Washing equipment for lithium carbonate processing

By designing a tiltable washing tub and a motor-driven rotating system, the problems of low material filling rate and poor washing effect in lithium carbonate processing equipment were solved, achieving a highly efficient cleaning and drying process and improving processing efficiency.

CN223518124UActive Publication Date: 2025-11-07NANTONG CINGJING RENEWABLE RESOURCES CO LTD
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Patent Information

Application Number
CN202422939326.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-11-07
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

In existing lithium carbonate processing equipment, the material tends to accumulate below the feed inlet during feeding, making it difficult to move fully to both sides of the screen frame. This results in a low material filling rate, insufficient friction leading to poor screen frame rotation and inadequate washing effect.

Method used

A washing device for lithium carbonate processing was designed. The washing tank is tilted by an adjustment mechanism to facilitate the filling of raw materials. Combined with a motor-driven rotating rod and transmission block system, the washing tank is shaken up and down to increase the contact area between the material and the cleaning solution. The cleaning solution is sprayed through nozzles and the material is dried with hot air.

Benefits of technology

It improves material filling efficiency and cleaning effect, increases the contact area between cleaning fluid and raw materials, improves cleaning efficiency, and speeds up the feeding process through inclined design and hot air drying, thus improving overall processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides washing equipment for lithium carbonate processing, which relates to the technical field of lithium carbonate production and comprises a washing barrel, a cleaning cavity is arranged at the upper end in the washing barrel in a penetrating manner, a temporary storage cavity is arranged at the lower end in the washing barrel, and a washing mechanism is mounted at the upper end in the washing barrel. After a user opens the sealing door, the washing barrel can be adjusted to be in an inclined state through the adjusting mechanism, so that the user can pour raw materials into the washing barrel and then can slide down along the inclined surface, the filling efficiency of the raw materials can be improved, the sealing door can be closed after filling of the raw materials is completed, and the raw materials are prevented from falling off. Then the washing barrel can be controlled to shake up and down through the adjusting mechanism, so that the raw materials and the cleaning liquid flow left and right in the washing barrel, the washing effect of the cleaning liquid and the raw materials is improved, finally, after the raw materials are washed, the raw materials can be washed through purified water sprayed by the spray head, and the cleaning liquid is prevented from being retained on the surfaces of the raw materials.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lithium carbonate production technical field, specifically, relates to a kind of washing equipment for lithium carbonate processing. BACKGROUND

[0002] Lithium carbonate is an inorganic compound, and in the process of processing lithium carbonate, often need to soften water to wash the clinker after high-temperature processing, such as the application number for "CN202310353396.7" is proposed a kind of lithium carbonate preparation washing device and method, for the problem that too much water stain is left on the surface of lithium carbonate in the prior art, the small particle lithium carbonate flows away with the discharge of washing liquid, and the washed lithium carbonate cannot be taken out from the washing device quickly, the following scheme is proposed, which comprises: a washing box, a top cover is arranged on the top of the washing box, a sieve frame is arranged in the washing box, heating devices are fixedly connected to the inner walls of the opposite sides of the washing box, a driving structure is arranged on one side of the washing box and used to drive the sieve frame to rotate. In the present application, not only can the lithium carbonate in the sieve frame be washed, but also the water stains on the lithium carbonate can be dried, which facilitates quick drying in the later stage. After drying, the lithium carbonate in the sieve frame can be quickly discharged from the washing box, which facilitates the washing of the next batch of lithium carbonate. The fine sieve plate can collect small particle lithium carbonate.

