Cement slurry wastewater recycling and intelligent slurry device
By designing a recycling and intelligent slurry mixing device for cement slurry wastewater, and utilizing the combination of extraction pipe and piston seat, the rapid and uniform addition and mixing of chemical agents in the cement slurry wastewater treatment process is achieved. This solves the problem of uneven mixing in existing equipment, improves treatment efficiency, and facilitates the discharge of impurities.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- LINYI TONGTAI ELECTRIC POLE CO LTD
- Filing Date
- 2026-02-07
- Publication Date
- 2026-05-29
Smart Images

Figure CN122102330A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of wastewater treatment technology, and in particular to a device for recycling cement residue wastewater and intelligent slurry preparation. Background Technology
[0002] A large amount of residual slurry wastewater is generated during cement processing. Therefore, it is necessary to process and recycle the residual slurry wastewater. Wastewater treatment equipment is required for processing during wastewater treatment. However, it is not possible to adjust the wastewater into a slurry during the wastewater treatment process, and it is not possible to quickly and evenly add chemical reagents to the wastewater. Furthermore, the existing equipment cannot achieve mixing between the added reagents and the wastewater.
[0003] According to the patent document CN218089164U, a wastewater treatment device for a dry-process cement production line includes a primary filter box and an adsorption purification box. The primary filter box contains a filter screen and a cleaning mechanism that matches the inner wall of the primary filter box and the filter screen. One end of the primary filter box is connected to the adsorption purification box via a connecting pipe, and a second filter screen is installed inside the connecting pipe. The adsorption purification box contains purification components installed via a mounting plate, which is fixedly mounted inside the adsorption purification box. A sealing cover is located at the top of the adsorption purification box, and the sealing cover has evenly spaced... The limiting mechanism is matched with the purification components and mounting plate. During use, the cleaning mechanism not only cleans the inside of the primary filter box but also the two filter screens, avoiding cleaning dead spots and providing comprehensive internal cleaning. This ensures internal cleanliness and prevents impurities from accumulating and affecting the equipment's lifespan and wastewater treatment effectiveness. However, while this solution provides comprehensive internal cleaning, it cannot quickly and evenly mix chemical reagents added to wastewater, causing inconvenience during use. Summary of the Invention
[0004] This disclosure aims to at least partially address one of the technical problems in the related art.
[0005] Therefore, the purpose of this disclosure is to provide a device for recycling cement slurry wastewater and for intelligent slurry preparation.
[0006] To achieve the above objectives, this disclosure provides a cement slurry wastewater recycling and intelligent slurry preparation device, comprising: a base, a fixed box fixed to the top of the base, a support base fixed to the top of the fixed box, a slot between the support base and the fixed box, a movable plate movably installed inside the slot, a slider welded to the bottom of the movable plate, a sliding groove on the inner wall of the slot, and the slider slidably installed inside the sliding groove; an extraction component including a fixed pipe and a support pipe, both welded to the support base, an extraction pipe slidably installed inside the support pipe, and a storage unit movably installed inside the extraction pipe. The material storage cylinder has one end movably mounted inside a fixed tube, and a material bucket is fixed to the top of the storage cylinder; the power assembly includes a reinforcing base, a motor housing is fixed to the top of the reinforcing base, one side of the motor housing and the reinforcing base is fixed to the fixed box, a movable seat is movably mounted on the side of the motor housing, and a servo motor is fixedly mounted to the bottom of the movable seat; the stirring assembly includes a mounting base, a connecting seat is welded to the top of the mounting base, one end of the connecting seat is welded to the bottom of the extraction tube, a connecting hole is opened inside the connecting seat, and a stirring plate is welded to the bottom of the mounting base.
[0007] Optionally, the stirring plate has an arc-shaped groove on its side, and an opening is formed on the inner wall of the arc-shaped groove. A guide pipe is fixed inside the stirring plate, and a connecting pipe is fixed on the guide pipe. One end of the connecting pipe is fixed inside the mounting base.
[0008] Optionally, a DC motor is fixedly installed inside the motor housing, a threaded column is installed on the DC motor, a threaded hole is opened on the movable seat, the threaded column is rotatably installed inside the threaded hole, a positioning tube is fixed inside the movable seat, a positioning column is movably installed inside the positioning tube, one end of the positioning column is fixed to the motor housing, and a rotating seat is rotatably installed on the top of the movable seat, the rotating seat is installed on the servo motor through an output shaft.
