Slurry treatment equipment for muck

Through the design of the spiral plate and transmission pipe structure, combined with the annular pipe spraying agent and filtering mechanism, the problems of uneven mixing and clogging of the agent and mud are solved, and the flocculation effect of the slag mud treatment and the practicality of the equipment are improved.

CN223397623UActive Publication Date: 2025-09-30CHINA RAILWAY NO 2 ENG GROUP CO LTD +2
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Patent Information

Application Number
CN202521870019.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2025-09-30
Estimated Expiration
2035-09-01

AI Technical Summary

Technical Problem

In existing slag slurry treatment devices, it is difficult for the reagent to be evenly mixed with the slurry, resulting in poor flocculation effect, and the reagent injection holes are easily blocked, affecting the treatment effect.

Method used

The spiral plate and transmission pipe structure are used, combined with an annular pipe to spray the agent, and a filtering mechanism and a drainage mechanism are set to ensure uniform mixing of the agent and prevent clogging. The design of the spiral plate and scraper realizes mud circulation and stone particle filtration.

Benefits of technology

It achieves uniform mixing of slurry and reagents, improves flocculation effect, prevents clogging of reagent addition holes, and enhances the practicability and treatment efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses slurry treatment equipment for muck, which relates to the technical field of slurry treatment and comprises a treatment pond, a discharge end of the treatment pond is communicated with a discharge pipe, a mounting shaft is fittingly arranged in the treatment pond, and a transmission pipe is fittingly arranged at the coaxial position of the mounting shaft. A first spiral plate is fixedly arranged at the position, corresponding to the interior of the conveying pipe, of the mounting shaft, a filtering mechanism is arranged at one end of the conveying pipe, and a liquid discharging mechanism is arranged at the upper end of the interior of the treatment pond. According to the device, the first spiral plate and the conveying pipe are arranged, so that slurry in the treatment tank is driven to be conveyed circularly, an annular pipe is arranged, so that the slurry and a medicament are uniformly mixed, and a storage filter drum is arranged, so that stone grains in the slurry can be filtered and intercepted when the slurry is conveyed, and the slurry is conveyed more uniformly. And by arranging the liquid discharging mechanism, automatic change can be conveniently performed according to the change of the liquid level of the clear water, so that the separated clear water can be conveniently discharged.
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Description

Technical Field

[0001] The utility model relates to the technical field of mud treatment, in particular to mud treatment equipment for slag. Background Art

[0002] During the shield tunneling construction process, a large amount of waste soil will be generated. If not handled promptly and effectively, these waste soils will accumulate at the construction site, occupying valuable land resources. More importantly, shield waste soil usually contains ingredients such as surfactants, which makes it difficult to dry naturally, has strong fluidity, and presents a swamp-like state. If it is directly landfilled in the mine or stored in large quantities, there is a potential risk of geological disasters. The current conventional treatment process is: the mud after sand washing enters the collection pool, flocculants are added through the dosing system, and after stirring, it is pumped into the deep cone mud separation tank for reaction. However, in the prior art, flocculants are usually only added from the top of the separation tank. Even with the assistance of stirring, the agent mainly acts on the surface of the mud, and it is difficult to fully mix and contact with the inner layer of waste soil.

[0003] Authorization announcement number CN220766798U discloses a slurry treatment device for shield tunneling debris. The core improvement of this device lies in the layered addition of flocculants, demulsifiers, and filter aids to the slurry in the treatment tank from top to bottom. The design intent is to ensure that both surface and deep mud layers are fully contacted and mixed with the agents, thereby ensuring that all mud in the tank can effectively undergo flocculation and other reactions, promoting thorough separation of mud and water. The specific implementation method of this device is to provide multiple hollow "treatment agent holding chambers" in the treatment tank, each with through-holes at the bottom, through which the agents seep out.

[0004] In actual use, due to the inherently high fluidity of the slurry being treated, once added to the treatment tank, it easily seeps back into the holding chamber through these bottom holes. Furthermore, the static pressure of the slurry within the treatment tank increases significantly with depth, placing immense pressure on the holding chamber at the bottom of the tank. This makes the bottom holes more susceptible to clogging by flowing or infiltrated slurry. Once the holes become clogged, the reagents within the chamber cannot be smoothly added to the slurry, making the multi-layer dosing design difficult to achieve and potentially causing the system to fail, compromising treatment effectiveness.