[0003] However, in the above technical solution, although centrifugal dewatering of lithium carbonate can be realized, during the feeding operation, the material is often accumulated only in the area below the feeding port, and it is difficult to move to the inside of the sieve frame. This results in a relatively low material filling rate in the sieve frame, and the amount of material processed at a time is small. In addition, the gravity acting on the material and the rotation direction of the sieve frame are both downward. If only the friction between the sieve frame and the material is relied on, the effect of moving the material during the rotation of the sieve frame is poor. This not only hinders the material from being turned over better, but also leads to a low washing effect. Therefore, the present application provides a washing equipment for lithium carbonate processing to solve the above problems. SUMMARY

[0004] The main purpose of the present application is to provide a washing equipment for lithium carbonate processing, which solves the problem that although centrifugal dewatering of lithium carbonate can be realized, during the feeding operation, the material is often accumulated only in the area below the feeding port, and it is difficult to move to the inside of the sieve frame. This results in a relatively low material filling rate in the sieve frame, and the amount of material processed at a time is small. In addition, the gravity acting on the material and the rotation direction of the sieve frame are both downward. If only the friction between the sieve frame and the material is relied on, the effect of moving the material during the rotation of the sieve frame is poor. This not only hinders the material from being turned over better, but also leads to a low washing effect.

[0005] To achieve the above object, the technical scheme adopted by the utility model is:

[0006] A kind of washing equipment for lithium carbonate processing, including washing barrel, the inside upper end of the washing barrel is provided with cleaning cavity, the inside lower end of the washing barrel is provided with temporary storage cavity, the inside upper end of the washing barrel is installed with washing mechanism, one end of the cleaning cavity is installed with sealing door, the upper end of sealing door and washing barrel is installed with extension block respectively, the extension block of mutual approach is installed with hinge, positioning mechanism is installed between the sealing door and washing barrel, the lower end of the washing barrel is installed with base, adjusting mechanism is installed between the base and washing barrel, the side of sealing door close to cleaning cavity is installed with sealing ring, and sealing ring and washing barrel are inlaid between, the washing mechanism includes temporary storage box, the inside upper end of the temporary storage box is installed in cleaning cavity, the inside lower end of the temporary storage box is installed with several spray heads.

[0007] As preferred, the inside upper end of the temporary storage box is respectively provided with a No. 1 liquid inlet pipe, a No. 2 liquid inlet pipe and an air guide pipe, the No. 1 liquid inlet pipe and the No. 2 liquid inlet pipe are connected with an external liquid storage tank, the air guide pipe is connected with an external air heater, and valves are respectively installed in the pipe bodies of the No. 1 liquid inlet pipe, the No. 2 liquid inlet pipe and the air guide pipe.

[0008] As preferred, a plurality of guide grooves are provided between the cleaning cavity and the temporary storage cavity, a plurality of isolation blocks are respectively installed in the inside upper end of the guide grooves, a buffer pad is respectively installed on the inner wall of the cleaning cavity and the side of the sealing door close to the spray head, and a liquid discharge pipe is installed in the inside one end of the temporary storage cavity.

[0009] As preferred, the positioning mechanism includes a lower fixed block and an upper fixed block, the lower fixed block and the upper fixed block are respectively installed on one side surface of the washing barrel and the sealing door, and the lower fixed block and the upper fixed block are vertically coincident, a temporary storage groove is provided in the inside of the lower fixed block, and a movable plate is movably installed in the inside upper end of the temporary storage groove.

[0010] As preferred, a spring is installed between the lower surface of the temporary storage groove and the movable plate, a handle is movably installed in the inside of the temporary storage groove, and the handle is connected with the movable plate, a positioning rod is installed on the upper surface of the movable plate, the upper end of the rod of the positioning rod is movably installed in the inside of the temporary storage groove, a positioning hole is provided in the inside of the upper fixed block, and the upper end of the positioning rod is clampedly installed in the inside of the positioning hole.

[0011] As preferred, the adjusting mechanism comprises limit supports respectively mounted at two ends of the lower surface of the washing barrel, fixed rods respectively fixedly mounted in the limit supports, a support block movably mounted in the limit support near the sealing door, and the rod bodies of the fixed rods movably penetratingly mounted in the support block.

[0012] As preferred, a connecting block is movably mounted in the limit support away from the sealing door, and the rod bodies of the fixed rods movably penetrate the connecting block, a sliding groove is provided at the lower end of the connecting block, and a push rod is movably penetratedly mounted in the sliding groove.

