Cooling device of dispersion machine
The cooling mechanism and lifting mechanism of the disperser cooling device solve the problem of heat accumulation caused by the friction of the disperser tool, achieve efficient cooling and stable operation of the disperser, and improve the quality of material dispersion processing.
Patent Information
- Application Number
- CN202422852869.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-21
AI Technical Summary
During the use of existing dispersers, the friction between the dispersing cutter and the material generates a large amount of heat, which leads to heat accumulation and affects the quality of material dispersion processing.
A disperser cooling device is designed, which includes a cooling mechanism and a lifting mechanism. The circulating coolant absorbs heat and dissipates it into the air through the cooling fins. At the same time, a fan is used to drive the air circulation for heat dissipation, ensuring long-term stable operation of the disperser.
It effectively reduces the heat accumulation during the dispersion process, improves the material dispersion processing quality, and ensures the long-term stable operation of the disperser.
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Figure CN223366859U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of dispersers, in particular to a cooling device for a disperser. Background Art
[0002] A disperser, commonly used in industrial production, is a device that can disperse and mix the required materials. It can effectively solve problems such as solid-liquid separation, solid suspension, and uniform mixing. In order to ensure that the disperser can operate stably for a long time, a cooling device is required to absorb the heat generated during the operation of the disperser.
[0003] The announcement number is CN213643850U, which is a cooling device for a high-speed disperser and a high-speed disperser. The main body is a box body, and a cooling device is arranged on the top side of the box body. A motor is fixed to the bottom end of the inner side of the box body. A first gear is sleeved on the output shaft of the motor, and a crawler is meshed on the first gear. The first gear is connected to the second gear through the crawler. The disperser is used in conjunction with the material box through a material shielding plate. The material shielding plate is driven by a hydraulic rod to cover the top side of the material box to prevent the material from splashing during the dispersion process. The cooling device is used to transport cold air to the inside of the box body to cool the disperser, which can ensure that the disperser can work stably for a long time.
[0004] There are still problems with the cooling device of the high-speed disperser and the high-speed disperser described above. During the use of the disperser, the dispersion tool and the rotation process generate a large amount of heat due to friction with the material, and the heat accumulation will affect the material dispersion process, resulting in a decrease in the processing quality of the disperser, and thus a disperser cooling device is proposed. Utility Model Content
[0005] In order to make up for the shortcomings of the existing technology, during the use of the disperser on the market, the dispersion tool and the rotation process generate a large amount of heat due to friction with the material, and the heat accumulation will affect the material dispersion process, resulting in a decrease in the processing quality of the disperser. The utility model proposes a disperser cooling device.
[0006] The technical solution adopted by the utility model to solve its technical problems is: a disperser cooling device described in the utility model includes a base plate; a cooling mechanism is provided at one end of the top side of the base plate, a driving mechanism is provided at the top side of the cooling mechanism, a lifting mechanism is provided at the other end of the top side of the base plate, and a material barrel is fixed at one end of the top side of the base plate.
[0007] Preferably, the cooling mechanism includes a material barrel, a cavity is opened inside the material barrel, and the cavities are interconnected, a drain pipe is fixed at one end of the top side of the material barrel, and a water inlet pipe is fixed at the other end of the top side of the material barrel, a rubber sealing plug is fixed to the top end of the drain pipe and the water inlet pipe, a baffle is mounted on the top side of the material barrel, a water pipe is symmetrically fixed on the top side of the baffle, a water pump is fixed on the top side of the baffle, the input and output ends of the water pump are respectively fixed with hollow tubes, the hollow tubes are connected with the inside of the water pipe, the water pipes are respectively located on the top sides of the drain pipe and the water inlet pipe, heat dissipation fins are evenly fixed on the top side of the hollow tube, a fixing cylinder is fixed on the top side of the baffle, and the water pipe cooperates with the cavity. When the dispersion processing is carried out, the coolant is driven by the water pump to flow inside the cavity, absorbs the heat generated during the processing, and dissipates the heat to the air with the cooperation of the heat dissipation fins on the top side of the hollow tube, thereby playing a cooling function and improving the quality of the material dispersion processing.
[0008] Preferably, the driving mechanism includes a fixed cylinder, a lifting platform is fixed on the top of the fixed cylinder, a servo motor is fixed at one end of the top side of the lifting platform, a small pulley is fixed at the output end of the servo motor through the lifting platform, a rotating shaft is inserted and rotated inside the fixed cylinder, a large pulley is fixed at the top of the rotating shaft through the lifting platform, a belt is set on the small pulley and the large pulley, a dispersing blade is fixed to the bottom end of the rotating shaft, a sliding rod is symmetrically fixed at one end of the top side of the bottom plate, and the rotating shaft is driven to rotate by the cooperation of the pulley and the belt, thereby crushing the material inside the barrel, with a simple structure and easy use.