[0005] Based on this, a slurry processing device for slag is now provided, which can eliminate the disadvantages of the existing devices. Utility Model Content

[0006] The purpose of the utility model is to provide a slag mud processing device to solve the problem in the background art that it is inconvenient to mix the reagent and the mud evenly.

[0007] To achieve the above objectives, the present invention provides the following technical solutions:

[0008] A slurry processing equipment for slag, comprising a processing pool, wherein the discharge end of the processing pool is connected to a discharge pipe, a mounting shaft is provided inside the processing pool, a transmission pipe is provided coaxially with the mounting shaft, a first spiral plate is fixedly provided on the mounting shaft at a position corresponding to the internal position of the transmission pipe, the first spiral plate is tightly attached to the inner side of the transmission pipe, a filtering mechanism for filtering stone particles in the mud is provided at one end of the transmission pipe, an annular pipe is fixedly provided at the upper end of the processing pool, a plurality of spray holes are arrayed at the bottom end of the annular pipe, a liquid adding pipe is connected to the annular pipe, the liquid adding pipe extends to the outside of the processing pool, and a drainage mechanism for facilitating the discharge of clean water is provided at the upper end of the processing pool.

[0009] On the basis of the above technical solutions, the present invention also provides the following optional technical solutions:

[0010] In an optional solution: a mounting groove is provided at the discharge end of the processing tank, a sealing plate is slidingly provided in the mounting groove, one end of the sealing plate is fixedly connected to the output ends of the two first electric cylinders respectively, the first electric cylinders are fixedly provided on the processing tank, the first electric cylinders are electrically connected to the control component, the control component is fixedly provided on the processing tank, and a feeding pipe is provided at the upper end of the processing tank.

[0011] In an optional scheme: the filtering mechanism includes a filter box, which is installed at one end of the transmission pipe, and a sleeve is fixedly provided at the upper end of the filter box, and the sleeve is sleeved on the mounting shaft. A storage filter cartridge is symmetrically connected to the filter box, and a bottom plate is installed at the bottom end of the storage filter cartridge. A fixing frame is fixed at the bottom end of the storage filter cartridge, and a fixed shaft is rotatably provided at the upper end of the fixing frame. A plurality of steel ropes are arrayed on the fixed shaft, and the other end of the fixed shaft extends to the outside of the storage filter cartridge. A support frame is rotatably provided on the mounting shaft and the transmission pipe, and the support frame is fixed inside the treatment tank. A driving assembly for driving the transmission pipe and the fixed shaft to rotate is provided at the upper end of the treatment tank.

[0012] In an optional solution: the driving assembly includes an electric motor, and the first bevel gear and the second bevel gear are fixedly provided at one end of the sleeve shaft and the mounting shaft respectively, the first bevel gear and the second bevel gear are both engaged with the third bevel gear, the third bevel gear is fixed on the output end of the motor, the motor is fixed at the upper end of the treatment tank, the motor is electrically connected to the control component, one end of the fixed shaft is fixed with a driven gear, the driven gears are engaged with the fixed gears, the fixed gears are fixed at one end of the support tube, and the support tube is fixed at the upper end inside the treatment tank.

[0013] In an optional solution: a plurality of stirring rods are arranged in an array on the transmission tube, a scraper is fixed on the transmission tube, and the scraper is in close contact with the inner wall of the treatment tank.

[0014] In an optional solution, a scraper is tightly provided inside the filter box, and the scraper is fixed on the mounting shaft.

[0015] In an optional scheme: the liquid discharge mechanism includes a liquid suction tube, one end of the liquid suction tube is connected to a fixed tube, the fixed tube is fixedly provided at one end inside the limiting tube, the limiting tube is fixedly provided inside the processing tank, and the other end of the liquid suction tube is connected to the input end of the external liquid suction component, the fixed tube is slidably provided with a sliding tube, one end of the sliding tube is fixedly provided with a floating ring, and the upper end of the floating ring is tightly provided with a counterweight ring, the sliding tube is fixedly provided with a first extension plate, a second extension plate is provided above the first extension plate, the second extension plate is fixedly provided at the output end of the second electric cylinder, the second electric cylinder is fixedly provided at the upper end of the processing tank, the upper end of the first extension plate is fixedly provided with a first magnet, and the bottom end of the second extension plate is fixedly provided with a second magnet, the first magnet and the second magnet are attracted to each other, the second electric cylinder is electrically connected to the control component, and a limiting slide groove is provided on the limiting tube corresponding to the position of the first extension plate.

