Water replenishing device for high-low temperature box
By designing a water supply device for the high and low temperature chamber, and utilizing a water supply unit and evaporator to improve the sensitivity of the temperature regulator, the problem of insufficient sensitivity of traditional temperature regulators is solved, thus achieving efficient temperature regulation and accurate experimental results for the new energy tester.
Patent Information
- Application Number
- CN202423166919.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Traditional temperature regulators have low temperature regulation sensitivity in new energy testing, making it difficult to meet the testing requirements for high and low temperature indicators.
Design a water supply device for high and low temperature chambers, which uses a water supply device to regulate the constant temperature medium, and combines an evaporator and a driver as heat dissipation devices to improve the sensitivity of temperature regulation.
By adjusting the medium water in the water supply and utilizing the heat dissipation function of the evaporator, efficient temperature regulation of the new energy tester was achieved, improving the sensitivity of temperature regulation and the accuracy of experimental results.
Smart Images

Figure CN223539147U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of testing equipment technology, and in particular to a water supply device for a high and low temperature chamber. Background Technology
[0002] In testing new energy sources such as lithium batteries, hydrogen energy, and photovoltaic energy, extensive testing is required in the research, development, production, and application stages. Currently, relatively effective temperature regulators are used in the testing of high and low temperature parameters for new energy devices. However, traditional temperature regulators are insufficient to meet the testing requirements of new energy devices, primarily due to their low temperature regulation sensitivity. Therefore, it is necessary to propose a high and low temperature chamber water supply device to address the shortcomings of traditional temperature regulators in terms of low temperature regulation sensitivity. Utility Model Content
[0003] Therefore, it is necessary to propose a water supply device for high and low temperature chambers to address the shortcomings of traditional temperature regulators in terms of low temperature regulation sensitivity.
[0004] This application relates to a water supply device for a high and low temperature chamber, comprising:
[0005] Regulator body;
[0006] The evaporator is in communication with the regulator body;
[0007] The driver includes a drive section and a drive power section. The drive section includes a motor and a fan blade. The motor is connected to the fan blade and is fixedly connected to the side of the fan blade. The drive power section is in communication with the regulator body.
[0008] A water supply device includes a pump body, a fluid wall panel, and a water storage tank. The water storage tank is disposed on the side of the fluid wall panel and is attached to the fluid wall panel. The top of the fluid wall panel is connected to the water storage tank. The pump body is disposed at the connection between the top of the fluid wall panel and the water storage tank.
[0009] Furthermore, the regulator body includes a temperature piping network;
[0010] The temperature piping network includes longitudinal primary pipes and constant-temperature primary pipes;
[0011] The longitudinal source tube and the constant-temperature source tube are interconnected;
[0012] The top of the constant-temperature source tube is connected to the bottom of the fluid wall plate.
[0013] Furthermore, the fluid wall panel includes a panel body, a first drainage section, and a second drainage section;
[0014] The main body of the plate is provided with multiple flow channels;
[0015] Each of the aforementioned flow channels has the same structure;
[0016] The first drainage section is fixedly connected to the top end of each of the flow channels;
[0017] The second drainage section is fixedly connected to the bottom end of each of the flow channels.
[0018] Furthermore, the water storage device is connected to the first inlet section;
[0019] The water storage device is connected to the second inlet section;
[0020] The pump body is located at the connection between the water reservoir and the second diversion section.
[0021] Furthermore, the driving power unit includes a medium pipeline network;
[0022] The first curved section of the medium pipeline is attached to the side wall of the fluid wall panel;
[0023] The second curved section of the medium pipeline is attached to the end face of the fan blade.
[0024] Furthermore, the volume of the first curved section of the medium network is larger than that of the second curved section of the medium network;
[0025] The medium pipeline is provided with a first end and a second end;
[0026] The first end is located near the first curved section of the medium pipeline network;
[0027] The second end is located near the second curved section of the medium pipeline.
[0028] Furthermore, the first end and the second end are connected to each other;
[0029] The first end and the second end are electrically connected to each other.
[0030] Furthermore, the drive power unit also includes a drive pump;
[0031] The drive pump is disposed between the first end and the second end;
[0032] The inner circumferential surface of the first end is attached to the outer circumferential surface of the first end of the drive pump.
[0033] The inner circumferential surface of the second end is attached to the outer circumferential surface of the second end of the drive pump.
[0034] Furthermore, the first end of the drive pump is defined as the medium inlet of the medium pipeline network;
[0035] The second end of the drive pump is defined as the medium outlet end of the medium pipeline network.
[0036] Furthermore, the power shaft of the motor is fixedly connected to the rotation center of the fan blade.