[0013] As preferred, support plates are respectively mounted at the front and rear ends of the upper surface of the base near the drain pipe, rotating rods are movably penetratedly mounted at the upper ends of the support plates, transmission blocks are respectively mounted at the ends of the rotating rods close to each other, the ends of the transmission blocks close to each other are fixedly connected with the push rod, a motor is mounted on the front surface of the support plate at the front end, and the output end of the motor is connected with the rotating rods.

[0014] Compared with the prior art, the present application has the following beneficial effects:

[0015] (1) In the present application, the user can adjust the washing barrel to an inclined state through the adjusting mechanism after opening the sealing door, so that the user can slide the raw materials downward along the inclined surface after pouring the raw materials into the washing barrel, thereby improving the filling efficiency of the raw materials. After the raw materials are filled, the sealing door can be closed, and the washing barrel can be controlled to swing up and down through the adjusting mechanism, so that the raw materials and the cleaning liquid flow left and right in the washing barrel, thereby improving the cleaning effect of the cleaning liquid and the raw materials. Finally, the raw materials can be washed by the pure water sprayed by the spray head after the raw materials are washed, so as to avoid the cleaning liquid remaining on the surface of the raw materials. Finally, the raw materials can be dried by hot air after washing, thereby greatly improving the overall processing efficiency of the raw materials and being more efficient.

[0016] (2) In the present application, the transmission blocks and the push rod are controlled to move up and down through the cooperation of the motor and the rotating rods, and then the connecting block can control the washing barrel to swing up and down around the other fixed rod as the axis through the fixed rod, so that the raw materials and the cleaning liquid in the washing barrel can be more fully contacted, thereby improving the overall cleaning efficiency. At the same time, after the raw materials are processed, the discharging efficiency of the raw materials can be greatly improved through the inclination angle of the washing barrel, thereby being more convenient. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a whole structure schematic view of the lithium carbonate processing washing equipment.

[0018] Figure 2 It is a front view structural schematic drawing of the washing equipment for lithium carbonate processing of the utility model;

[0019] Figure 3 It is a side view structural schematic drawing of the washing equipment for lithium carbonate processing of the utility model;

[0020] Figure 4 It is a front view structural schematic drawing of the washing equipment for lithium carbonate processing of the utility model; Figure 2 It is a section structure schematic drawing of A-A of the utility model;

[0021] Figure 5 It is a section structure schematic drawing of B-B of the utility model; Figure 3

[0022] Figure 6 It is a section structure schematic drawing of C-C of the utility model; Figure 3

[0023] Figure 7 It is a section structure schematic drawing of D of the utility model; Figure 4

[0024] Figure 8 It is a section structure schematic drawing of E of the utility model. Figure 5

[0025] In the drawing: 1, washing barrel; 101, cleaning cavity; 102, temporary storage cavity; 2, sealing door; 3, extension block; 4, washing mechanism; 401, temporary storage box; 402, spray head; 403, No. 1 liquid inlet pipe; 404, No. 2 liquid inlet pipe; 405, air guide pipe; 406, valve; 407, guide groove; 408, isolation block; 409, liquid discharge pipe; 5, positioning mechanism; 501, lower fixed block; 502, temporary storage groove; 503, spring; 504, movable plate; 505, handle; 506, upper fixed block; 507, positioning hole; 508, positioning rod; 6, base; 7, adjusting mechanism; 701, limiting frame; 702, fixed rod; 703, support block; 704, connecting block; 705, sliding groove; 706, push rod; 707, support plate; 708, transmission block; 709, motor; 710, rotating rod. DETAILED DESCRIPTION