[0016] In an optional solution: a second spiral plate is fixedly provided at one end of the installation shaft, and the second spiral plate is in close contact with the inner wall of the discharge end of the treatment tank.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] The utility model provides a first spiral plate and a transmission pipe, which makes it easy to transport the mud inside the treatment pool, thereby driving the mud inside the treatment pool to circulate and transport. The annular pipe is provided, which can evenly spray the agent. The annular pipe is provided at the upper end of the treatment pool to prevent the spray hole from being blocked, thereby making the mud and the agent evenly mixed. The storage filter cartridge is provided, so that the stone particles in the mud can be filtered and intercepted when the mud is transported. The drainage mechanism is provided, so that it can automatically change according to the change of the clean water level, thereby facilitating the discharge of the separated clean water, thereby increasing the practicality of the mud treatment equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural diagram of the present utility model.

[0020] Figure 2 This is a schematic diagram of the internal structure of the treatment pool of the utility model.

[0021] Figure 3 This is a schematic diagram of the installation of the fixed gear of the utility model.

[0022] Figure 4 This is a schematic diagram of the fixed shaft installation of the utility model.

[0023] Figure 5This is a schematic diagram of the structure of the counterweight ring and floating ring of the utility model.

[0024] Figure 6 This is a schematic diagram of the sealing plate structure of the utility model.

[0025] Figure 7 This is a schematic diagram of the support frame structure of the utility model.

[0026] Notes on figure numbers: 11 treatment tank, 12 sealing plate, 13 first electric cylinder, 14 discharge pipe, 15 mounting shaft, 16 first spiral plate, 17 transmission pipe, 18 motor, 19 filter box, 20 scraper, 21 storage filter cartridge, 22 fixed shaft, 23 wire rope, 24 driven gear, 25 fixed gear, 26 annular pipe, 27 feeding pipe, 28 extraction pipe, 29 fixed pipe, 30 sliding pipe, 31 limiting pipe, 32 counterweight ring, 33 floating ring, 34 second electric cylinder, 35 control component, 36 second spiral plate, 37 scraper rack, 38 feeding pipe, 39 support rack. DETAILED DESCRIPTION

[0027] In order to make the purpose, technical solutions and advantages of the present invention more clear, the present invention is further described in detail below with reference to the accompanying drawings and embodiments.

[0028] In one embodiment, Figure 1-Figure 7 As shown, a slurry processing equipment for slag includes a processing tank 11, the discharge end of the processing tank 11 is connected to a discharge pipe 14, the processing tank 11 is equipped with a mounting shaft 15, and the mounting shaft 15 is coaxially equipped with a transmission pipe 17, and a first spiral plate 16 is fixed on the mounting shaft 15 at a position corresponding to the internal position of the transmission pipe 17, and the first spiral plate 16 is tightly attached to the inner side of the transmission pipe 17, and one end of the transmission pipe 17 is provided with a filtering mechanism for filtering stone particles in the mud, an annular pipe 26 is fixed on the upper end of the processing tank 11, and a plurality of spray holes are arranged in an array at the bottom end of the annular pipe 26, and a liquid adding pipe 27 is connected to the annular pipe 26, and the liquid adding pipe 27 extends to the outside of the processing tank 11, and a drainage mechanism for facilitating the discharge of clean water is provided at the upper end of the processing tank 11. The filtering mechanism facilitates the filtering and interception of stone particles in the mud, and the drainage mechanism facilitates the discharge of clean water from the processing tank 11;