[0009] Optionally, a fixed column is welded to the top of the rotating seat, a transmission rod is rotatably mounted on the fixed column, a movable rod is movably mounted at one end of the transmission rod, the movable rod is movably mounted inside the support tube, one end of the support tube has an opening, one end of the movable rod has a fixed groove, and the transmission rod is mounted inside the fixed groove via a rotating shaft.
[0010] Optionally, a support mechanism is fixedly installed on the side of the slider, one end of the support mechanism is fixed inside the slide groove, a movable box is welded to the inner wall of the movable plate, the movable box is movably installed inside the fixed box, a fixed plate is welded to the bottom of the fixed box, an inclined seat is fixed on the movable box, and the inclined seat and the movable box are movably installed on the top of the fixed plate.
[0011] Optionally, an arc-shaped frame is welded to one side of the fixed plate, and a conveying auger is rotatably installed inside the arc-shaped frame. A drive motor is fixed to one end of the conveying auger, and the drive motor is fixedly installed on the side of the fixed box. A water inlet pipe is fixedly installed on the side of the fixed box.
[0012] Optionally, a fixing ring is welded to the outer wall of the storage cylinder, and a limiting ring is movably installed on the side of the fixing ring. The limiting ring is welded to the inner wall of the extraction tube. An installation hole is opened at the bottom of the storage cylinder, and a discharge pipe is movably installed inside the installation hole. One end of the discharge pipe is installed inside the connection hole.
[0013] Optionally, a piston seat is movably installed inside the storage cylinder, a support column is fixed on the piston seat, a partition plate is welded to one end of the support column, the partition plate is welded inside the extraction tube, and a one-way discharge pipe is fixed to one end of the mounting hole.
[0014] Optionally, a one-way discharge pipe is fixed to the bottom of the material hopper, a sewage pipe is fixed to one side of the fixed box, the sewage pipe is connected to the arc frame, and a control valve is fixed on the sewage pipe.
[0015] Optionally, a fixing bolt is movably installed on the side of the movable plate, and a limit hole is opened on the side of the extraction tube, with one end of the fixing bolt movably installed inside the limit hole.
[0016] The technical solution provided in this disclosure may include the following beneficial effects: 1. This invention uses a movable rod to drive the extraction pipe to reciprocate inside the storage cylinder and support pipe. When the extraction pipe reciprocates, it drives the stirring plate to reciprocate back and forth through the connecting seat and mounting seat. The reciprocating movement of the stirring plate completes the stirring and mixing of the sewage. When the extraction pipe reciprocates, the piston seat moves inside the storage cylinder. The movement of the piston seat extracts the chemical agent and squeezes it out. The squeezed agent is discharged from the opening. While the stirring plate stirs the sewage, it also pushes the agent to cooperate with the sewage at different locations to complete the rapid stirring and mixing, effectively speeding up the work efficiency. 2. In the later stage of this invention, one end of the fixing bolt is installed inside the limiting hole. The extraction tube drives the movable plate to move through the fixing bolt. When the movable plate moves, the movable box moves slowly on the fixed plate. After the movable plate moves, it compresses the space between the movable box and the fixed box. After the movable box moves slowly, it compresses the space where the sewage is located. After the sewage is compressed, the movable box stops moving, providing a calm space for the sewage and the agent to come into contact. Later, when the bottom of the movable box moves back and forth on the fixed plate, the impurities deposited on the surface of the fixed plate are gradually pushed to the arc frame by the movable box, which facilitates the subsequent sewage treatment. 3. This invention uses a threaded column to drive a movable seat to move. The movable seat moves to adjust the position of the rotating seat. After the position of the rotating seat changes, the moving distance between the movable rod and the transmission rod increases. The movement of the movable seat and the rotating seat adjusts the moving distance of the extraction tube. The length of the extraction tube's moving distance controls the weight of the medicine extracted from the material barrel by the piston seat in the later stage. Thus, the quantitative discharge of the medicine in the later stage is controlled according to the movement of the extraction tube, meeting the needs of use under different conditions.
[0017] Additional aspects and advantages of this disclosure will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this disclosure. Attached Figure Description
[0018] The above and / or additional aspects and advantages of this disclosure will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, in which: Figure 1 This is a schematic diagram of the overall structure of a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure; Figure 2 This is a schematic diagram of the internal structure of the fixed box in a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure; Figure 3 This is a schematic diagram of the movable box in a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure; Figure 4 This is a schematic diagram of the mixing component in a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure; Figure 5 This is a magnified structural diagram of point A in a cement residue wastewater recycling and intelligent slurry preparation device proposed in an embodiment of this disclosure; Figure 6 This is a schematic diagram of the power component in a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure; Figure 7 This is a schematic diagram of the extraction component in a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure; Figure 8 This is a schematic diagram of the side view of the extraction pipe in a cement residue wastewater recycling and intelligent slurry preparation device according to an embodiment of this disclosure.
