A magnetic separation cyclone medium draining device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- INNER MONGOLIA MANSHI COAL GRP CANZIGOU COAL CO LTD
- Filing Date
- 2025-07-24
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]但是常见的对于设备的作业使用中,没有对于进入设备内作业使用的水进行过滤处理,从而长时间作业使用容易堵塞喷水头组件,从而不利于后续的作业使用
[0023]本申请中,在结构组件的作业使用中,工作人员通过使用设置的过滤箱方便对于进入设备内的水进行过滤作业使用,从而确保在作业使用中降低水中可能含有的颗粒杂质,从而降低喷水头组件堵塞的可能,确保设备长时间的作业使用,在使用中通过使用过滤箱内部设置的粗砂层具有较大的颗粒和孔隙,能够有效地过滤水中的大颗粒杂质,这层可以防止较大颗粒物质进入后续的滤层,减少对其他细滤层的压力,有效保护喷水头免受堵塞,所述细砂层的颗粒较小,能够进一步过滤较小的悬浮物和杂质,可以提高水的清洁度,过滤掉粗砂层无法去除的小颗粒物质,确保过滤效果更精细和活性炭层具有极高的比表面积,可以吸附水中的有机物、异味等有害物质,能够净化水质,使水更加清洁,减少水中的化学污染物,进而保护设备不受有害物质的影响,从而确保水质,所述密封盖的设置方便工作人员打开过滤箱的内部,从而方便后续维护清理作业使用,确保过滤的质量,所述进水管方便连接其他组件,方便将作业使用的水运输到过滤箱内进行过滤处理,从而便于后续的作业使用。
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Figure CN224604717U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of magnetic separation cyclone desliming technology, specifically a magnetic separation cyclone desliming device. Background Technology
[0002] To improve safety and efficiency while saving costs, a high-stability, rapid replacement technology for shallow troughs in coal preparation plants was developed. Utilizing case studies, data induction, and data analysis, this technology significantly reduces the replacement time of the shallow trough scraper and chain, optimizes the replacement process, reduces unnecessary operational steps, and thus quickly restores production. The adoption of mechanization and automation reduces manual labor intensity and alleviates the burden on workers. The non-destructive connection design minimizes damage to critical components such as the chain, thereby extending equipment lifespan and reducing equipment replacement costs for the enterprise.
[0003] The development of this technology will promote progress in equipment maintenance and technological upgrading in coal preparation plants, help improve the technological level and competitiveness of the entire coal industry, enable enterprises to allocate human and equipment resources more rationally, improve resource utilization efficiency, and reduce production costs.
[0004] However, in common equipment operation, the water entering the equipment is not filtered, which can easily clog the spray head assembly after prolonged use, thus hindering subsequent operation. Utility Model Content
[0005] The purpose of this application is to provide a magnetic separation cyclone desliming device to solve the problem of filtering water used in the operation of the equipment mentioned above.
[0006] The technical solution adopted in this application is as follows: A magnetic separation cyclone desliming device includes a main body of the device, a rectangular mounting plate is provided at the upper end of the main body of the device, a filter box is fixedly connected to the upper end of the rectangular mounting plate, a sealing cover is provided at the upper end of the filter box, a water inlet pipe is fixedly connected to the upper end of the sealing cover, the other end of the water inlet pipe passes through the sealing cover and connects to the filter box, an isolation plate is fixedly connected inside the filter box, and a double-layer filter layer including a coarse sand layer, a fine sand layer and an activated carbon layer is provided at the middle position between the inner side wall of the filter box and the isolation plate.