[0029] The treatment pool 11 is provided with a mounting groove at the discharge end, and a sealing plate 12 is slidingly provided in the mounting groove. One end of the sealing plate 12 is fixedly connected to the output ends of the two first electric cylinders 13 respectively. The first electric cylinders 13 are all fixedly provided on the treatment pool 11. The first electric cylinders 13 are all electrically connected to the control component 35. The control component 35 is fixedly provided on the treatment pool 11. The upper end of the treatment pool 11 is connected with a feeding pipe 38. During use, when the mud needs to be processed, the output end of the first electric cylinder 13 drives the sealing plate 12 to slide, so that the sealing plate 12 closes the discharge end of the treatment pool 11, and then the mud is added to the inside of the treatment pool 11 through the feeding pipe 38. When it is necessary to add medicine to the inside of the treatment pool 11, one end of the liquid adding pipe 27 is connected with the output end of the external dosing component, and then the external dosing component transports the medicine to the inside of the annular tube 26 through the liquid adding pipe 27, and then the medicine is sprayed out through the spray hole at the bottom end of the annular tube 26.

[0030] The filtering mechanism includes a filter box 19, which is installed at one end of the transmission pipe 17. A sleeve is fixedly provided at the upper end of the filter box 19, and the sleeve is sleeved on the mounting shaft 15. A storage filter cartridge 21 is symmetrically connected to the filter box 19, and a bottom plate is installed at the bottom end of the storage filter cartridge 21. A fixing frame is fixed at the bottom end of the storage filter cartridge 21, and a fixed shaft 22 is rotatably provided at the upper end of the fixing frame. A plurality of steel ropes 23 are arrayed on the fixed shaft 22, and the other end of the fixed shaft 22 extends to the outside of the storage filter cartridge 21. A support frame 39 is rotatably provided on the mounting shaft 15 and the transmission pipe 17, and the support frame 39 is fixed inside the treatment tank 11. A driving assembly for driving the transmission pipe 17 and the fixed shaft 22 to rotate is provided at the upper end of the treatment tank 11.

[0031] The driving assembly includes a motor 18, and one end of the sleeve shaft and the mounting shaft 15 are respectively fixed with a first bevel gear and a second bevel gear, and the first bevel gear and the second bevel gear are both meshed with the third bevel gear, and the third bevel gear is fixed on the output end of the motor 18, and the motor 18 is fixed on the upper end of the treatment tank 11. The motor 18 is electrically connected to the control component 35, and one end of the fixed shaft 22 is fixed with a driven gear 24, and the driven gear 24 is meshed with a fixed gear 25. The fixed gear 25 is fixed on one end of the support tube, and the support tube is fixed on the upper end of the treatment tank 11. When in use, when the medicine needs to be used, When the agent and the mud are evenly mixed, the motor 18 is started, and the output end of the motor 18 drives the third bevel gear to rotate. The third bevel gear is engaged with the first bevel gear and the second bevel gear to drive the sleeve shaft and the installation shaft 15 to rotate. The sleeve shaft drives the filter box 19 and the transmission pipe 17 to rotate, and the transmission pipe 17 rotates in the opposite direction to the installation shaft 15. At the same time, the installation shaft 15 drives the first spiral plate 16 to rotate. The first spiral plate 16 and the transmission pipe 17 cooperate to transport the mud at the bottom of the treatment tank 11. After the mud is discharged into the filter box 19, it is discharged from the inside of the filter box 19 under the action of centrifugal force, thereby causing the mud inside the treatment tank 11 to circulate.

[0032] A plurality of stirring rods are arranged in an array on the transmission tube 17, and a scraper 37 is fixed on the transmission tube 17. The scraper 37 is in close contact with the inner wall of the treatment tank 11. When in use, when the transmission tube 17 rotates, the transmission tube 17 mixes the mud inside the treatment tank 11 through the plurality of stirring rods, so that the mud and the reagent are evenly mixed.

[0033] A scraper 20 is tightly provided inside the filter box 19, and the scraper 20 is fixed on the mounting shaft 15. During use, when the mounting shaft 15 rotates, the mounting shaft 15 drives the scraper 20 to rotate, so that the scraper 20 moves the mud and stone particles inside the filter box 19, so that the stone particles can enter the storage filter cartridge 21 for storage. At the same time, when the filter box 19 rotates following the transmission pipe 17, the filter box 19 drives the storage filter cartridge 21 to rotate, and the driven gear 24 engages with the fixed gear 25, so that the fixed shaft 22 rotates while revolving. The fixed shaft 22 drives the wire rope 23 to rotate to prevent the stone particles from clogging the filter cartridge pores, thereby discharging the mud.