[0037] This application relates to a water supply device for a high and low temperature chamber, which regulates the temperature of the chamber by means of a regulator body. Since different high and low temperature parameters produce different temperature changes, the water supply device utilizes a water supply unit as its temperature regulation device to improve the sensitivity of the temperature regulator. The water supply unit uses water as a medium for constant-temperature regulation. Water, as a constant-temperature medium, has a large heat capacity per unit volume, while alcohol has a good heat exchange effect per unit mass, and the mixing effect of water and alcohol is good, thus adjusting the sensitivity of the temperature regulator. Simply put, based on the evaporator as a radiator and the actuator as an important heat dissipation device for the evaporator, the device for detecting high and low temperature parameters can be implemented. The evaporator and the regulator body are interconnected, enabling the effective utilization of the high and low temperature chamber water supply device. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the structure of a high and low temperature tank water supply device provided in one embodiment of this application.
[0039] Figure 2 This is a schematic diagram of a high and low temperature tank water supply device provided in another embodiment of this application.
[0040] Figure 3 This is a schematic diagram of the temperature piping network of a high and low temperature chamber water supply device provided in one embodiment of this application.
[0041] Figure 4 This is a schematic diagram of the longitudinal feed pipe and the constant temperature feed pipe of a high and low temperature chamber water supply device provided in another embodiment of this application.
[0042] Figure label:
[0043] 100-Regulator body; 110-Temperature piping network; 111-Longitudinal source pipe; 112-Constant temperature source pipe; 200-Evaporator; 300-Driver; 310-Drive section; 311-Motor; 312-Fan blade; 320-Drive power unit; 321-Media piping network; 322-First curved section; 323-Second curved section; 324-First end; 325-Second end; 330-Drive pump; 400-Water supply unit; 410-Pump body; 420-Fluid wall plate; 421-Plate body; 422-First drainage section; 423-Second drainage section; 424-Flow channel; 430-Water storage unit. Detailed Implementation
[0044] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0045] This application provides a water supply device for a high and low temperature chamber.
[0046] like Figure 1 As shown, in one embodiment of this application, a high and low temperature tank water supply device includes:
[0047] Regulator body 100.
[0048] The evaporator 200 is in communication with the regulator body 100.
[0049] The driver 300 includes a drive section 310 and a drive power section 320. The drive section 310 includes a motor 311 and a fan blade 312. The motor 311 is connected to the fan blade 312 and is fixedly connected to the side of the fan blade 312. The drive power section 320 is in communication with the regulator body 100.
[0050] The water supply device 400 includes a pump body 410, a fluid wall plate 420, and a water storage device 430. The water storage device 430 is disposed on the side of the fluid wall plate 420 and is attached to the fluid wall plate 420. The top of the fluid wall plate 420 is connected to the water storage device 430. The pump body 410 is disposed at the connection between the top of the fluid wall plate 420 and the water storage device 430.
[0051] This embodiment relates to a high and low temperature chamber water supply device, which regulates the temperature of the high and low temperature chamber for detecting high and low temperature indicators through a regulator body 100. Since different high and low temperature indicators produce different temperature changes, a water supply unit 400 is used as the temperature regulating device to improve the sensitivity of the temperature regulator. The water supply unit 400 uses water as the medium for constant temperature regulation. Water, as a constant temperature medium, has a large heat capacity per unit volume, while alcohol has a better heat exchange effect per unit mass, and the mixing effect of water and alcohol is good, thus adjusting the sensitivity of the temperature regulator. Simply put, based on the evaporator 200 as a radiator and the driver 300 as an important heat dissipation device for the evaporator 200, the high and low temperature indicator detection device can be realized. The evaporator 200 and the regulator body 100 are interconnected, enabling the effective utilization of the high and low temperature chamber water supply device.
[0052] like Figures 2 to 4As shown, in one embodiment of this application, the regulator body 100 includes a temperature piping network 110. The temperature piping network 110 includes a longitudinal source pipe 111 and a constant-temperature source pipe 112. The longitudinal source pipe 111 and the constant-temperature source pipe 112 are interconnected. The top of the constant-temperature source pipe 112 is interconnected with the bottom of the fluid wall plate 420.
[0053] Specifically, the regulator body 100 can be a device within the new energy tester or an external device of the new energy tester. Generally, the temperature piping network 110 is installed on the inner wall of the new energy tester. In practice, the new energy tester can be a hollow box or a hollow sphere.
[0054] Because hollow boxes have a certain edge effect, hollow spheres can be used as test spaces in some highly sensitive test projects.
[0055] In fact, the longitudinal primary pipe 111 and the constant-temperature primary pipe 112 of the temperature piping network 110 are widely used in hollow enclosures. Simply put, the mounting surface inside the hollow enclosure is relatively flat, which allows for the effective installation of the longitudinal primary pipe 111 and the constant-temperature primary pipe 112.
