Water-cooling type cooling crystallizer
By introducing scraping and cooling components into a water-cooled crystallizer, and using an electric telescopic column and a buffer damper to scrape away the crystals on the inner wall, the problem of crystal residue on the inner wall of the crystallizer is solved, achieving efficient crystal collection and cooling, reducing maintenance and labor costs, and improving crystallization output and cooling efficiency.
Patent Information
- Application Number
- CN202422924117.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-29
AI Technical Summary
In the prior art, crystals easily adhere to the inner wall of the crystallizer and are difficult to effectively scrape off, resulting in residual crystals on the inner wall, causing waste and increasing maintenance costs.
A water-cooled cooling crystallizer was designed, comprising a scraping component and a cooling component. An electric telescopic column is used to push the filter cartridge upward, and a scraper scrapes the crystals on the inner wall. A buffer damper is used to provide buffering and reduce hard scraping. A fan and cooling pipe are used to improve cooling efficiency.
It effectively removes residual crystals from the inner wall of the crystallizer, extends equipment life, increases crystallization output, reduces maintenance and labor costs, improves work efficiency, and accelerates the cooling process.
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Figure CN223439210U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cooling crystallizer technical field especially relates to a water -cooled cooling crystallizer. BACKGROUND
[0002] Cooling crystallizer is a kind of equipment for the crystallization of substance, and its basic principle is based on the change of solubility of solution with temperature change.When the temperature decreases, the solubility of solute in solvent decreases. For a solution of certain concentration, with the decrease of temperature, the solution will gradually reach supersaturation state, at this time, the solute will be precipitated from the solution in the form of crystal.
[0003] In the prior art, when the solution is crystallized, the crystals are easily attached to the inner wall of the crystallizer, and it is not convenient to scrape off the crystals on the inner wall of the crystallizer, resulting in more crystals remaining on the inner wall, and further causing waste of crystals. UTILITY MODEL CONTENT
[0004] The utility model mainly provides a water -cooled cooling crystallizer of convenient to scrape off the crystallizer inner wall crystal, improve the output.
[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a water -cooled cooling crystallizer, including cooling crystallizer assembly, the inside of cooling crystallizer assembly is provided with scraping assembly, the outside of cooling crystallizer assembly is provided with cooling assembly, cooling crystallizer assembly includes crystallization tank, cooling assembly includes outer sleeve jar, the outside of crystallization tank is sleeved with outer sleeve jar, and cooling pipe is wound between outer sleeve jar and crystallization tank, one end of cooling pipe is connected with pump machine, scraping assembly includes connecting ring, the bottom of connecting ring is distributed with multiple support plates, the bottom of support plate is connected with filter cartridge, and multiple buffer dampers are evenly distributed on the outer wall of connecting ring, one end of buffer damper is installed with scraper, and the inner wall of crystallization tank is attached to scraper, cooling water is extracted by pump machine, cooling pipe is wound on the outer wall of crystallization tank, thereby facilitating the cooling of crystallization tank, facilitating the crystallization of solution, extending through electric telescopic column after the completion of crystallization, driving connecting plate and filter cartridge to rise, filter cartridge is beneficial to collect crystals, when filter cartridge rises, scraper is beneficial to effectively scrape off the residual crystals adhered to the inner wall of crystallization tank, and the scraped crystals fall in the inside of filter cartridge, buffer damper is beneficial to provide buffering effect, avoid hard scraping between scraper and the inner wall of crystallization tank, reduce the maintenance cost of crystallization tank, thereby prolonging the service life of crystallization tank, effectively scraping the crystals on the inner wall of crystallization tank through scraper, reducing the residual, beneficial to effectively collect crystals, improving the yield of crystals, simultaneously, without manual cleaning of the inner wall of crystallization tank, reducing the labor cost, thereby improving the work efficiency.
[0006] Preferably, the outer sleeve is provided with a plurality of through grooves, a fan is installed in the through grooves, and a protective frame is installed on the outer side of the fan.