[0007] By adopting the above technical solution, during the operation of the structural components, workers can conveniently filter the water entering the equipment using the installed filter box. This ensures that the particulate impurities in the water are reduced during operation, thereby reducing the possibility of clogging of the spray head assembly and ensuring long-term operation of the equipment. During use, the coarse sand layer inside the filter box, with its larger particles and pores, effectively filters large particulate impurities in the water. This layer prevents larger particles from entering subsequent filter layers, reducing pressure on other fine filter layers and effectively protecting the spray head from clogging. The fine sand layer, with its smaller particles, can further filter smaller particles. Suspended solids and impurities can improve water cleanliness, filtering out small particles that cannot be removed by the coarse sand layer, ensuring a finer filtration effect. The activated carbon layer has an extremely high specific surface area, which can adsorb organic matter, odors and other harmful substances in the water, purifying the water quality, making the water cleaner, reducing chemical pollutants in the water, and thus protecting the equipment from the effects of harmful substances, thereby ensuring water quality. The sealing cover makes it easy for staff to open the inside of the filter box, facilitating subsequent maintenance and cleaning operations, and ensuring filtration quality. The water inlet pipe facilitates connection to other components, making it easy to transport the water used in the operation to the filter box for filtration, thus facilitating subsequent operation.
[0008] In a preferred embodiment, an auxiliary pump is provided at the upper end of the rectangular mounting plate adjacent to the filter box, and the auxiliary pump is connected to the filter box through a connecting pipe.
[0009] By adopting the above technical solution, the auxiliary pump can conveniently draw the filtered water from the filter box, and the connection pipe ensures the interconnection between the structural components, thereby facilitating the transportation of water to the spray head assembly below for operation.
[0010] In a preferred embodiment, a plurality of support plates are fixedly connected to the upper end of the main body of the equipment, a rectangular mounting plate is fixedly connected to the upper end of the support plates, a spray head assembly is provided at the lower end of the rectangular mounting plate, and the auxiliary pump is connected to the spray head assembly.
[0011] By adopting the above technical solution, the support plate can easily support the position of the rectangular mounting plate, thereby ensuring the stability of the rectangular mounting plate's working position and facilitating subsequent operation. The use of the spray head assembly facilitates water spraying and ensures the stable operation of the equipment.
[0012] In a preferred embodiment, a plurality of support legs are fixedly connected to the lower end of the main body of the device, and a control panel is provided on the side of the main body of the device.
[0013] By adopting the above technical solution, the support leg can easily support the position of the main body of the equipment, thereby ensuring the stability of the main body of the equipment during operation and facilitating subsequent operation. The control panel facilitates the operation of the equipment by the staff and meets different operational needs.
[0014] In a preferred embodiment, a plurality of external working components are provided on the side of the main body of the equipment, adjacent to the control panel, and a rotating component is provided on the side of the external working component, the rotating component being located inside the main body of the equipment.
[0015] By adopting the above technical solution, the external working component can easily drive the rotating component to rotate, which can ensure the position of the rotating component inside the main body of the equipment and facilitate the use of cyclone desiccant removal.
[0016] In a preferred embodiment, a plurality of connecting belts are provided inside the main body of the device at the middle position of adjacent rotating components. The rotating components are fixedly connected to the connecting belts, and the dimensions of the connecting belts and the rotating components are adapted to each other.
[0017] By adopting the above technical solution, the rotating component is designed to facilitate the rotation of the connecting belt, thereby rotating the position of the rotating component through the rotation of the connecting belt, thus ensuring the normal operation of the equipment components.
[0018] In a preferred embodiment, a discharge port is fixedly connected to the side of the main body of the equipment, and the other end of the discharge port is connected to the interior of the main body of the equipment.
[0019] By adopting the above technical solution, the discharge port is designed to facilitate the discharge of coal components after magnetic separation and cyclone in the main body of the equipment, thereby ensuring the normal operation and use of the equipment components and facilitating subsequent operations.
[0020] In a preferred embodiment, a magnetic separation component is provided at the lower end of the main body of the equipment, located in the middle of adjacent support legs. A discharge port is provided at the lower end of the magnetic separation component, and the other end of the discharge port passes through the magnetic separation component and connects to the interior of the main body of the equipment.
[0021] By adopting the above technical solution, the magnetic separation component facilitates magnetic separation operations within the equipment, thereby removing potentially magnetically attracted substances from the coal. The discharge port connects to the interior of the main body of the equipment, facilitating the discharge of substances attracted and screened by the magnetic separation component from the main body of the equipment.
