Reaction kettle for industrial production of immersed thermal management liquid
By designing a reactor including a conveying pipeline, a water removal device and a circulation pipeline, the problem of low dehydration efficiency of thermal management liquid in the prior art is solved, and efficient dehydration of trace water and large-scale continuous production are achieved.
Patent Information
- Application Number
- CN202421493207.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-26
AI Technical Summary
In the prior art, when the moisture content of the immersion thermal management liquid is too high, the dehydration efficiency is low, energy is wasted, and it is difficult to completely remove trace amounts of water, and it is difficult to achieve large-scale continuous production.
A reactor including a conveying pipeline, a water removal device and a circulation pipeline is designed to transport the heat management liquid to the water removal device through the conveying pipeline, dehydrate using a water removal medium (such as a molecular sieve), and continuously dehydrate through the circulation pipeline.
It achieves efficient dehydration of trace amounts of water, improves dehydration efficiency, and can achieve large-scale continuous production and save energy.
Smart Images

Figure CN222854684U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of thermal management liquids, and in particular relates to a reactor for industrial production of immersion-type thermal management liquids. Background Art
[0002] As various mechanical and electronic devices become increasingly sophisticated, thermal management is gaining increasing attention. Accurate thermal management is crucial for proper operation and extended service life of equipment. Thermal management fluids precisely manage the heat in equipment, effectively dissipating it while also providing the necessary heat for normal operation.
[0003] Immersion thermal management fluid is a direct cooling method that directly immerses batteries, circuit boards, etc. in the thermal management fluid. Therefore, immersion thermal management fluid has relatively strict requirements on moisture. Currently, when manufacturing thermal management fluid for transmissions, the moisture content in the final product is usually controlled by controlling the moisture content of the raw materials.
[0004] In the prior art, when the moisture content of the finished product is too high after testing, dehydration is usually carried out by heating, nitrogen flow, vacuum, etc., which has low dehydration efficiency, wastes energy, and is difficult to completely remove trace moisture, making it difficult to achieve large-scale continuous production. Utility Model Content
[0005] The purpose of the utility model is to solve the above-mentioned technical problems existing in the prior art and provide a reactor for industrial production of immersion thermal management liquid. The reactor is provided with a conveying pipeline, a water removal device and a circulation pipeline. The thermal management liquid is conveyed to the water removal device through the conveying pipeline, the water of the thermal management liquid is removed by the water removal device, and then enters the tank body through the circulation pipeline for cyclic dehydration. The reactor has the characteristics of strong dehydration ability for trace moisture and high dehydration efficiency, and can realize continuous and large-scale production.
[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0007] A reactor for industrial production of immersion thermal management liquid, comprising
[0008] Tank body, the tank body is used to contain thermal management liquid;
[0009] It is characterized in that it also includes a delivery pipeline, a water removal device and a circulation pipeline, one end of the delivery pipeline is connected to the tank body, and the other end of the delivery pipeline is connected to the water removal device, and the thermal management liquid is dehydrated by the water removal device, one end of the circulation pipeline is connected to the water removal device, and the other end of the circulation pipeline is connected to the tank body.
[0010] By providing a conveying pipeline, a dehydration device and a circulation pipeline, the thermal management liquid is conveyed to the dehydration device through the conveying pipeline, the moisture of the thermal management liquid is removed by the dehydration device, and then enters the tank body through the circulation pipeline for cyclic dehydration. It has the characteristics of strong dehydration ability for trace moisture and high dehydration efficiency, and can realize continuous and large-scale production.
[0011] Furthermore, the conveying pipeline includes a first conveying pipe, a second conveying pipe and a conveying pump. The tank body is provided with a discharge port. The first conveying pipe is connected to the discharge port. The conveying pump is arranged between the first conveying pipe and the second conveying pipe. The second conveying pipe is connected to the water removal device.
[0012] Furthermore, the water removal device includes a water removal tank filled with a water removal medium. The water removal tank is provided with a liquid inlet pipe, which is connected to the delivery pipeline.
[0013] Furthermore, the water removal medium is a molecular sieve.
[0014] Furthermore, the circulation pipeline includes a discharge pipe and a first circulation pipe. The discharge pipe is connected to the water removal device. One end of the first circulation pipe is connected to the discharge pipe. The tank body is provided with a feed port, and the other end of the first circulation pipe is connected to the feed port.
[0015] Furthermore, the circulation pipeline is also provided with a filtering component, which is used to filter the thermal management liquid. The filtering component includes a second circulation pipeline and a filter. The two sides of the filter are respectively connected to the second circulation pipeline and the discharge pipeline. The other end of the second circulation pipeline is connected to the water removal device.
[0016] Furthermore, the discharge pipe is provided with a discharge port, which is used to discharge the thermal management liquid.
[0017] Furthermore, the tank body is provided with a stirring component, which stirs the thermal management liquid through the stirring component to ensure that the thermal management liquid is evenly mixed.