[0007] Preferably, the crystallization tank is internally fixedly installed with a fixed plate, and electric telescopic columns are symmetrically installed in the crystallization tank, one end of the electric telescopic column penetrates into the inside of the fixed plate, the electric telescopic column is extended to push the connecting plate, the filter cylinder is driven to rise, and the crystallization in the crystallization tank is conveniently taken out.
[0008] Preferably, the output end of the electric telescopic column is connected with the connecting plate, the connecting plate is installed at the bottom of the filter cylinder, and a discharge pipe is connected to the side of the crystallization tank.
[0009] Preferably, the pump is connected with a conveying pipe, one end of the conveying pipe is installed with a storage tank, the other end of the cooling pipe is connected with a collecting tank, and the bottom of the storage tank is installed with a fixed bottom plate.
[0010] Preferably, the top of the crystallization tank is installed with a tank cover, the top of the tank cover is fixedly installed with a side plate, and the bottom of the side plate is connected with a hydraulic telescopic column.
[0011] Compared with the prior art, the utility model has the advantages and positive effects that,
[0012] 1、The electric telescopic column is extended to push the connecting plate and drive the filter cylinder to rise, the filter cylinder is convenient for collecting the crystal, when the filter cylinder rises, the scraper is convenient for effectively scraping the residual crystal adhered to the inner wall of the crystallization tank, the scraped crystal falls in the inside of the filter cylinder, the buffer damper is convenient for providing the buffering effect, avoids the hard scraping between the scraper and the inner wall of the crystallization tank, reduces the maintenance cost of the crystallization tank, and prolongs the service life of the crystallization tank.
[0013] 2、 The utility model discloses, through the pump machine extraction storage tank inside cooling water, through the delivery pipe is favorable to make cooling water delivery to cooling pipe, cooling pipe winding is in the outer wall of crystallization jar, and further is favorable to cooling crystallization jar, and the fan works with cooling pipe, is favorable to fast take away the heat that cooling pipe absorbs and then passes to the heat outside, improves the cooling efficiency, and further speeds up the cooling process. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 A perspective view of a water-cooled cooling crystallizer is provided for the utility model;
[0015] Figure 2 A side view of a water-cooled cooling crystallizer is provided for the utility model;
[0016] Figure 3 A partial sectional view of a water-cooled cooling crystallizer is provided for the utility model;
[0017] Figure 4 An internal sectional view of a water-cooled cooling crystallizer is provided for the utility model;
[0018] Figure 5 A scraping assembly structure diagram of a water-cooled cooling crystallizer is provided for the utility model.
[0019] Legend: 1, cooling crystallizer assembly; 101, crystallization jar; 102, jar cover; 103, side plate; 104, hydraulic telescopic column; 2, cooling assembly; 201, outer sleeve jar; 202, cooling pipe; 203, pump machine; 204, storage tank; 205, collection jar; 206, fan; 207, protective frame; 3, scraping assembly; 301, scraper; 302, buffer damper; 303, connecting ring; 304, support plate; 305, filter cartridge; 306, connecting plate; 307, electric telescopic column; 308, fixed plate; 309, discharge pipe; 4, fixed base plate. DETAILED DESCRIPTION
[0020] In order to more clearly understand the above purpose, features and advantages of the utility model, the utility model is further illustrated below in conjunction with the drawings and examples. It should be explained that the examples and features in the examples of the present application can be combined with each other without conflict.
[0021] In the following description, a lot of specific details are set forth in order to fully understand the utility model, but the utility model can also be implemented in other ways different from the description, therefore, the utility model is not limited to the specific examples disclosed in the following specification.
