Cooling crystallization unit for lithium chloride production
By designing detachable circulation and cooling components and a scraping mechanism, the problem of difficult pipeline maintenance in lithium chloride production units has been solved, enabling convenient cleaning and extending service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU CHANGJILI NEW ENERGY TECH CO LTD
- Filing Date
- 2025-05-21
- Publication Date
- 2026-04-21
AI Technical Summary
The water supply and return pipelines of existing lithium chloride production units cannot be disassembled separately, making maintenance difficult.
The design incorporates detachable circulation and cooling components, combined with a scraping mechanism, to achieve automatic periodic cleaning and collection of crystals, preventing long-term corrosion from chemical agents.
This facilitates regular cleaning and maintenance by staff, extends the service life of the equipment, and prevents crystals from adhering to and corroding parts over a long period of time.
Smart Images

Figure CN224151273U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of chemical technology, and in particular to a cooling crystallization unit for lithium chloride production. Background Technology
[0002] Chinese patent document CN213614009U discloses a multi-stage continuous casting crystallizer. This utility model belongs to the field of metallurgical technology and relates to a multi-stage continuous casting crystallizer, including a crystallizer unit, a cooling unit for cooling the crystallizer unit, and a vibration control unit for controlling the vibration of the crystallizer unit; the cooling unit includes a water supply pipeline and a water return pipeline. By controlling the asynchronous vibration of several sub-crystallizer units, the friction between the billet shell and the copper plate of the crystallizer is reduced, thereby achieving the purpose of increasing the casting speed and reducing the probability of steel leakage.
[0003] The water supply and return pipes in the above-mentioned device cannot be disassembled separately, making maintenance difficult for staff. In response to the above problems, corrections have been made. Utility Model Content
[0004] The purpose of this invention is to provide a cooling crystallization unit for lithium chloride production, which can solve the problem that the water supply and return pipes in the above-mentioned device cannot be disassembled separately, making maintenance difficult for staff.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a cooling crystallization unit for lithium chloride production, comprising a water tank, a connecting mechanism, a cooling mechanism, and a scraping mechanism. The connecting mechanism includes a fixed pipe disposed on the water tank and a permeable plate disposed inside the fixed pipe. The fixed pipe is fixedly connected to one side of the water tank. The cooling mechanism includes a crystallization component disposed on the water tank and a circulation component disposed on the connecting mechanism. Both the crystallization component and the circulation component are snap-fitted together. The scraping mechanism includes an electric slide rail disposed inside the connecting mechanism and an electric slider disposed on the electric slide rail. The electric slider is slidably connected to the electric slide rail.
[0006] Preferably, the connecting mechanism further includes a support frame and a cover plate, with the support frame snapped into the water tank and the cover plate snapped into the top of the support frame.
[0007] Preferably, the crystallization component includes a U-shaped bracket, a storage box, and a cooler. The U-shaped bracket is fixedly connected to the front of the water tank, and the storage box is snapped into the U-shaped bracket. The cooler is fixedly connected into the storage box. The circulation component includes a pump, an input pipe, and an output pipe. The pump is fixedly connected to the top of the cover plate, and the input end of the pump is snapped into the input pipe. The output end of the pump is snapped into the output pipe. This mechanism designs both the circulation component with circulation function and the crystallization component with cooling function to be detachable. Therefore, this design makes it easy for workers to clean the residual chemical substances adhering to their surfaces by category, avoiding long-term adhesion and corrosion of the connections by chemical crystals. It also facilitates regular cleaning and maintenance by workers, which helps to extend the service life of the device.
[0008] Preferably, the scraping mechanism further includes a C-shaped bracket and an I-shaped scraper. The C-shaped bracket is fixedly connected to the electric slider, and the I-shaped scraper is snapped into the C-shaped bracket. The I-shaped scraper fits against the outer wall of the storage box. This mechanism can automatically and periodically scrape the crystals attached to the surface of the cooling mechanism, which on the one hand prevents the crystals from adhering to the parts for a long time and corrodes them, and on the other hand, can directly collect and utilize the scraped crystals.
[0009] Preferably, the other end of the input pipe is connected to the fixed pipe by a clamp, and the water tank, fixed pipe, input pipe, pump, output pipe and storage box are connected internally.