[0018] Furthermore, the stirring assembly includes a stirring motor, a stirring shaft and a stirring paddle. The stirring shaft extends into the tank body, one end of the stirring shaft is connected to the stirring motor, and the stirring paddle is installed at the other end of the stirring shaft.
[0019] Furthermore, the tank body is provided with a feeding port, through which thermal management liquid can be easily added into the tank body, which is simple and convenient, saves time and improves efficiency.
[0020] The utility model has the following beneficial effects due to the adoption of the above technical solution:
[0021] In the utility model, one end of the delivery pipeline is connected to the tank body, and the other end of the delivery pipeline is connected to the dehydration device. The heat management liquid is dehydrated by the dehydration device. One end of the circulation pipeline is connected to the dehydration device, and the other end of the circulation pipeline is connected to the tank body. By providing the delivery pipeline, the dehydration device and the circulation pipeline, the heat management liquid is transported to the dehydration device through the delivery pipeline, the water of the heat management liquid is removed by the dehydration device, and then enters the tank body through the circulation pipeline for cyclic dehydration. The utility model has the characteristics of strong dehydration ability for trace water and high dehydration efficiency, and can realize continuous and large-scale production. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The present invention will be further described below with reference to the accompanying drawings:
[0023] Figure 1 This is a structural schematic diagram of a reactor for industrial production of immersion thermal management liquid in the utility model.
[0024] In the figure: 1-tank body; 2-first delivery pipeline; 3-second delivery pipeline; 4-delivery pump; 5-discharge port; 6-dewatering tank; 7-liquid inlet pipe; 8-molecular sieve; 9-discharge pipe; 10-first circulation pipeline; 11-feed port; 12-second circulation pipeline; 13-filter; 14-discharge port; 15-stirring motor; 16-stirring shaft; 17-stirring paddle; 18-feeding port; 19-support ear; 20-connecting flange; 21-stop valve; 22-valve. DETAILED DESCRIPTION
[0025] like Figure 1 As shown, this utility model is a reactor for industrial production of immersion thermal management liquid, including a tank body 1, a delivery pipeline, a water removal device, a circulation pipeline, a filter assembly and a stirring assembly. The tank body 1 is used to contain the thermal management liquid. The stirring assembly is arranged on the tank body 1. The thermal management liquid in the tank body 1 is stirred by the stirring assembly so that the thermal management liquid can be evenly mixed. One end of the delivery pipeline is connected to the tank body 1, and the other end of the delivery pipeline is connected to the water removal device. The thermal management liquid is dehydrated through the water removal device. One end of the circulation pipeline is connected to the water removal device, and the other end of the circulation pipeline is connected to the tank body 1. The filter assembly is arranged on the circulation pipeline, and the circulation pipeline is connected to the water removal device through the filter assembly.
[0026] The utility model is provided with a conveying pipeline, a dehydration device and a circulation pipeline. The thermal management liquid is conveyed to the dehydration device through the conveying pipeline, the water in the thermal management liquid is removed by the dehydration device, and then the impurities in the thermal management liquid are filtered through the filtering component. Finally, the thermal management liquid enters the tank body 1 through the circulation pipeline and is circulated and dehydrated again. The overall dehydration process is simple, has the characteristics of strong dehydration ability for trace water and high dehydration efficiency, and can realize continuous and large-scale production.
[0027] The delivery pipeline includes a first delivery pipeline 2, a second delivery pipeline 3 and a delivery pump 4. The tank body 1 is provided with a discharge port 5. The first delivery pipeline 2 is connected to the discharge port 5 through a connecting flange 20. The thermal management liquid enters the delivery pipeline through the discharge port 5. The delivery pump 4 is arranged between the first delivery pipeline 2 and the second delivery pipeline 3. The second delivery pipeline 3 is connected to the dewatering device. The thermal management liquid is transported by the delivery pump 4 and enters the dewatering device, which is simple and convenient.
[0028] The dehydration device includes a dehydration tank 6, which is filled with a dehydration medium. The dehydration tank 6 is provided with a liquid inlet pipe 7, which connects the dehydration tank 6 to the delivery pipeline to facilitate the entry of the thermal management liquid into the dehydration tank 6. In the utility model, the dehydration medium adopts a molecular sieve 8. The molecular sieve 8 has strong water absorption. Even at a higher temperature, a larger air velocity and a lower water content, it still has a relatively high water absorption capacity, which is convenient for absorbing trace moisture, so that the dehydration effect of the thermal management liquid is better. At the same time, the molecular sieve 8 removes water gently, avoiding the influence of heating and vacuum on the physical and chemical properties of the immersion thermal management liquid.
