connecting shaft (9-9). The central axis of the turntable (9-3) is in transmission connection with the connecting shaft (9-9) through a second transmission component.