[0022] In summary, due to the adoption of the above technical solution, the beneficial effects of this application are:
[0023] In this application, during the operation of the structural components, workers can conveniently filter the water entering the equipment using the provided filter box. This ensures that the water contains less particulate impurities, reducing the possibility of nozzle clogging and ensuring long-term operation of the equipment. The coarse sand layer inside the filter box, with its larger particles and pores, effectively filters large particles from the water. This layer prevents larger particles from entering subsequent filter layers, reducing pressure on other fine filter layers and effectively protecting the nozzles from clogging. The fine sand layer, with its smaller particles, further filters smaller suspended solids. The filter removes impurities, improving water cleanliness and filtering out small particles that the coarse sand layer cannot remove, ensuring a finer filtration effect. The activated carbon layer has an extremely high specific surface area, which can adsorb organic matter, odors, and other harmful substances in the water, purifying the water and making it cleaner. It also reduces chemical pollutants in the water, thereby protecting the equipment from harmful substances and ensuring water quality. The sealing cover allows staff to easily open the inside of the filter box, facilitating subsequent maintenance and cleaning operations and ensuring filtration quality. The inlet pipe allows for easy connection to other components, facilitating the transportation of water used in operations to the filter box for filtration, thus facilitating subsequent operations. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the magnetic separation cyclone desliming device of this application;
[0025] Figure 2 This is a side view of the magnetic separation cyclone desliming device in this application;
[0026] Figure 3 This is a schematic diagram of the lower structure of the magnetic separation cyclone desliming device in this application;
[0027] Figure 4 This is a schematic diagram of the internal structure of the filter box in this application.
[0028] The diagram shows: 1. Main body of the equipment; 2. Control panel; 3. Support leg; 4. Spray head assembly; 5. Rotating assembly; 6. External operation assembly; 7. Discharge port; 8. Connecting belt; 9. Support plate; 10. Rectangular mounting plate; 11. Auxiliary pump; 12. Connecting pipe; 13. Filter box; 14. Sealing cover; 15. Water inlet pipe; 16. Rotating assembly; 17. Discharge port; 18. Magnetic separation assembly; 19. Isolation plate; 20. Coarse sand layer; 21. Fine sand layer; 22. Activated carbon layer. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the embodiments of this application. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0030] Example:
[0031] Reference Figure 1-4 A magnetic separation cyclone desliming device includes a main body 1. A rectangular mounting plate 10 is provided at the upper end of the main body 1. A filter box 13 is fixedly connected to the upper end of the rectangular mounting plate 10. A sealing cover 14 is provided at the upper end of the filter box 13. A water inlet pipe 15 is fixedly connected to the upper end of the sealing cover 14. The other end of the water inlet pipe 15 passes through the sealing cover 14 and connects to the filter box 13. An isolation plate 19 is fixedly connected inside the filter box 13. A double-layer filter, including a coarse sand layer 20, a fine sand layer 21, and an activated carbon layer 22, is provided between the inner wall of the filter box 13 and the isolation plate 19. During operation, the operator can easily filter the water entering the device by using the filter box 13, thereby reducing the particulate impurities that may be present in the water during operation, reducing the possibility of clogging of the spray head assembly 4, and ensuring long-term operation of the device. During use, the coarse sand layer 20 inside the filter box 13 provides a relatively high efficiency. Large particles and pores effectively filter large particulate impurities in the water. This layer prevents larger particles from entering subsequent filter layers, reducing pressure on other fine filter layers and effectively protecting the spray nozzles from clogging. The fine sand layer 21 has smaller particles, which can further filter smaller suspended solids and impurities, improving water cleanliness and filtering out small particles that the coarse sand layer cannot remove, ensuring a finer filtration effect. The activated carbon layer 22 has an extremely high specific surface area, which can adsorb organic matter, odors, and other harmful substances in the water, purifying the water and making it cleaner, reducing chemical pollutants in the water, and thus protecting the equipment from harmful substances, thereby ensuring water quality. The sealing cover 14 makes it easy for staff to open the inside of the filter box 13, facilitating subsequent maintenance and cleaning operations and ensuring filtration quality. The inlet pipe 15 facilitates connection to other components, allowing water used in operations to be transported to the filter box 13 for filtration, thus facilitating subsequent operations.