[0019] As shown in the figure: 1. Base; 2. Fixed box; 3. Support seat; 4. Groove; 5. Slide groove; 6. Slider; 7. Movable plate; 8. Fixing bolt; 9. Water inlet pipe; 10. Drive motor; 11. Fixed pipe; 12. Support pipe; 13. Extraction assembly; 14. Material bucket; 15. Power assembly; 16. Movable box; 17. Inclined seat; 18. Support mechanism; 19. Mixing assembly; 20. Mounting seat; 21. Fixed plate; 22. Arc-shaped frame; 23. Conveying auger; 24. Connecting seat; 25. Connecting hole; 26. Connecting pipe; 27. Mixing plate; 28. Arc-shaped groove; 29. 30. Reinforcing seat; 31. Motor housing; 32. Movable seat; 33. Threaded column; 34. Positioning tube; 35. Servo motor; 36. Rotating seat; 37. Fixed column; 38. Transmission rod; 39. Opening; 40. Movable rod; 41. Fixed groove; 42. Positioning column; 43. Threaded hole; 44. Output shaft; 45. Extraction tube; 46. Limiting hole; 47. Support column; 48. Piston seat; 49. Discharge tube; 50. Mounting hole; 51. Fixing ring; 52. Storage cylinder; 53. One-way discharge tube; 54. One-way discharge tube; 55. Limiting ring; 56. Divider plate. Detailed Implementation
[0020] Embodiments of this disclosure are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are used only to explain this disclosure, and should not be construed as limiting this disclosure. Rather, embodiments of this disclosure include all variations, modifications, and equivalents falling within the spirit and scope of the appended claims.
[0021] like Figures 1 to 8As shown, a cement slurry wastewater recycling and intelligent slurry preparation device includes: a base 1, a fixed box 2 fixed to the top of the base 1, a support base 3 fixed to the top of the fixed box 2, a slot 4 between the support base 3 and the fixed box 2, a movable plate 7 movably installed inside the slot 4, a slider 6 welded to the bottom of the movable plate 7, a sliding groove 5 on the inner wall of the slot 4, and the slider 6 slidably installed inside the sliding groove 5; an extraction component 13 including a fixed pipe 11 and a support pipe 12, both of which are welded to the support base 3, an extraction pipe 45 slidably installed inside the support pipe 12, a storage cylinder 52 movably installed inside the extraction pipe 45, one end of the storage cylinder 52 movably installed inside the fixed pipe 11, and a material bucket 14 fixed to the top of the storage cylinder 52; and a power component 15. The power assembly 15 includes a reinforcing base 30, a motor housing 31 fixed to the top of the reinforcing base 30, and one side of the motor housing 31 and the reinforcing base 30 fixed to a fixed box 2. A movable seat 32 is movably installed on the side of the motor housing 31, and a servo motor 35 is fixedly installed at the bottom of the movable seat 32. The stirring assembly 19 includes a mounting base 20, a connecting seat 24 welded to the top of the mounting base 20, one end of the connecting seat 24 welded to the bottom of the extraction tube 45, a connecting hole 25 inside the connecting seat 24, and a stirring plate 27 welded to the bottom of the mounting base 20. The slider 6 is installed inside the slide groove 5 through a support mechanism 18, which is a support spring. The support spring generates a rebound force after being compressed, and the rebound force generated by the support mechanism 18 facilitates the later movement and return of the slider 6 and the movable plate 7 to their original positions.