[0010] Preferably, there are two sets of the U-shaped bracket, storage box and output tube, which are arranged symmetrically.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] (1) The cooling crystallization unit for lithium chloride production, through the coordinated use of water tank, connecting mechanism, cooling mechanism, crystallization component, U-shaped bracket, storage box, cooler, circulation component, pump, input pipe, output pipe and scraping mechanism, addresses the shortcomings of the above-mentioned device where the water supply pipe and return pipe cannot be disassembled separately, making maintenance difficult for staff. This mechanism designs both the circulation component with circulation function and the crystallization component with cooling function to be detachable. Therefore, this design makes it easy for staff to clean the residual chemical substances attached to their surfaces by category, avoiding long-term adhesion and corrosion of the connection by chemical agents, facilitating regular cleaning and maintenance by staff, and helping to extend the service life of the device.
[0013] (2) The cooling crystallization unit for lithium chloride production, through the combined use of water tank, connecting mechanism, cooling mechanism, scraping mechanism, electric slide rail, electric slider, C-shaped bracket and I-shaped scraper, can automatically and periodically scrape the crystals attached to the surface of the cooling mechanism. On the one hand, it avoids the crystals from adhering to the parts for a long time and on the other hand, it can directly collect and utilize the scraped crystals. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0015] Figure 1 This is a perspective view of the present utility model;
[0016] Figure 2 This is a perspective view of the transparent plate of this utility model;
[0017] Figure 3 This is a perspective view of the circulation component of this utility model;
[0018] Figure 4 This is a perspective view of the scraping mechanism of this utility model.
[0019] Reference numerals: 1. Water tank; 2. Connecting mechanism; 201. Fixing pipe; 202. Through plate; 203. Stand; 204. Cover plate; 3. Cooling mechanism; 31. Crystallization component; 311. U-shaped insert; 312. Storage box; 313. Cooler; 32. Circulation component; 321. Pump; 322. Input pipe; 323. Output pipe; 4. Scraper mechanism; 401. Electric slide rail; 402. Electric slider; 403. C-shaped insert; 404. I-shaped scraper. Detailed Implementation
[0020] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.
[0021] Please see Figure 1-4 This utility model provides a technical solution: a cooling crystallization unit for lithium chloride production, including a water tank 1, a connecting mechanism 2, a cooling mechanism 3, and a scraping mechanism 4. The connecting mechanism 2 includes a fixed pipe 201 disposed on the water tank 1 and a through plate 202 disposed inside the fixed pipe 201. The fixed pipe 201 is fixedly connected to one side of the water tank 1. The cooling mechanism 3 includes a crystallization component 31 disposed on the water tank 1 and a circulation component 32 disposed on the connecting mechanism 2. The crystallization component 31 and the circulation component 32 are both snap-fitted together. The scraping mechanism 4 includes an electric slide rail 401 disposed inside the connecting mechanism 2 and an electric slider 402 disposed on the electric slide rail 401. The electric slider 402 is slidably connected to the electric slide rail 401.
[0022] Furthermore, the connecting mechanism 2 also includes a support frame 203 and a cover plate 204. The support frame 203 is snapped into the water tank 1, and the top of the support frame 203 is snapped into the cover plate 204.
[0023] Furthermore, the crystallization component 31 includes a U-shaped insert 311, a storage box 312, and a cooler 313. The U-shaped insert 311 is fixedly connected to the front of the water tank 1, and the storage box 312 is snapped into the U-shaped insert 311. The cooler 313 is fixedly connected into the storage box 312. The circulation component 32 includes a pump 321, an input pipe 322, and an output pipe 323. The pump 321 is fixedly connected to the top of the cover plate 204. The input end of the pump 321 is snapped into the input pipe 322, and the output end of the pump 321 is snapped into the output pipe 323. In use, the chemical agent is poured into the water tank 1, and the pump 321 is started. Pump 321 draws the chemical agent from water tank 1 into storage box 312 through input pipe 322 and discharges it into storage box 312 through output pipe 323. Cooler 313 is started and crystallizes the chemical agent. The crystals condense on the outer wall of storage box 312. The circulation component 32 with circulation function and the crystallization component 31 with cooling function are both designed to be detachable. Therefore, this design makes it easy for staff to clean the residual chemical substances attached to their surfaces by category, avoid long-term adhesion and corrosion of the connection by chemical agent crystals, facilitate regular cleaning and maintenance by staff, and help extend the service life of the device.