[0022] Please refer to Figures 1-5The utility model provides a technical scheme: a water -cooling type cooling crystallizer, including cooling crystallizer subassembly 1, the inside of cooling crystallizer subassembly 1 is provided with scraping component 3, the outside of cooling crystallizer subassembly 1 is provided with cooling component 2, cooling crystallizer subassembly 1 includes crystallization jar 101, cooling component 2 includes outer sleeve jar 201, the outer sleeve jar 201 is sleeved in the outside of crystallization jar 101, and cooling pipe 202 is wound between the outer sleeve jar 201 and crystallization jar 101, one end of cooling pipe 202 is connected with pump machine 203, scraping component 3 includes connecting ring 303, the bottom of connecting ring 303 is distributed with a plurality of support plate 304, the bottom of support plate 304 is connected with filter cartridge 305, the outer wall of connecting ring 303 is evenly distributed with a plurality of buffer damper 302, one end of buffer damper 302 is installed with scraper 301, and scraper 301 is attached to the inner wall of crystallization jar 101, cooling water is extracted through pump machine 203, cooling pipe 202 is wound on the outer wall of crystallization jar 101, and then it is favorable to cooling crystallization jar 101, and it is favorable to make solution crystallize, when crystallization is completed, extends through electric telescopic column 307, pushes connecting plate 306 and then drives filter cartridge 305 to rise, and filter cartridge 305 is favorable to collect crystallization, when filter cartridge 305 rises, scraper 301 is favorable to effectively scrape the crystallization adhered to the inner wall of crystallization jar 101, and the scraped crystallization falls in the inside of filter cartridge 305, buffer damper 302 is favorable to provide buffering effect, avoids the hard scraping between scraper 301 and the inner wall of crystallization jar 101, reduces the maintenance cost of crystallization jar 101, and then prolongs the service life of crystallization jar 101, effectively scrapes the crystallization on the inner wall of crystallization jar 101 through scraper 301, reduces the residue, is favorable to effectively collect crystallization, improves crystallization yield, and simultaneously does not need manual cleaning to the inner wall of crystallization jar 101, reduces the labor cost, and then improves work efficiency.
[0023] As Figure 3 The inside of outer sleeve jar 201 is provided with a plurality of through grooves, the inside of through groove is installed with fan 206, the outside of fan 206 is installed with protection frame 207, works through fan 206 cooperation cooling pipe 202, is favorable to quickly take away the heat that cooling pipe 202 absorbs heat and transmits to the outside, improves the cooling efficiency, and then speeds up the cooling process, and protection frame 207 is favorable to provide protection for fan 206.
[0024] As Figure 4 The inside of crystallization jar 101 is fixedly installed with fixed plate 308, and electric telescopic column 307 is symmetrically installed in the inside of crystallization jar 101, one end of electric telescopic column 307 penetrates the inside of fixed plate 308, and connecting plate 306 is pushed up by electric telescopic column 307, and filter cartridge 305 is driven to rise, and then it is convenient to take out the crystallization in the inside of crystallization jar 101, and fixed plate 308 is fixedly installed in the inside of crystallization jar 101, and is favorable to provide limiting effect.
[0025] As Figure 4 shown, the output end of the electric telescopic column 307 is connected to the connecting plate 306, the connecting plate 306 is installed at the bottom of the filter cylinder 305, the side of the crystallization tank 101 is connected to the discharge pipe 309, and the filter cylinder 305 is driven to rise through the connecting plate 306, and the discharge pipe 309 facilitates the discharge of other substances in the crystallization tank 101.
[0026] As Figure 3 shown, the pump machine 203 is connected to the conveying pipe, one end of the conveying pipe is installed with the storage tank 204, the other end of the cooling pipe 202 is connected to the collection tank 205, the bottom of the storage tank 204 is installed with the fixed bottom plate 4, the cooling water in the storage tank 204 is extracted through the pump machine 203, which is beneficial to conveying the cooling water to the cooling pipe 202 through the conveying pipe, and the collection tank 205 is beneficial to collecting the used cooling water, which is convenient for subsequent use.
[0027] As Figure 2 shown, the top of the crystallization tank 101 is installed with the tank cover 102, the top of the tank cover 102 is fixedly installed with the side plate 103, the bottom of the side plate 103 is connected to the hydraulic telescopic column 104, the side plate 103 and the tank cover 102 are driven to rise through the extension of the hydraulic telescopic column 104, and then the tank cover 102 is separated from the top of the crystallization tank 101, which is convenient for pouring the solution into the crystallization tank 101.