[0032] Reference Figure 1-4An auxiliary pump 11 is installed at the upper end of the rectangular mounting plate 10, adjacent to the filter box 13. The auxiliary pump 11 is connected to the filter box 13 through a connecting pipe 12. The auxiliary pump 11 can easily draw the filtered water from the filter box 13. The connecting pipe 12 ensures the interconnection between the structural components, thereby facilitating the transportation of water to the spray head assembly 4 below for operation.
[0033] Reference Figure 1-3 Multiple support plates 9 are fixedly connected to the upper end of the main body 1 of the equipment. A rectangular mounting plate 10 is fixedly connected to the upper end of the support plate 9. A water spray head assembly 4 is provided at the lower end of the rectangular mounting plate 10. The auxiliary pump 11 is connected to the water spray head assembly 4. The support plate 9 can support the position of the rectangular mounting plate 10, thereby ensuring the stability of the working position of the rectangular mounting plate 10 and facilitating subsequent operation. The water spray head assembly 4 facilitates water spraying and ensures the stable operation of the equipment.
[0034] Reference Figure 1-3 Multiple support legs 3 are fixedly connected to the lower end of the main body 1 of the equipment. A control panel 2 is provided on the side of the main body 1 of the equipment. The support legs 3 are convenient for supporting the position of the main body 1 of the equipment, so as to ensure the stability of the position of the main body 1 of the equipment during operation and use, and facilitate subsequent operation. The control panel 2 is convenient for the staff to operate the equipment and meet different operation needs.
[0035] Reference Figure 1-3 Multiple external working components 6 are provided on the side of the main body 1 adjacent to the control panel 2. Rotating components 16 are provided on the side of the external working components 6. The rotating components 16 are located inside the main body 1. The external working components 6 facilitate the rotation of the rotating components 16, ensuring the position of the rotating components 5 inside the main body 1 and facilitating the operation of cyclone desiccant removal.
[0036] Reference Figure 1-3 Inside the main body 1, there are multiple connecting belts 8 located in the middle of adjacent rotating components 16. The rotating components 5 are fixedly connected to the connecting belts 8. The dimensions of the connecting belts 8 and the rotating components 16 are compatible. The rotating components 16 are designed to facilitate the rotation of the connecting belts 8. Thus, the rotation of the connecting belts 8 drives the rotating components 5 to rotate, thereby ensuring the normal operation of the equipment components.
[0037] Reference Figure 1-3 A discharge port 7 is fixedly connected to the side of the main body 1 of the equipment. The other end of the discharge port 7 is connected to the interior of the main body 1 of the equipment. The discharge port 7 is designed to facilitate the discharge of the coal components after magnetic separation and cyclone in the main body 1 of the equipment, thereby ensuring the normal operation and use of the equipment components and facilitating subsequent operations.
[0038] Reference Figure 1-3A magnetic separation component 18 is provided at the lower end of the main body 1, located in the middle of the adjacent support legs 3. A discharge port 17 is provided at the lower end of the magnetic separation component 18. The other end of the discharge port 17 passes through the magnetic separation component 18 and connects to the interior of the main body 1. The magnetic separation component 18 is used to facilitate magnetic separation operations inside the equipment, thereby facilitating the removal of magnetically attracted substances from the coal. The discharge port 17 connects to the interior of the main body 1, facilitating the discharge of the substances attracted and screened by the magnetic separation component 18 from the main body 1.