[0022] In this embodiment, the stirring plate 27 has an arc-shaped groove 28 on its side, and an opening 29 is formed on the inner wall of the arc-shaped groove 28. A guide pipe is fixed inside the stirring plate 27, and a connecting pipe 26 is fixed on the guide pipe. One end of the connecting pipe 26 is fixed inside the mounting base 20. A DC motor is fixedly installed inside the motor housing 31, and a threaded post 33 is installed on the DC motor. A threaded hole 43 is formed on the movable base 32, and the threaded post 33 is rotatably installed inside the threaded hole 43. A positioning tube 34 is fixed inside the movable base 32, and a positioning post 42 is movably installed inside the positioning tube 34. One end of the positioning post 42 is fixed to the motor housing 31. A rotating base 36 is rotatably installed on the top of the movable base 32, and the rotating base 36 is mounted on the servo motor 35 through an output shaft 44. A fixed column 37 is welded to the top of the rotating seat 36. A transmission rod 38 is rotatably mounted on the fixed column 37. A movable rod 40 is movably mounted at one end of the transmission rod 38. The movable rod 40 is movably mounted inside the support tube 12. One end of the support tube 12 has an opening 39. One end of the movable rod 40 has a fixed groove 41. The transmission rod 38 is mounted inside the fixed groove 41 via a rotating shaft. The transmission rod 38 swings inside the fixed groove 41 via the rotating shaft. Under the swing of the transmission rod 38, the movable rod 40 is pushed to move inside the opening 39. Under the limitation of the support tube 12, the movable rod 40 pushes the extraction tube 45 to move vertically back and forth. When the extraction tube 45 moves back and forth, the fixed ring 51 and the limiting ring 55 provide a double seal between the extraction tube 45 and the storage cylinder 52.
[0023] In this embodiment, a support mechanism 18 is fixedly installed on the side of the slider 6. One end of the support mechanism 18 is fixed inside the slide groove 5. A movable box 16 is welded to the inner wall of the movable plate 7. The movable box 16 is movably installed inside the fixed box 2. A fixed plate 21 is welded to the bottom of the fixed box 2. An inclined seat 17 is fixed on the movable box 16. The inclined seat 17 and the movable box 16 are movably installed on the top of the fixed plate 21. An arc-shaped frame 22 is welded to one side of the fixed plate 21. A conveying auger 23 is rotatably installed inside the arc-shaped frame 22. A drive motor 10 is fixed to one end of the conveying auger 23. The drive motor 10 is fixedly installed on the side of the fixed box 2. A water inlet pipe 9 is fixedly installed on the side of the fixed box 2. A fixing ring 51 is welded to the outer wall of the storage cylinder 52. A limiting ring 55 is movably installed on the side of the fixing ring 51. The limiting ring 55 is welded to the inner wall of the extraction pipe 45. An installation hole 50 is opened at the bottom of the storage cylinder 52. A discharge pipe 49 is movably installed inside the installation hole 50. One end of the discharge pipe 49 is installed inside the connection hole 25. The bottom of the movable box 16 gradually pushes the impurities on the surface of the fixing plate 21 to accumulate through the inclined seat 17. After accumulation, the impurities move into the arc frame 22 under slow push. Later, when the device falls into the arc frame 22, the drive motor 10 is started to drive the conveying auger 23 to push the remaining impurities outward.
[0024] In this embodiment, a piston seat 48 is movably installed inside the storage cylinder 52, and a support column 47 is fixed on the piston seat 48. A partition plate 56 is welded to one end of the support column 47, and the partition plate 56 is welded inside the extraction pipe 45. A one-way discharge pipe 54 is fixed to one end of the mounting hole 50. A one-way discharge pipe 53 is fixed to the bottom of the material barrel 14, and a sewage pipe is fixed to one side of the fixed box 2. The sewage pipe is connected to the arc frame 22, and a control valve is fixed to the sewage pipe. A fixing bolt 8 is movably installed on the side of the movable plate 7. A limit hole 46 is opened on the side of the extraction tube 45. One end of the fixing bolt 8 is movably installed inside the limit hole 46. Under the movement of the piston seat 48, a suction force is generated. The suction force draws the medicine from the inside of the material tank 14 into the inside of the storage tank 52 through the one-way discharge pipe 53. When the piston seat 48 moves towards one end of the fixing tube 11, the piston seat 48 squeezes the medicine from the one-way discharge pipe 54 into the discharge pipe 49. The medicine in the discharge pipe 49 enters the connecting pipe 26 and the opening 29 through the connecting hole 25 and is discharged outward.