[0026] ​​​​Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0027] As shown in Figures 1 to 8 The utility model discloses a kind of washing equipment for lithium carbonate processing, including washing barrel 1, the inside upper end of washing barrel 1 is provided with cleaning cavity 101, the inside lower end of washing barrel 1 is equipped with temporary storage chamber 102, the inside upper end of washing barrel 1 is equipped with washing mechanism 4, one end of cleaning cavity 101 is engaged and installed with sealing door 2, sealing door 2 and the upper end of washing barrel 1 are respectively installed with extension block 3, extension block 3 of mutual approach is equipped with hinge, sealing door 2 and washing barrel 1 between installation positioning mechanism 5, the lower end of washing barrel 1 is installed with base 6, adjustment mechanism 7 is installed between base 6 and washing barrel 1, sealing door 2 is installed with sealing ring close to the side of cleaning cavity 101, and sealing ring and washing barrel 1 between fit, washing mechanism 4 includes temporary storage box 401, temporary storage box 401 is installed in the inside upper end of cleaning cavity 101, the inside lower end of temporary storage box 401 is equipped with several spray heads 402.

[0028] As shown in Figures 4 to 8As shown, in another embodiment of the utility model, the inside upper end of temporary storage box 401 is respectively penetrated and installed with No. 1 liquid inlet pipe 403, No. 2 liquid inlet pipe 404 and air guide pipe 405, No. 1 liquid inlet pipe 403 and No. 2 liquid inlet pipe 404 are connected with outside liquid storage tank, air guide pipe 405 is connected with outside hot air machine, valve 406 is respectively installed in the pipe body of No. 1 liquid inlet pipe 403, No. 2 liquid inlet pipe 404 and air guide pipe 405, a plurality of guide grooves 407 are penetrated and arranged between cleaning cavity 101 and temporary storage cavity 102, a plurality of isolation blocks 408 are respectively installed in the inside upper end of guide groove 407, buffer pads are respectively installed on the inner wall of cleaning cavity 101 and the side of sealing door 2 close to spray head 402, liquid discharge pipe 409 is penetrated and installed in the inside one end of temporary storage cavity 102, positioning mechanism 5 includes lower fixed block 501 and upper fixed block 506, lower fixed block 501 and upper fixed block 506 are respectively installed on the side surface of washing barrel 1 and sealing door 2, and lower fixed block 501 and upper fixed block 506 are vertically coincident, temporary storage groove 502 is penetrated and arranged in the inside of lower fixed block 501, movable plate 504 is movably installed in the inside upper end of temporary storage groove 502, spring 503 is installed between the lower surface of temporary storage groove 502 and movable plate 504, handle 505 is movably installed in the inside of temporary storage groove 502, and handle 505 is connected with movable plate 504, positioning rod 508 is installed on the upper surface of movable plate 504, positioning rod 508 is movably penetrated and installed in the inside of temporary storage groove 502, positioning hole 507 is penetrated and arranged in the inside of upper fixed block 506, the upper end of positioning rod 508 is clamped and installed in the inside of positioning hole 507, adjusting mechanism 7 includes limiting frame 701, limiting frame 701 is respectively installed on the lower surface of both ends of washing barrel 1, fixed rod 702 is respectively fixedly installed in the inside of limiting frame 701, support block 703 is movably installed in the inside of limiting frame 701 close to sealing door 2, and the rod body of fixed rod 702 is movably penetrated and installed in the inside of support block 703, the lower end of support block 703 is fixedly installed on the surface of base 6, connecting block 704 is movably installed in the inside of limiting frame 701 away from sealing door 2, and the rod body of fixed rod 702 is movably penetrated and installed in the inside of connecting block 704, sliding groove 705 is penetrated and arranged in the inside lower end of connecting block 704, push rod 706 is movably penetrated and installed in the inside of sliding groove 705, support plate 707 is respectively installed on the upper surface of base 6 and close to the front and rear ends of liquid discharge pipe 409, rotating rod 710 is movably penetrated and installed in the inside upper end of support plate 707, transmission block 708 is respectively installed on the end of rotating rod 710 close to each other, fixed connection is established between the end of transmission block 708 close to each other and push rod 706, motor 709 is installed on the front surface upper end of support plate 707 located at the front end, and the output end of motor 709 is connected with rotating rod 710.