[0034] The liquid discharge mechanism includes a liquid pumping pipe 28, one end of which is connected to a fixed pipe 29, and the fixed pipe 29 is fixed to one end inside a limiting pipe 31, and the limiting pipe 31 is fixed inside the treatment tank 11, and the other end of the liquid pumping pipe 28 is connected to the input end of the external liquid pumping component, and a sliding pipe 30 is slidably provided on the fixed pipe 29, and a floating ring 33 is fixed at one end of the sliding pipe 30, and a counterweight ring 32 is tightly attached to the upper end of the floating ring 33, and a first extension plate is fixed on the sliding pipe 30, and a second extension plate is provided above the first extension plate, and the second extension plate is fixed to the output end of the second electric cylinder 34, and the second electric cylinder 34 is fixed to the upper end of the treatment tank 11, and a first magnet is fixed to the upper end of the first extension plate, and a second magnet is fixed to the bottom end of the second extension plate, and the first magnet and the second magnet are attracted to each other, and the second electric cylinder 34 is in contact with the control component 35 is electrically connected, and a limiting groove is provided on the limiting tube 31 at the position corresponding to the position of the first extension plate. When in use, when the mud is completely settled, the clean water is separated from the mud and is at the uppermost end. When the clean water needs to be discharged, the output end of the second electric cylinder 34 contracts, so that the first magnet and the second magnet are separated. Then, under the action of gravity, the sliding tube 30 slides on the fixed tube 29. When the bottom end of the floating ring 33 is in close contact with the upper end of the water surface, one end of the sliding tube 30 is on the water surface. Then, the external liquid pumping component extracts clean water through the liquid pumping tube 28. As the clean water level drops, under the action of the counterweight ring 32, the floating ring 33 automatically drops along with the liquid level. When the liquid pumping is completed, the output end of the second electric cylinder 34 drives the second extension plate to drop. When the first magnet and the second magnet are attracted, the output end of the second electric cylinder 34 stops extending and contracts, thereby driving the sliding tube 30 to rise and move away from the upper end of the mud.

[0035] A second spiral plate 36 is fixedly provided at one end of the mounting shaft 15, and the second spiral plate 36 is in close contact with the inner wall of the discharge end of the treatment tank 11. During use, when the mud inside the treatment tank 11 needs to be discharged, the output end of the first electric cylinder 13 drives the sealing plate 12 to move, so that the discharge end of the treatment tank 11 is opened, and then the mounting shaft 15 rotates in the opposite direction. The second spiral plate 36 can transport the mud inside the treatment tank 11 and discharge it through the discharge pipe 14. At the same time, the scraper 37 can clean the mud attached to the inner wall of the treatment tank 11.

[0036] The above embodiment discloses a slurry processing equipment for slag, wherein, when the slurry needs to be processed, the output end of the first electric cylinder 13 drives the sealing plate 12 to slide, so that the sealing plate 12 closes the discharge end of the processing tank 11, and then the slurry is added to the inside of the processing tank 11 through the feeding pipe 38. When the medicine needs to be added to the inside of the processing tank 11, one end of the liquid feeding pipe 27 is connected with the output end of the external medicine feeding component, and then the external medicine feeding component transports the medicine to the inside of the annular tube 26 through the liquid feeding pipe 27, and then the medicine is sprayed out through the spray hole at the bottom end of the annular tube 26, and then the motor 18 is started, and the output end of the motor 18 drives the third bevel gear to rotate. The third bevel gear meshes with the first bevel gear and the second bevel gear to drive the sleeve shaft and the installation shaft 15 to rotate. The sleeve shaft drives the filter box 19 and the transmission pipe 17 to rotate, and the transmission pipe 17 rotates in the opposite direction to the installation shaft 15. At the same time, the installation shaft 15 drives the first spiral plate 16 to rotate. The first spiral plate 16 cooperates with the transmission pipe 17 to transport the mud at the bottom of the treatment tank 11. After the mud is discharged into the filter box 19, it is discharged from the filter box 19 under the action of centrifugal force, thereby causing the mud inside the treatment tank 11 to circulate. At the same time, the transmission pipe 17 mixes the mud inside the treatment tank 11 through a number of stirring rods.