[0028] The working principle and method of using the device: the side plate 103 and the tank cover 102 are driven to rise through the extension of the hydraulic telescopic column 104, and then the tank cover 102 is separated from the top of the crystallization tank 101, which is convenient for pouring the solution into the crystallization tank 101, then the cooling water in the storage tank 204 is extracted through the pump machine 203, which is beneficial to conveying the cooling water to the cooling pipe 202 through the conveying pipe, the cooling pipe 202 is wound around the outer wall of the crystallization tank 101, which is beneficial to cooling the crystallization tank 101, the collection tank 205 is beneficial to collecting the used cooling water, the fan 206 works with the cooling pipe 202, which is beneficial to quickly taking away the heat transferred to the outside after the cooling pipe 202 absorbs heat, improving the cooling efficiency, and is beneficial to the crystallization of the solution, when the crystallization is completed, the electric telescopic column 307 is extended to push the connecting plate 306 and then drive the filter cylinder 305 to rise, the filter cylinder 305 is beneficial to collecting the crystals, when the filter cylinder 305 rises, the scraper 301 is beneficial to effectively scraping the residual crystals adhered to the inner wall of the crystallization tank 101, the scraped crystals fall into the inside of the filter cylinder 305, and the buffer damper 302 is beneficial to providing a buffering effect to avoid hard scraping between the scraper 301 and the inner wall of the crystallization tank 101.
[0029] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in other forms, and any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields with equivalent changes, but any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the technical scheme of the present application still falls within the protection scope of the present application.
Claims
1. A water-cooled cooling crystallizer, characterized in that: The invention comprises a cooling crystallizer component (1), wherein a scraping component (3) is arranged inside the cooling crystallizer component (1), a cooling component (2) is arranged outside the cooling crystallizer component (1), the cooling crystallizer component (1) comprises a crystallizer (101), the cooling component (2) comprises an outer shell tank (201), the outer shell tank (201) is sleeved on the outer side of the crystallizer (101), a cooling pipe (202) is wound between the outer shell tank (201) and the crystallizer (101), and the cooling One end of the tube (202) is connected to the pump (203), the scraping assembly (3) comprises a connecting ring (303), a plurality of support plates (304) are distributed at the bottom of the connecting ring (303), the bottom of the support plate (304) is connected to the filter cartridge (305), a plurality of buffer dampers (302) are evenly distributed on the outer wall of the connecting ring (303), a scraper (301) is installed at one end of the buffer damper (302), and the scraper (301) is attached to the inner wall of the crystallization tank (101).
2. The water-cooled cooling crystallizer according to claim 1, characterized in that: A plurality of through slots are provided inside the outer shell tank (201), a fan (206) is installed inside the through slots, and a protective frame (207) is installed outside the fan (206).
3. The water-cooled cooling crystallizer according to claim 1, characterized in that: A fixed plate (308) is fixedly installed inside the crystallization tank (101), and an electric telescopic column (307) is symmetrically installed inside the crystallization tank (101), with one end of the electric telescopic column (307) passing through the interior of the fixed plate (308).
4. The water-cooled cooling crystallizer according to claim 3, characterized in that: The output end of the electric telescopic column (307) is connected to a connecting plate (306), and the connecting plate (306) is installed at the bottom of the filter cartridge (305). The side of the crystallization tank (101) is connected to a discharge pipe (309).
5. The water-cooled cooling crystallizer according to claim 1, characterized in that: The side of the pump (203) is connected to a delivery pipe, one end of the delivery pipe is installed with a storage tank (204), the other end of the cooling pipe (202) is connected to a collection tank (205), and the bottom of the storage tank (204) is installed with a fixed base plate (4).
6. The water-cooled cooling crystallizer according to claim 1, characterized in that: A tank cover (102) is installed on the top of the crystallization tank (101), a side plate (103) is fixedly installed on the top of the tank cover (102), and a hydraulic telescopic column (104) is connected to the bottom of the side plate (103).