[0009] Preferably, the lifting mechanism includes a sliding rod, a lifting platform is slidably installed on the sliding rod through a sliding seat, a support plate is fixed to the top of the sliding rod, a hydraulic cylinder is fixed to the top side of the bottom plate, a hydraulic rod is slidably installed on the inner side of the hydraulic cylinder, the top of the hydraulic rod is fixedly connected to the lifting platform, an air inlet is provided at one end of the bottom side of the lifting platform, a fan is fixed at one end of the top side of the lifting platform, and the fan is connected to the inside of the lifting platform. The use of a hydraulic cylinder can withstand a large load, and at the same time, with the cooperation of the fan and the air inlet, the inside of the disperser can be cooled, thereby ensuring that the disperser can operate stably for a long time.
[0010] The utility model is beneficial in that:
[0011] 1. The utility model adopts a structural design of a dispersion machine cooling device. By setting a cooling mechanism, a baffle is buckled on the top side of the material barrel, a drain pipe and a water inlet pipe are buckled on the inside of the water pipe and are connected to the inside of the hollow tube. The water pump is controlled to extract the coolant from the bottom end of the inner side of the cavity through the drain pipe, so that it passes through the hollow tube and the water inlet pipe and flows back to the inner side of the cavity. Through the circulation flow, the heat generated in the dispersion process is absorbed, and then the heat is dissipated into the air with the cooperation of the heat dissipation fins on the top side of the hollow tube, thereby playing a cooling function and solving the problem of reduced material processing quality due to heat accumulation during the processing.
[0012] 2. The utility model adopts a structural design of a dispersion machine cooling device by setting a lifting mechanism and controlling the hydraulic cylinder so that the inner hydraulic rod thereof is telescopically moved, thereby driving the lifting platform to slide in cooperation with the sliding seat and to slide up and down along the sliding rod, thereby moving the dispersion machine to or out of the processing position. During the processing, the fan is controlled to draw out the air inside the lifting platform, allowing cold air to enter from the air inlet, thereby driving the air circulation flow, dissipating the heat of the dispersion machine, and ensuring that the dispersion machine can operate stably for a long time. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0014] Figure 1 It is a schematic diagram of the overall three-dimensional structure;
[0015] Figure 2 It is a side view of the three-dimensional structure of the cooling mechanism;
[0016] Figure 3 This is a sectional view of the main three-dimensional structure of the driving mechanism;
[0017] Figure 4 It is a side view of the three-dimensional structure of the lifting mechanism;
[0018] Figure 5 It is a schematic diagram of the overall rear-view three-dimensional structure.
[0019] In the figure: 1. Base plate; 2. Material barrel; 3. Cavity; 4. Drain pipe; 5. Water inlet pipe; 6. Rubber sealing plug; 7. Baffle; 8. Water pipe; 9. Hollow pipe; 10. Water pump; 11. Fixed cylinder; 12. Rotating shaft; 13. Dispersing blade; 14. Lifting platform; 15. Large pulley; 16. Servo motor; 17. Small pulley; 18. Belt; 19. Sliding seat; 20. Sliding rod; 21. Support plate; 22. Hydraulic cylinder; 23. Hydraulic rod; 24. Air inlet; 25. Fan; 26. Chute. DETAILED DESCRIPTION
[0020] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] See also Figure 1-4 As shown, a dispersing machine cooling device includes a bottom plate 1; a cooling mechanism is provided at one end of the top side of the bottom plate 1, a driving mechanism is provided at the top side of the cooling mechanism, a lifting mechanism is provided at the other end of the top side of the bottom plate 1, and a material barrel 2 is fixed at one end of the top side of the bottom plate 1;
[0022] See also Figure 2As shown, the cooling mechanism includes a barrel 2, a cavity 3 is opened inside the barrel 2, and the cavities 3 are connected to each other, a drain pipe 4 is fixed at one end of the top side of the barrel 2, and a water inlet pipe 5 is fixed at the other end of the top side of the barrel 2, and a rubber sealing plug 6 is fixed to the top of the drain pipe 4 and the water inlet pipe 5, a baffle 7 is buckled on the top side of the barrel 2, a water pipe 8 is symmetrically fixed on the top side of the baffle 7, a water pump 10 is fixed on the top side of the baffle 7, the input and output ends of the water pump 10 are respectively fixed with hollow tubes 9, the hollow tubes 9 are connected with the inside of the water pipe 8, the water pipe 8 is respectively located on the top side of the drain pipe 4 and the water inlet pipe 5, the top side of the hollow tube 9 is evenly fixed with heat dissipation fins, and the top side of the baffle 7 is fixed with a fixing cylinder 11; working When encountering the problem that the quality of material dispersion processing is reduced due to heat accumulation during the dispersion processing, the baffle 7 is buckled on the top side of the barrel 2 through the structure of the cooling mechanism during processing. At this time, the drain pipe 4 and the water inlet pipe 5 are buckled on the inside of the water pipe 8, and are connected to the inside of the hollow tube 9, and with the cooperation of the rubber sealing plug 6, the connection is sealed. At this time, the water pump 10 can be controlled to extract the coolant from the bottom end of the inner side of the cavity 3 through the drain pipe 4, so that it passes through the hollow tube 9 and the water inlet pipe 5 and flows back to the inside of the cavity 3. Through the circulation flow, the heat generated in the dispersion processing is absorbed, and then with the cooperation of the heat dissipation fins on the top side of the hollow tube 9, the heat is dissipated into the air, thereby playing a cooling function and improving the processing quality of the disperser.