[0029] The user first pulls the movable plate 504 downward by the handle 505 to extrude the spring 503 and make the positioning rod 508 disengage from the inside of the positioning hole 507, and then opens the sealing door 2 through the hinge. After the sealing door 2 is opened, the motor 709 drives the rotating rod 710 to rotate downward, so that the rotating rod 710 drives the push rod 706 to rotate downward through the transmission block 708, and then the push rod 706 pulls the connecting block 704 downward through the sliding groove 705, so that the connecting block 704 drives one end of the washing barrel 1 to move downward, and the other end of the washing barrel 1 rotates around the fixed rod 702 as the axis, so that the washing barrel 1 forms an inclined state. The user can then pour the raw materials into the inside of the washing barrel 1, and the materials in the inside of the washing barrel 1 will slide towards the inside of the washing barrel 1 through the inclined surface, so as to improve the filling rate in the inside of the washing barrel 1, so that a larger amount of raw materials can be processed at a time. After the raw materials are filled, the user can close the sealing door 2, and then the spring 503 pushes the movable plate 504 and the positioning rod 508 to move upward, so that the positioning rod 508 is engaged into the inside of the positioning hole 507 again to position the sealing door 2. The cleaning liquid can then enter the inside of the temporary storage box 401 through the No. 2 liquid inlet pipe 404, and the cleaning liquid in the inside of the temporary storage box 401 can be sprayed into the inside of the cleaning cavity 101 through the spray head 402. With the spraying of the cleaning liquid, the cleaning liquid gradually fills the inside of the temporary storage cavity 102 and the cleaning cavity 101, so that the raw materials are soaked in the cleaning liquid. The motor 709 can then drive the rotating rod 710 to rotate, so that the rotating rod 710 drives the transmission block 708 to rotate 360°, and then the transmission block 708 drives the push rod 706 to slide in the sliding groove 705, so that the push rod 706 drives the connecting block 704 to move up and down, and then the connecting block 704 also drives the washing barrel 1 to swing up and down around the fixed rod 702 close to the sealing door 2 as the axis, so that the raw materials and the cleaning liquid in the inside of the washing barrel 1 are shaken, improving the contact area and cleaning efficiency of the raw materials and the cleaning liquid. After the raw materials are cleaned, the user can open the drain pipe 409 to drain the cleaning liquid. After the cleaning liquid is drained, pure water can enter the inside of the temporary storage box 401 through the No. 1 liquid inlet pipe 403, and then the pure water can be sprayed into the inside of the cleaning cavity 101 through the spray head 402 to rinse the cleaning liquid remaining on the surface of the raw materials. The rinsed waste liquid can be drained through the drain pipe 409. After the raw materials are rinsed, the hot air blower can inject hot air into the temporary storage box 401 through the air guide pipe 405, and then into the inside of the cleaning cavity 101 through the spray head 402 to dry the raw materials. After the raw materials are dried, the user can open the sealing door 2, and then drive the connecting block 704 to move upward through the transmission block 708 and the push rod 706, so that one end of the washing barrel 1 is moved upward,Thus, the raw materials inside the washing barrel 1 are slid down;

[0030] The buffer pad is made of polyurethane rubber material. The polyurethane rubber material has good elasticity, wear resistance, is suitable for high load and high speed impact, and has good pressure resistance and corrosion resistance. The installation in the inside of the cleaning cavity 101 can stably protect the raw materials, avoid the collision of the raw materials with the inner wall of the cleaning cavity 101 during the flow process, and the fragmentation of the raw materials, and also will not affect the raw materials and the cleaning liquid;

[0031] The sealing ring is used for sealing between the sealing door 2 and the cleaning cavity 101, to avoid the leakage of liquid.