[0039] The implementation principle of a magnetic separation cyclone desliming device according to this application is as follows:
[0040] During operation of the structural components, workers can easily filter the water entering the equipment using the filter box 13, thereby reducing the amount of particulate impurities in the water and minimizing the possibility of clogging of the spray head assembly 4. This ensures long-term operation of the equipment. The coarse sand layer 20 inside the filter box 13, with its larger particles and pores, effectively filters large particles in the water. This layer prevents larger particles from entering subsequent filter layers, reducing pressure on other fine filter layers and effectively protecting the spray head from clogging. The fine sand layer 21, with its smaller particles, further filters smaller suspended solids and impurities, improving water cleanliness and removing small particles that the coarse sand layer cannot remove, ensuring optimal filtration efficiency. The finer activated carbon layer 22 has an extremely high specific surface area, which can adsorb organic matter, odors and other harmful substances in the water, purifying the water and making it cleaner. It reduces chemical pollutants in the water, thereby protecting the equipment from the effects of harmful substances and ensuring water quality. The sealing cover 14 makes it easy for staff to open the inside of the filter box 13, which is convenient for subsequent maintenance and cleaning operations, ensuring the quality of filtration. The water inlet pipe 15 is convenient for connecting other components, making it easy to transport the water used in operation to the filter box 13 for filtration, which is convenient for subsequent operation. By using this structure, it is easy to filter the water used in equipment operation, thereby reducing the impurities that may be contained in the water, thereby reducing the possibility of clogging of the spray head assembly 4, which is beneficial for long-term operation.
[0041] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. A magnetic separation cyclone desliming device, comprising a main body (1), characterized in that: A rectangular mounting plate (10) is provided on the upper end of the main body of the equipment (1). A filter box (13) is fixedly connected to the upper end of the rectangular mounting plate (10). A sealing cover (14) is provided on the upper end of the filter box (13). A water inlet pipe (15) is fixedly connected to the upper end of the sealing cover (14). The other end of the water inlet pipe (15) passes through the sealing cover (14) and connects to the filter box (13). An isolation plate (19) is fixedly connected inside the filter box (13). A double-layer filter layer including a coarse sand layer (20), a fine sand layer (21), and an activated carbon layer (22) is provided in the middle position between the inner side wall of the filter box (13) and the isolation plate (19). A plurality of external operation components (6) are provided on the side of the main body of the equipment (1) adjacent to the control panel (2). A rotating component (16) is provided on the side of the external operation component (6). The rotating component (16) is located inside the main body of the equipment (1).
2. The magnetic separation cyclone desliming device as described in claim 1, characterized in that: An auxiliary pump (11) is provided at the upper end of the rectangular mounting plate (10) adjacent to the filter box (13), and the auxiliary pump (11) is connected to the filter box (13) through a connecting pipe (12).
3. The magnetic separation cyclone desliming device as described in claim 2, characterized in that: The upper end of the main body (1) of the equipment is fixedly connected to a plurality of support plates (9), the upper end of the support plate (9) is fixedly connected to a rectangular mounting plate (10), the lower end of the rectangular mounting plate (10) is provided with a spray head assembly (4), and the auxiliary pump (11) is connected to the spray head assembly (4).
4. The magnetic separation cyclone desliming device as described in claim 1, characterized in that: The lower end of the main body (1) of the equipment is fixedly connected with multiple support legs (3), and the side of the main body (1) of the equipment is provided with a control panel (2).
5. The magnetic separation cyclone desliming device as described in claim 1, characterized in that: The main body (1) of the device has a plurality of connecting belts (8) located in the middle of adjacent rotating components (16). The connecting belts (8) are fixedly connected to the rotating components (5). The dimensions of the connecting belts (8) and the rotating components (16) are compatible.
6. The magnetic separation cyclone desliming device as described in claim 1, characterized in that: The side of the main body (1) of the equipment is fixedly connected to a discharge port (7), and the other end of the discharge port (7) is connected to the interior of the main body (1).
7. The magnetic separation cyclone desliming device as described in claim 1, characterized in that: A magnetic separation component (18) is provided at the lower end of the main body (1) in the middle position of the adjacent support leg (3). A discharge port (17) is provided at the lower end of the magnetic separation component (18). The other end of the discharge port (17) passes through the magnetic separation component (18) and connects to the interior of the main body (1).