[0023] See also Figure 3 The top of the fixed cylinder 11 is fixed with a lifting platform 14, and a servo motor 16 is fixed at one end of the top side of the lifting platform 14. The output end of the servo motor 16 passes through the lifting platform 14 and is fixed with a small pulley 17. The fixed cylinder 11 is rotated by inserting a rotating shaft 12, and the top of the rotating shaft 12 passes through the lifting platform 14 and is fixed with a large pulley 15. The small pulley 17 and the large pulley 15 are provided with a belt 18. The bottom end of the rotating shaft 12 is fixed with a dispersing blade 13, and one end of the top side of the bottom plate 1 is symmetrically fixed with a slide bar 20; when working, when the operation of the disperser is more complicated, the servo motor 16 is controlled by the structure of the driving mechanism to drive the small pulley 17 at the output end to rotate. Under the cooperation of the belt 18 and the large pulley 15, the dispersing blade 13 at the bottom end of the rotating shaft 12 is driven to rotate. At this time, the dispersing blade 13 can disperse the material inside the barrel 2, which is simple to operate and more convenient for operators to use.
[0024] See also Figure 4As shown, the lifting mechanism includes a slide rod 20, on which a lifting platform 14 is slidably mounted through a sliding seat 19. A support plate 21 is fixed to the top of the slide rod 20, a hydraulic cylinder 22 is fixed to the top side of the bottom plate 1, a hydraulic rod 23 is slidably mounted inside the hydraulic cylinder 22, and the top of the hydraulic rod 23 is fixedly connected to the lifting platform 14. An air inlet 24 is provided at one end of the bottom side of the lifting platform 14, and a fan 25 is fixed at one end of the top side of the lifting platform 14, and the fan 25 is connected to the inside of the lifting platform 14; when working, when encountering When the disperser has a high temperature when used for a long time, causing the problem of shortening its service life, the hydraulic cylinder 22 is controlled through the structure of the lifting mechanism to make the inner hydraulic rod 23 telescopically move, thereby driving the lifting platform 14 to slide in cooperation with the sliding seat 19, and to slide up and down along the slide rod 20, thereby moving the disperser to or out of the processing position. During the processing, the fan 25 is controlled to extract the air inside the lifting platform 14, allowing cold air to enter through the air inlet 24, thereby driving the air circulation flow, dissipating the heat of the disperser, and ensuring that the disperser can operate stably for a long time.
[0025] See also Figure 5 As shown, a chute 26 is provided at the top edge of the barrel 2; during operation, when the coolant easily flows into the inner side of the barrel 2, after the dispersion process is completed through the chute 26, when the baffle 7 is opened, if there is residual coolant, the coolant will drip onto the surface of the chute 26 and flow out along the outer wall of the barrel 2, thereby preventing the coolant from entering the inner side of the barrel 2 and contaminating the material.