[0032] The working principle of the lithium carbonate processing washing equipment is as follows:

[0033] In use, first, the user first by the handle 505 to the movable plate 504 down to pull, to let the movable plate 504 to the spring 503 extrusion and also drive the positioning rod 508 from the inside of the positioning hole 507, then the user can through the hinge to the sealing door 2 open, then in the sealing door 2 open, the motor 709 drive rotating rod 710 downward rotation, so that the rotating rod 710 through the transmission block 708 drive push rod 706 downward rotation, then the push rod 706 can through the chute 705 pull the connecting block 704 to move down, so that the connecting block 704 drive one end of the washing barrel 1 to move down, let the other end of the washing barrel 1 with fixed rod 702 as the axis to rotate, to let the washing barrel 1 form inclined state, then the user can pour the raw material into the inside of the washing barrel 1, then the material into the inside of the washing barrel 1 will slide to the inside of the washing barrel 1 through the inclined plane, to improve the filling rate of the inside of the washing barrel 1, let it can process more quantity of raw material at a time, then in the raw material filling is completed, the user can close the sealing door 2, then let the spring 503 push the movable plate 504 and the positioning rod 508 to move up, let the positioning rod 508 again into the inside of the positioning hole 507, the position of the sealing door 2 positioning work, then the cleaning fluid can enter the inside of the temporary storage box 401 through the No. 2 liquid inlet pipe 404, then the cleaning fluid into the inside of the temporary storage box 401 can be sprayed to the inside of the cleaning cavity 101 through the nozzle 402, then with the spraying of the cleaning fluid, let the cleaning fluid gradually fill the inside of the temporary storage cavity 102 and the cleaning cavity 101, let the raw material soak in the inside of the cleaning fluid, then the motor 709 can drive the rotating rod 710 to rotate, let the rotating rod 710 drive the transmission block 708 to rotate 360 DEG work, then the transmission block 708 can drive the push rod 706 to slide in the chute 705, to let the push rod 706 drive the connecting block 704 to move up and down, then the connecting block 704 can also drive the washing barrel 1 to swing up and down with the fixed rod 702 on the side close to the sealing door 2 as the axis, so that the raw material and cleaning fluid in the inside of the washing barrel 1 shake, improve the contact area and cleaning efficiency of the raw material and cleaning fluid, then in the raw material cleaning is completed, the user can open the drain pipe 409 to discharge the cleaning fluid, finally the cleaning fluid is discharged, pure water can enter the inside of the temporary storage box 401 through the No. 1 liquid inlet pipe 403, then the pure water can be sprayed to the inside of the cleaning cavity 101 through the nozzle 402, to flush the cleaning fluid remaining on the surface of the raw material, then the waste liquid after washing can be discharged through the drain pipe 409, finally in the raw material washing is completed, the hot air blower can inject hot air into the temporary storage box 401 along the air guide pipe 405, then enter the inside of the cleaning cavity 101 through the nozzle 402, to dry the raw material, finally the raw material drying is completed, the user can open the sealing door 2, then through the transmission block 708 and the push rod 706 push, let the connecting block 704 push one end of the washing barrel 1 to move up,Thus, the raw materials inside the washing barrel 1 are slid down.

[0034] Obviously, the above embodiments of the present application are merely exemplary and are not intended to limit the embodiments of the present application. For those skilled in the art, other different forms of changes or variations can be made on the basis of the above description, and it is impossible to enumerate all the embodiments here. Any obvious changes or variations derived from the technical solutions of the present application still fall within the protection scope of the present application.

Claims

1. A washing apparatus for lithium carbonate processing, comprising a washing tub (1), characterized in that: The inside upper end of the washing barrel (1) is provided with a cleaning cavity (101), the inside lower end of the washing barrel (1) is provided with a temporary storage cavity (102), the inside upper end of the washing barrel (1) is provided with a washing mechanism (4), one end of the cleaning cavity (101) is provided with a sealing door (2), the sealing door (2) and the upper end of the washing barrel (1) are respectively provided with an extension block (3), the extension blocks (3) close to each other are provided with a hinge, the sealing door (2) and the washing barrel (1) are provided with a positioning mechanism (5), the lower end of the washing barrel (1) is provided with a base (6), the base (6) and the washing barrel (1) are provided with an adjusting mechanism (7), the side of the sealing door (2) close to the cleaning cavity (101) is provided with a sealing ring, and the sealing ring is attached to the washing barrel (1), the washing mechanism (4) comprises a temporary storage box (401), the temporary storage box (401) is installed at the inside upper end of the cleaning cavity (101), and the inside lower end of the temporary storage box (401) is provided with a plurality of spray heads (402).