[0025] Working Principle: During use, wastewater enters the fixed tank 2 through the inlet pipe 9. After the wastewater enters the fixed tank 2, the servo motor 35 is activated to drive the rotating seat 36 to rotate. The rotating seat 36 rotates and drives the transmission rod 38 to swing through the fixed column 37. The transmission rod 38 swings and moves at an angle on the movable rod 40 through the rotating shaft. The transmission rod 38 provides the moving power for the movable rod 40 under the push of the fixed column 37. The movable rod 40 drives the extraction pipe 45 to move on the storage cylinder 52. When the extraction pipe 45 moves, it drives the piston seat 48 to move through the support column 47. When the piston seat 48 moves towards the support pipe 12, the piston seat 48 generates suction inside the storage cylinder 52. The suction generated by the piston seat 48 drives the medicine through the one-way discharge pipe 53. The liquid enters from inside the material tank 14 into the storage tank 52. As the piston seat 48 moves toward one end of the fixed pipe 11, the piston seat 48 squeezes the liquid out of the one-way discharge pipe 54 into the discharge pipe 49. The liquid in the discharge pipe 49 enters the connecting pipe 26 and the opening 29 through the connecting hole 25 and is discharged outward. When the liquid is discharged from the opening 29, the extraction pipe 45 drives the stirring plate 27 on the mounting base 20 to move back and forth in the sewage through the connecting seat 24. While the stirring plate 27 pushes the sewage to stir, the medicine is discharged from the opening 29 into the sewage at different locations. After the stirring plate 27 completes the stirring of the sewage and the medicine, the servo motor 35 stops working, and one end of the fixing bolt 8 is installed inside the limit hole 46, so that the movable plate 7 and the extraction pipe 45 are connected. Pipe 45 is connected to the contact point. The servo motor 35 is started and slowly rotates. The servo motor 35 slowly rotates, causing the extraction pipe 45 to move slowly, driving the movable plate 7 to move slowly. As the movable plate 7 moves slowly, the movable box 16 slowly moves on the fixed plate 21. After the movable plate 7 moves, it compresses the space between the movable box 16 and the fixed box 2. The slow movement of the movable box 16 compresses the space containing the wastewater. After the wastewater is compressed, the movable box 16 remains stationary, providing a calm space for the wastewater and chemicals to come into contact, accelerating the flocculation reaction of the wastewater, and performing slurry processing. After the flocculation reaction, the wastewater is discharged from the drain pipe at the other end for the next processing step. When impurities remain on the fixed plate 21, the servo motor 35 is started, driving the rotating seat 36 and the extraction pipe 45 to move back and forth. 5. The movable box 16 moves, and the bottom of the movable box 16 gradually pushes the impurities on the surface of the fixed plate 21 through the inclined seat 17. After accumulation, the impurities move slowly into the arc frame 22. Later, when the device falls into the arc frame 22, the drive motor 10 is started to drive the conveying auger 23 to push the remaining impurities outward. Later, when it is necessary to adjust the amount of medicine added, the DC motor inside the motor box 31 drives the threaded column 33 to rotate. The threaded column 33 pushes the movable seat 32 to move. The movable seat 32 moves to adjust the position of the rotating seat 36. After the position of the rotating seat 36 changes, the moving distance between the movable rod 40 and the transmission rod 38 increases. The moving distance of the extraction tube 45 is adjusted by the movement of the movable seat 32 and the rotating seat 36.The length of the moving distance of the extraction tube 45 controls the weight of the agent extracted from the material tank 14 by the piston seat 48, thereby controlling the quantitative discharge of the agent according to the movement of the extraction tube 45 to meet the needs of different situations.
[0026] In the description of this disclosure, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, in the description of this disclosure, unless otherwise stated, "a plurality of" means two or more.
[0027] Any process or method description in the flowchart or otherwise herein can be understood as representing a module, segment, or portion of code comprising one or more executable instructions for implementing a particular logical function or process, and the scope of preferred embodiments of this disclosure includes additional implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order depending on the function involved, as will be understood by those skilled in the art to which embodiments of this disclosure pertain.
[0028] In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this disclosure. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0029] Although embodiments of the present disclosure have been shown and described above, it is to be understood that the above embodiments are exemplary and should not be construed as limiting the present disclosure. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present disclosure.