[0037] When the mounting shaft 15 rotates, the mounting shaft 15 drives the scraper 20 to rotate, so that the scraper 20 moves the mud and stone particles inside the filter box 19, so that the stone particles can enter the storage filter cartridge 21 for storage. At the same time, when the filter box 19 rotates following the transmission pipe 17, the filter box 19 drives the storage filter cartridge 21 to rotate, and the driven gear 24 engages with the fixed gear 25, so that the fixed shaft 22 rotates while revolving. The fixed shaft 22 drives the wire rope 23 to rotate, preventing the stone particles from clogging the filter cartridge pores, thereby discharging the mud.

[0038] Therefore, the circulation flow trajectory during mud treatment is:

[0039] Step 1: The slurry enters the treatment tank 11 through the feeding pipe 38;

[0040] Step 2: After starting the motor 18, the mounting shaft 15 drives the first spiral plate 16 to rotate. The first spiral plate 16 cooperates with the transmission pipe 17 to transport the slurry at the bottom of the treatment tank 11 into the transmission pipe 17 and move it toward the filter box 19;

[0041] Step 3: After the mud enters the filter box 19, it is discharged from the filter box 19 under the action of centrifugal force and returns to the treatment tank 11, thereby realizing the circulation of the mud inside the treatment tank 11;

[0042] Step 4: During this circulation process, some of the stone particles in the mud enter the storage filter cartridge 21 under the action of the scraper 20, while the filtered mud continues to circulate.

[0043] After the mud is completely settled, the clean water is separated from the mud and is located at the top. When the clean water needs to be discharged, the output end of the second electric cylinder 34 contracts, separating the first magnet from the second magnet. Then, under the action of gravity, the sliding tube 30 slides on the fixed tube 29. When the bottom end of the floating ring 33 is in close contact with the upper end of the water surface, one end of the sliding tube 30 is on the water surface. Then, the external liquid pumping component extracts the clean water through the liquid pumping pipe 28. As the clean water level drops, the floating ring 33 automatically drops with the liquid level under the action of the counterweight ring 32. When the liquid is pumped out, the second electric cylinder The output end 34 drives the second extension plate to descend. When the first magnet and the second magnet are attracted, the output end of the second electric cylinder 34 stops extending and contracts, driving the sliding tube 30 to rise and away from the upper end of the mud. Then the output end of the first electric cylinder 13 drives the sealing plate 12 to move, so that the discharge end of the processing tank 11 is opened. Then the mounting shaft 15 rotates in the opposite direction. The second spiral plate 36 can transport the mud inside the processing tank 11 and discharge it through the discharge pipe 14. At the same time, the scraper 37 can clean the mud attached to the inner wall of the processing tank 11.

[0044] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.

Claims

1. A slurry processing device for slag soil, comprising a processing tank (11), wherein a discharge end of the processing tank (11) is connected to a discharge pipe (14), a mounting shaft (15) is provided inside the processing tank (11), a transmission pipe (17) is provided coaxially with the mounting shaft (15), a first spiral plate (16) is fixed on the mounting shaft (15) at a position corresponding to the internal position of the transmission pipe (17), and the first spiral plate (16) is in close contact with the inner side of the transmission pipe (17), characterized in that: One end of the transmission pipe (17) is provided with a filtering mechanism for filtering stone particles in the mud. An annular pipe (26) is fixedly provided at the upper end of the interior of the treatment tank (11). A plurality of spray holes are arranged in an array at the bottom end of the annular pipe (26). A liquid adding pipe (27) is connected to the annular pipe (26). The liquid adding pipe (27) extends to the outside of the treatment tank (11). A liquid draining mechanism for facilitating the discharge of clean water is provided at the upper end of the interior of the treatment tank (11).