[0026] Working Principle: A disperser is usually used in industrial production. It is a device that can disperse and mix the required materials. It can effectively solve the problems of solid-liquid separation, solid suspension and uniform mixing of materials. In order to ensure that the disperser can operate stably for a long time, a cooling device is required to absorb the heat generated by the disperser operation. In the use process of the existing disperser, the dispersion tool and the rotation process generate a large amount of heat due to friction with the material, and the heat accumulation will affect the material dispersion process, resulting in a decrease in the processing quality of the disperser. In order to solve this problem, a cooling mechanism and a lifting mechanism are set to place the material inside the barrel 2, and the hydraulic cylinder 22 is controlled to make the inner hydraulic rod 23 telescopically move, thereby driving the lifting platform 14 to slide in cooperation with the sliding seat 19, and to rise and fall along the slide rod 20, prompting the baffle 7 to be buckled on the top side of the barrel 2. At this time, the drain pipe 4 and the water inlet pipe 5 are buckled on the inside of the water pipe 8, and are connected to the inside of the hollow pipe 9. And with the cooperation of the rubber sealing plug 6, the connection is sealed, and then the servo motor 16 is controlled to drive the small pulley 17 at the output end to rotate, and with the cooperation of the belt 18 and the large pulley 15, the dispersion blade 13 at the bottom end of the rotating shaft 12 is driven to rotate. At this time, the dispersion blade 13 can disperse the material inside the barrel 2. During the processing, the water pump 10 is controlled to extract the coolant from the bottom end of the inner side of the cavity 3 through the drain pipe 4, so that it passes through the hollow tube 9 and the water inlet pipe 5 and flows back to the inner side of the cavity 3. Through the circulation flow, the heat generated during the dispersion process is absorbed, and then with the cooperation of the heat dissipation fins on the top side of the hollow tube 9, the heat is dissipated into the air, thereby playing a cooling function and improving the processing quality of the disperser. After the processing is completed, the hydraulic cylinder 22 is controlled in the same way to lift the lifting platform 14 and the baffle 7. At this time, the material inside the barrel 2 can be taken out, which solves the problem of reduced material processing quality due to heat accumulation during the processing.
[0027] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0028] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the present invention as claimed.
Claims
1. A dispersion machine cooling device, characterized in that: It comprises a bottom plate (1); a cooling mechanism is provided at one end of the top side of the bottom plate (1); a driving mechanism is provided at the top side of the cooling mechanism; a lifting mechanism is provided at the other end of the top side of the bottom plate (1); and a material barrel (2) is fixed at one end of the top side of the bottom plate (1); The cooling mechanism comprises a material barrel (2), a cavity (3) is provided inside the material barrel (2), and the cavities (3) are interconnected, a drainage pipe (4) is fixed at one end of the top side of the material barrel (2), a water inlet pipe (5) is fixed at the other end of the top side of the material barrel (2), a rubber sealing plug (6) is fixed at the top end of the drainage pipe (4) and the water inlet pipe (5), a baffle (7) is buckled on the top side of the material barrel (2), a water pipe (8) is symmetrically fixed on the top side of the baffle (7), a water pump (10) is fixed on the top side of the baffle (7), and hollow tubes (9) are respectively fixed at the input end and the output end of the water pump (10).
2. A dispersion machine cooling device according to claim 1, characterized in that: The hollow tube (9) is connected to the inner side of the water pipe (8), and the water pipe (8) is respectively located on the top side of the drain pipe (4) and the water inlet pipe (5). Heat dissipation fins are evenly fixed on the top side of the hollow tube (9), and a fixing cylinder (11) is fixed on the top side of the baffle (7).
3. A dispersion machine cooling device according to claim 2, characterized in that: The driving mechanism comprises a fixed cylinder (11), a lifting platform (14) is fixed on the top of the fixed cylinder (11), a servo motor (16) is fixed on one end of the top side of the lifting platform (14), and a small pulley (17) is fixed on the output end of the servo motor (16) passing through the lifting platform (14).
4. A dispersion machine cooling device according to claim 3, characterized in that: A rotating shaft (12) is rotatably inserted into the inner side of the fixed cylinder (11); a large pulley (15) is fixed on the top of the rotating shaft (12) through a lifting platform (14); a belt (18) is sleeved on the small pulley (17) and the large pulley (15); a dispersing blade (13) is fixed on the bottom end of the rotating shaft (12); and a sliding rod (20) is symmetrically fixed on one end of the top side of the bottom plate (1).
5. A dispersion machine cooling device according to claim 4, characterized in that: The lifting mechanism comprises a slide rod (20), a lifting platform (14) is slidably mounted on the slide rod (20) in cooperation with a slide seat (19), a support plate (21) is fixed to the top end of the slide rod (20), and a hydraulic cylinder (22) is fixed to the top side of the base plate (1).
6. A dispersion machine cooling device according to claim 5, characterized in that: A hydraulic rod (23) is slidably mounted on the inner side of the hydraulic cylinder (22); the top end of the hydraulic rod (23) is fixedly connected to the lifting platform (14); an air inlet (24) is provided at one end of the bottom side of the lifting platform (14); a fan (25) is fixed at one end of the top side of the lifting platform (14), and the fan (25) is communicated with the inner side of the lifting platform (14).
Citation Information
Patent Citations
Cooling device of high-speed dispersion machine and high-speed dispersion machine
CN213643850U