2. The washing apparatus for lithium carbonate processing according to claim 1, characterized by: The inside upper end of the temporary storage box (401) is respectively provided with a first liquid inlet pipe (403), a second liquid inlet pipe (404) and an air guide pipe (405), the first liquid inlet pipe (403) and the second liquid inlet pipe (404) are connected with an external liquid storage tank, the air guide pipe (405) is connected with an external hot air machine, and the pipe bodies of the first liquid inlet pipe (403), the second liquid inlet pipe (404) and the air guide pipe (405) are respectively provided with valves (406).

3. The washing apparatus for lithium carbonate processing according to claim 1, characterized by: A plurality of guide grooves (407) are provided between the cleaning cavity (101) and the temporary storage cavity (102), the inside upper end of the guide groove (407) is respectively provided with a plurality of isolation blocks (408), the inner wall of the cleaning cavity (101) and the side of the sealing door (2) close to the spray head (402) are respectively provided with a buffer pad, and the inside one end of the temporary storage cavity (102) is provided with a liquid discharge pipe (409).

4. The washing apparatus for lithium carbonate processing according to claim 1, characterized by: The positioning mechanism (5) comprises a lower fixed block (501) and an upper fixed block (506), the lower fixed block (501) and the upper fixed block (506) are respectively installed on one side surface of the washing barrel (1) and the sealing door (2), and the lower fixed block (501) and the upper fixed block (506) are vertically coincident, the inside of the lower fixed block (501) is provided with a temporary storage groove (502), and the inside upper end of the temporary storage groove (502) is movably provided with a movable plate (504).

5. The washing apparatus for lithium carbonate processing according to claim 4, characterized by: The lower surface of the temporary storage groove (502) and the movable plate (504) are provided with a spring (503), the inside of the temporary storage groove (502) is movably provided with a handle (505), the handle (505) is connected with the movable plate (504), the upper surface of the movable plate (504) is provided with a positioning rod (508), the upper end of the rod body of the positioning rod (508) is movably provided in the inside of the temporary storage groove (502), the inside of the upper fixed block (506) is provided with a positioning hole (507), and the upper end of the positioning rod (508) is clamped in the inside of the positioning hole (507).

6. The washing apparatus for lithium carbonate processing according to claim 1, characterized by: Said adjusting mechanism (7) includes a limiting stand (701), the limiting stand (701) is installed at both ends of the lower surface of the washing tub (1) respectively, the inner part of the limiting stand (701) is fixedly installed with a fixed rod (702) respectively, the inner part of the limiting stand (701) near the sealing door (2) side is movably installed with a supporting block (703), and the rod body of the fixed rod (702) movably penetrates and is installed in the inner part of the supporting block (703), and the lower end of the supporting block (703) is fixedly installed on the surface of the base (6).

7. The washing apparatus for lithium carbonate processing according to claim 6, characterized by: The inner part of the limiting stand (701) away from the sealing door (2) side is movably installed with a connecting block (704), and the rod body of the fixed rod (702) movably penetrates and is installed in the inner part of the connecting block (704), the inner part of the connecting block (704) is provided with a sliding groove (705) penetratingly, and the inner part of the sliding groove (705) is movably installed with a push rod (706).

8. The washing apparatus for lithium carbonate processing according to claim 7, characterized by: The upper surface of the base (6) and the front and rear ends near the drainage pipe (409) side are respectively installed with a supporting plate (707), the inner part of the supporting plate (707) is movably installed with a rotating rod (710) penetratingly at the upper end respectively, the end of the rotating rod (710) close to each other is respectively installed with a transmission block (708), and the end of the transmission block (708) close to each other side is fixedly connected with the push rod (706), the front surface of the supporting plate (707) is installed with a motor (709) at the upper end, and the output end of the motor (709) is connected with the rotating rod (710).

Citation Information

Patent Citations

  • Lithium carbonate preparation washing device and method

    CN116637859A