2. The slurry processing equipment for slag according to claim 1, characterized in that: The processing tank (11) is provided with a mounting groove at the discharge end, a sealing plate (12) is slidably provided in the mounting groove, one end of the sealing plate (12) is fixedly connected to the output ends of two first electric cylinders (13), the first electric cylinders (13) are fixedly provided on the processing tank (11), the first electric cylinders (13) are electrically connected to the control component (35), the control component (35) is fixedly provided on the processing tank (11), and the upper end of the processing tank (11) is connected to a feeding pipe (38).

3. The slurry processing equipment for slag according to claim 2, characterized in that: The filtering mechanism comprises a filter box (19), the filter box (19) being mounted on one end of the transmission pipe (17), a sleeve being fixedly provided on the upper end of the filter box (19), the sleeve being sleeved on the mounting shaft (15), a storage filter cartridge (21) being symmetrically connected on the filter box (19), a bottom plate being mounted on the bottom end of the storage filter cartridge (21), a fixing frame being fixedly provided on the bottom end of the storage filter cartridge (21), a fixed shaft (22) being rotatably provided on the upper end of the fixing frame, a plurality of steel wire ropes (23) being arrayed on the fixed shaft (22), the other end of the fixed shaft (22) extending to the outside of the storage filter cartridge (21), a support frame (39) being rotatably provided on both the mounting shaft (15) and the transmission pipe (17), the support frame (39) being fixedly provided inside the treatment tank (11), and a driving assembly for driving the transmission pipe (17) and the fixed shaft (22) to rotate is provided on the upper end of the treatment tank (11).

4. The slurry processing equipment for slag according to claim 3, characterized in that: The driving assembly includes a motor (18), and a first bevel gear and a second bevel gear are fixedly provided at one end of the sleeve shaft and the mounting shaft (15), respectively. The first bevel gear and the second bevel gear are both meshed with a third bevel gear. The third bevel gear is fixedly provided on the output end of the motor (18). The motor (18) is fixedly provided on the upper end of the treatment tank (11). The motor (18) is electrically connected to the control component (35). A driven gear (24) is fixedly provided at one end of the fixed shaft (22), and the driven gear (24) is meshed with a fixed gear (25). The fixed gear (25) is fixedly provided on one end of a support tube, and the support tube is fixedly provided on the upper end inside the treatment tank (11).

5. The slurry processing equipment for slag according to claim 4, characterized in that: A plurality of stirring rods are arranged in an array on the transmission tube (17), and a scraper (37) is fixedly provided on the transmission tube (17), and the scraper (37) is in close contact with the inner wall of the treatment tank (11).

6. The slurry processing equipment for slag according to claim 5, characterized in that: A scraper (20) is tightly mounted inside the filter box (19), and the scraper (20) is fixed on the mounting shaft (15).

7. The slurry processing equipment for slag according to claim 2, characterized in that: The liquid discharge mechanism comprises a liquid extraction pipe (28), one end of the liquid extraction pipe (28) is connected to a fixed pipe (29), the fixed pipe (29) is fixedly arranged at one end inside a limit pipe (31), the limit pipe (31) is fixedly arranged inside the treatment tank (11), the other end of the liquid extraction pipe (28) is connected to the input end of the external liquid extraction component, a sliding pipe (30) is slidably provided on the fixed pipe (29), one end of the sliding pipe (30) is fixedly provided with a floating ring (33), the upper end of the floating ring (33) is tightly attached to a counterweight ring (32), and the sliding pipe (30) is fixedly provided with a first extension plate, a second extension plate is provided above the first extension plate, the second extension plate is fixedly provided at the output end of the second electric cylinder (34), the second electric cylinder (34) is fixedly provided at the upper end of the treatment pool (11), a first magnet is fixedly provided at the upper end of the first extension plate, a second magnet is fixedly provided at the lower end of the second extension plate, the first magnet and the second magnet are attracted to each other, the second electric cylinder (34) is electrically connected to the control component (35), and a limiting slide groove is provided on the limiting tube (31) at a position corresponding to the position of the first extension plate.

8. The slurry processing equipment for slag according to claim 1, characterized in that: A second spiral plate (36) is fixedly provided at one end of the installation shaft (15), and the second spiral plate (36) is in close contact with the inner wall of the discharge end of the treatment tank (11).

Citation Information

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