[0029] The circulation pipeline includes a discharge pipe 9 and a first circulation pipe 10, and the filtering assembly includes a second circulation pipe 12 and a filter 13. One end of the second circulation pipe 12 is connected to the dewatering tank 6, and the other end is connected to the filter 13. After the thermal management liquid absorbs water through the molecular sieve 8, it flows into the filter 13 through the second circulation pipe 12, and the impurities in the thermal management liquid are filtered through the filter 13. The other end of the filter 13 is connected to the discharge pipe 9, and the discharge pipe 9 is provided with a discharge port 14. The thermal management liquid that has been dehydrated and filtered flows out from the discharge port 14.
[0030] Furthermore, a stop valve 21 is provided on the discharge pipe 9 , and the outflow of the thermal management liquid is controlled by the stop valve 21 .
[0031] One end of the first circulation pipe 10 is connected to the discharge pipe 9, and the tank body 1 is provided with a feed port 11. The other end of the first circulation pipe 10 is connected to the feed port 11 through a connecting flange 20. Through the design of the first circulation pipe 10, the thermal management liquid can flow into the tank body 1 again through the first circulation pipe 10, thereby being dehydrated again, and the cycle is repeated to increase the dehydration effect.
[0032] In the present invention, the thermal management liquid is stirred by a stirring assembly to increase the flow of the thermal management liquid in the tank body 1, so that the thermal management liquid is evenly mixed, and the dehydration effect of the molecular sieve 8 is increased. The stirring assembly includes a stirring motor 15, a stirring shaft 16 and a stirring paddle 17. The stirring shaft 16 extends into the tank body 1, one end of the stirring shaft 16 is connected to the stirring motor 15, and the stirring paddle 17 is installed at the other end of the stirring shaft 16.
[0033] The tank body 1 is provided with a feeding port 18, which makes it easy to add thermal management liquid into the tank body 1 through the feeding port 18. It is simple and convenient, saves time and improves efficiency. Furthermore, a valve 22 is provided at the feeding port 18, and the opening of the feeding port 18 is controlled by the valve 22. The side of the tank body 1 is also provided with a support ear 19, which facilitates the installation of the tank body 1 on the bracket through the support ear 19.
[0034] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent substitutions, or modifications based on the present invention that solve essentially the same technical problems and achieve essentially the same technical effects are included within the scope of protection of the present invention.
Claims
1. A reactor for industrial production of immersion thermal management liquid, comprising a tank body, wherein the tank body is used to contain the thermal management liquid; characterized in that: It also includes a delivery pipeline, a dehydration device and a circulation pipeline, one end of the delivery pipeline is connected to the tank body, and the other end of the delivery pipeline is connected to the dehydration device, and the thermal management liquid is dehydrated by the dehydration device, one end of the circulation pipeline is connected to the dehydration device, and the other end of the circulation pipeline is connected to the tank body.
2. A reactor for industrial production of immersion thermal management liquid according to claim 1, characterized in that: The conveying pipeline includes a first conveying pipeline, a second conveying pipeline and a conveying pump. The tank body is provided with a discharge port. The first conveying pipeline is connected to the discharge port. The conveying pump is arranged between the first conveying pipeline and the second conveying pipeline. The second conveying pipeline is connected to the water removal device.
3. A reactor for industrial production of immersion thermal management liquid according to claim 1, characterized in that: The dewatering device comprises a dewatering tank filled with a dewatering medium. The dewatering tank is provided with a liquid inlet pipe which is in communication with the conveying pipeline.
4. A reactor for industrial production of immersion thermal management liquid according to claim 3, characterized in that: The water removal medium is a molecular sieve.
5. The reactor for industrial production of immersion thermal management liquid according to claim 1, characterized in that: The circulation pipeline includes a discharge pipe and a first circulation pipe, the discharge pipe is connected to the water removal device, one end of the first circulation pipe is connected to the discharge pipe, the tank body is provided with a feed port, and the other end of the first circulation pipe is connected to the feed port.
6. A reactor for industrial production of immersion thermal management liquid according to claim 5, characterized in that: The circulation pipeline is also provided with a filtering component, which is used to filter the thermal management liquid. The filtering component includes a second circulation pipeline and a filter. The two sides of the filter are respectively connected to the second circulation pipeline and the discharge pipeline, and the other end of the second circulation pipeline is connected to the water removal device.
7. A reactor for industrial production of immersion thermal management liquid according to claim 5, characterized in that: The discharge pipe is provided with a discharge port, and the discharge port is used for discharging the thermal management liquid.
8. The reactor for industrial production of immersion thermal management liquid according to claim 1, characterized in that: The tank body is provided with a stirring component, through which the thermal management liquid is stirred.
9. A reactor for industrial production of immersion thermal management liquid according to claim 8, characterized in that: The stirring assembly comprises a stirring motor, a stirring shaft and a stirring paddle. The stirring shaft extends into the tank body, one end of the stirring shaft is connected to the stirring motor, and the stirring paddle is installed at the other end of the stirring shaft.
10. The reactor for industrial production of immersion thermal management liquid according to claim 1, characterized in that: The tank body is provided with a feeding port, through which the thermal management liquid is added into the tank body.