[0024] Secondly, the scraping mechanism 4 also includes a C-shaped insert 403 and an I-shaped scraper 404. The C-shaped insert 403 is fixedly connected to the electric slider 402, and the I-shaped scraper 404 is snapped into the C-shaped insert 403. The I-shaped scraper 404 is in contact with the outer wall of the storage box 312. When the electric slider 402 is started, the electric slider 402 drives the C-shaped insert 403 to move upward, and the C-shaped insert 403 drives the I-shaped scraper 404 to move upward. The I-shaped scraper 404 scrapes the crystals onto its surface. This mechanism can automatically and periodically scrape the crystals attached to the surface of the cooling mechanism 3, on the one hand, avoiding long-term adhesion of crystals and corrosion of parts, and on the other hand, directly collecting and utilizing the scraped crystals.
[0025] Finally, the other end of the input pipe 322 is snapped into connection with the fixed pipe 201. The water tank 1, the fixed pipe 201, the input pipe 322, the pump 321, the output pipe 323 and the storage box 312 are connected internally. There are two sets of U-shaped brackets 311, storage boxes 312 and output pipes 323, which are arranged symmetrically.
[0026] Working principle: When in use, pour the chemical agent into the water tank 1, control the pump 321 to start, the pump 321 draws the chemical agent in the water tank 1 into the storage box 312 through the input pipe 322 and discharges it into the storage box 312 through the output pipe 323. Control the cooler 313 to start, the cooler 313 crystallizes the chemical agent, the crystals condense on the outer wall of the storage box 312. Control the electric slider 402 to start, the electric slider 402 drives the C-shaped bracket 403 to move upward, the C-shaped bracket 403 drives the I-shaped scraper 404 to move upward, the I-shaped scraper 404 scrapes the crystals onto its surface.
[0027] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A cooling crystallization unit for lithium chloride production, characterized by, include: Water tank (1); The connecting mechanism (2) includes a fixed pipe (201) installed on the water tank (1) and a through plate (202) installed inside the fixed pipe (201). The fixed pipe (201) is fixedly connected to one side of the water tank (1). The cooling mechanism (3) includes a crystallization component (31) disposed on the water tank (1) and a circulation component (32) disposed on the connecting mechanism (2). The crystallization component (31) and the circulation component (32) are both snap-fitted together. The scraping mechanism (4) includes an electric slide rail (401) disposed in the connecting mechanism (2) and an electric slider (402) disposed on the electric slide rail (401), the electric slider (402) being slidably connected to the electric slide rail (401).
2. The cooling crystallization unit for lithium chloride production according to claim 1, characterized in that: The connecting mechanism (2) also includes a stand (203) and a cover plate (204). The stand (203) is snapped into the water tank (1), and the top of the stand (203) is snapped into the cover plate (204).
3. The cooling crystallization unit for lithium chloride production according to claim 2, characterized in that: The crystallization assembly (31) includes a U-shaped bracket (311), a storage box (312), and a cooler (313). The U-shaped bracket (311) is fixedly connected to the front side of the water tank (1). The storage box (312) is snapped into the U-shaped bracket (311). The cooler (313) is fixedly connected inside the storage box (312). The circulation assembly (32) includes a pump (321), an input pipe (322) and an output pipe (323). The pump (321) is fixedly connected to the top of the cover plate (204). The input end of the pump (321) is snapped to the input pipe (322), and the output end of the pump (321) is snapped to the output pipe (323).
4. The cooling crystallization unit for lithium chloride production according to claim 3, characterized in that: The scraping mechanism (4) also includes a C-shaped bracket (403) and an I-shaped scraper (404). The C-shaped bracket (403) is fixedly connected to the electric slider (402). The I-shaped scraper (404) is snapped into the C-shaped bracket (403). The I-shaped scraper (404) fits against the outer wall of the storage box (312).
5. The cooling crystallization unit for lithium chloride production according to claim 4, characterized in that: The other end of the input pipe (322) is snapped into the fixed pipe (201), and the water tank (1), fixed pipe (201), input pipe (322), pump (321), output pipe (323) and storage box (312) are connected internally.
6. The cooling crystallization unit for lithium chloride production according to claim 5, characterized in that: There are two sets of the U-shaped insert (311), storage box (312) and output tube (323), which are arranged symmetrically.
Citation Information
Patent Citations
Multisection continuous casting crystallizer
CN213614009U