Claims
1. A cement residue wastewater recycling and intelligent slurry preparation device, characterized in that, include: A base (1) is provided with a fixed box (2) fixed on the top of the base (1), a support seat (3) fixed on the top of the fixed box (2), a slot (4) is provided between the support seat (3) and the fixed box (2), a movable plate (7) is movably installed inside the slot (4), a slider (6) is welded to the bottom of the movable plate (7), a sliding groove (5) is provided on the inner wall of the slot (4), and the slider (6) is slidably installed inside the sliding groove (5). The extraction assembly (13) includes a fixed tube (11) and a support tube (12). Both the fixed tube (11) and the support tube (12) are welded to the support base (3). An extraction tube (45) is slidably installed inside the support tube (12). A storage cylinder (52) is movably installed inside the extraction tube (45). One end of the storage cylinder (52) is movably installed inside the fixed tube (11). A material bucket (14) is fixed to the top of the storage cylinder (52). The power assembly (15) includes a reinforcing base (30), a motor housing (31) is fixed to the top of the reinforcing base (30), one side of the motor housing (31) and the reinforcing base (30) is fixed to a fixed box (2), a movable seat (32) is movably installed on the side of the motor housing (31), and a servo motor (35) is fixedly installed at the bottom of the movable seat (32). The stirring assembly (19) includes a mounting base (20), a connecting seat (24) is welded to the top of the mounting base (20), one end of the connecting seat (24) is welded to the bottom of the extraction tube (45), a connecting hole (25) is opened inside the connecting seat (24), and a stirring plate (27) is welded to the bottom of the mounting base (20).
2. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 1, characterized in that, The stirring plate (27) has an arc-shaped groove (28) on its side, and an opening (29) is made on the inner wall of the arc-shaped groove (28). A guide pipe is fixed inside the stirring plate (27), and a connecting pipe (26) is fixed on the guide pipe. One end of the connecting pipe (26) is fixed inside the mounting base (20).
3. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 1, characterized in that, A DC motor is fixedly installed inside the motor housing (31). A threaded column (33) is installed on the DC motor. A threaded hole (43) is opened on the movable seat (32). The threaded column (33) is rotatably installed inside the threaded hole (43). A positioning tube (34) is fixed inside the movable seat (32). The positioning tube (34) has a positioning column (42) installed inside. One end of the positioning column (42) is fixed on the motor housing (31). The top of the movable seat (32) is rotatably mounted with a rotating seat (36). The rotating seat (36) is mounted on the servo motor (35) through the output shaft (44).
4. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 3, characterized in that, A fixed column (37) is welded to the top of the rotating seat (36). A transmission rod (38) is rotatably mounted on the fixed column (37). A movable rod (40) is movably mounted at one end of the transmission rod (38). The movable rod (40) is movably mounted inside the support tube (12). An opening (39) is opened at one end of the support tube (12). A fixed groove (41) is opened at one end of the movable rod (40). The transmission rod (38) is mounted inside the fixed groove (41) through a rotating shaft.
5. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 1, characterized in that, A support mechanism (18) is fixedly installed on the side of the slider (6). One end of the support mechanism (18) is fixed inside the slide groove (5). A movable box (16) is welded on the inner wall of the movable plate (7). The movable box (16) is movably installed inside the fixed box (2). The fixed box (2) has a fixed plate (21) welded to its bottom, and the movable box (16) has a slant seat (17) fixed on it. The slant seat (17) and the movable box (16) are movably installed on the top of the fixed plate (21).
6. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 5, characterized in that, An arc-shaped frame (22) is welded to one side of the fixed plate (21). A conveying auger (23) is rotatably installed inside the arc-shaped frame (22). A drive motor (10) is fixed to one end of the conveying auger (23). The drive motor (10) is fixedly installed on the side of the fixed box (2). A water inlet pipe (9) is fixedly installed on the side of the fixed box (2).
7. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 1, characterized in that, A fixing ring (51) is welded to the outer wall of the storage cylinder (52). A limiting ring (55) is movably installed on the side of the fixing ring (51). The limiting ring (55) is welded to the inner wall of the extraction tube (45). An installation hole (50) is opened at the bottom of the storage cylinder (52). A discharge pipe (49) is movably installed inside the installation hole (50). One end of the discharge pipe (49) is installed inside the connection hole (25).
8. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 7, characterized in that, A piston seat (48) is movably installed inside the storage cylinder (52). A support column (47) is fixed on the piston seat (48). A partition plate (56) is welded to one end of the support column (47). The partition plate (56) is welded inside the extraction tube (45). A one-way discharge tube (54) is fixed to one end of the mounting hole (50).
9. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 6, characterized in that, The bottom of the material bucket (14) is fixed with a one-way discharge pipe (53), and a sewage pipe is fixed on one side of the fixed box (2). The sewage pipe is connected to the arc frame (22), and a control valve is fixed on the sewage pipe.
10. The cement residue wastewater recycling and intelligent slurry preparation device according to claim 1, characterized in that, The movable plate (7) is movably mounted with a fixing bolt (8) on its side, and the extraction tube (45) has a limit hole (46) on its side. One end of the fixing bolt (8) is movably mounted inside the limit hole (46).