[0056] In general, in order to improve the accuracy of experimental results, the constant-temperature primary tube 112 can set the temperature in the test space to a relatively mild temperature value so that the longitudinal primary tube 111 can perform adjustment tests.
[0057] Similarly, in order to improve the accuracy of experimental results, the longitudinal primary tube 111 can set the temperature in the test space to a temperature range with large fluctuations, so that the constant-temperature primary tube 112 can perform adjustment tests.
[0058] In one embodiment of this application, the fluid wall panel 420 includes a panel body 421, a first drainage portion 422, and a second drainage portion 423. The panel body 421 is provided with a plurality of flow channels 424. Each flow channel 424 has the same structure. The first drainage portion 422 is fixedly connected to the top end of each flow channel 424. The second drainage portion 423 is fixedly connected to the bottom end of each flow channel 424.
[0059] Specifically, the fluid wall panel 420 utilizes multiple flow channels 424, such as Figure 2 As shown, each flow channel 424 has the same structure. The first flow guide 422 is fixedly connected to the top end of each flow channel 424, and the second flow guide 423 is fixedly connected to the bottom end of each flow channel 424.
[0060] Similarly, in order to improve the accuracy of experimental results, the fluid wall plate 420 can set the temperature in the test space to a temperature range with large fluctuations, so that the isothermal tube 112 can perform adjustment tests.
[0061] like Figure 1 As shown, in one embodiment of this application, the water reservoir 430 is connected to the first diversion section 422. The water reservoir 430 is also connected to the second diversion section 423. The pump body 410 is disposed at the connection between the water reservoir 430 and the second diversion section 423.
[0062] Specifically, the water storage unit 430 and the second diversion part 423 are connected by a pipeline, the water storage unit 430 is connected to the first diversion part 422, and the water storage unit 430 is connected to the second diversion part 423. The pump body 410 is installed in the connecting pipeline between the water storage unit 430 and the second diversion part 423.
[0063] Since different high and low temperature indicators will produce different temperature changes, in order to improve the temperature regulation sensitivity of the temperature regulator, the high and low temperature chamber water supply unit uses the water storage tank 430 as the temperature regulation device of the high and low temperature chamber water supply unit.
[0064] like Figure 1 As shown, in one embodiment of this application, the driving power includes a medium network 321. A first curved portion 322 of the medium network 321 is attached to the sidewall of the fluid wall panel 420. A second curved portion 323 of the medium network 321 is attached to the end face of the fan blade 312.
[0065] Specifically, the first curved section 322 of the media network 321 performs temperature transfer using the sidewall of the fluid wall plate 420. The second curved section 323 of the media network 321 performs temperature transfer using the airflow formed by the end face of the fan blade 312, which effectively improves the sensitivity of temperature regulation in the test environment.
[0066] In one embodiment of this application, the volume of the first curved portion 322 of the media network 321 is larger than that of the second curved portion 323 of the media network 321. The media network 321 is provided with a first end 324 and a second end 325. The first end 324 is disposed near the first curved portion 322 of the media network 321. The second end 325 is disposed near the second curved portion 323 of the media network 321.
[0067] Specifically, the volume of the first curved section 322 of the medium pipeline 321 is larger than that of the second curved section 323 of the medium pipeline 321, and the medium pipeline 321 can be an irregularly shaped metal pipe. The first end 324 and the second end 325 of the medium pipeline 321 can be the first end of a metal pipe or the second end of a metal pipe.
[0068] In one embodiment of this application, the first end 324 and the second end 325 are interconnected. The first end 324 and the second end 325 are electrically connected.
[0069] When the first end 324 and the second end 325 are connected to each other, the optimal piping can be used to perform effective temperature regulation of the test environment coupling.
[0070] like Figure 1 As shown, in one embodiment of this application, the driving power unit 320 further includes a driving pump 330. The driving pump 330 is disposed between the first end 324 and the second end 325. The inner peripheral surface of the first end 324 is attached to the outer peripheral surface of the first end of the driving pump 330. The inner peripheral surface of the second end 325 is attached to the outer peripheral surface of the second end of the driving pump 330.
[0071] Specifically, the drive unit 320 includes a media network 321. A first curved portion 322 of the media network 321 is attached to the side wall of the fluid wall plate 420. A second curved portion 323 of the media network 321 is attached to the end face of the fan blade 312. By utilizing the drive pump 330 disposed between the first end 324 and the second end 325, effective coupling of the temperature-controlled testing environment can be achieved.
[0072] In one embodiment of this application, the first end of the drive pump 330 is defined as the medium inlet of the medium pipeline 321. The second end of the drive pump 330 is defined as the medium outlet of the medium pipeline 321.
[0073] Specifically, the medium inlet of the medium pipeline 321 is the liquid inlet, and the medium outlet of the medium pipeline 321 is the outlet for discharging liquid medium.
[0074] In one embodiment of this application, the power shaft of the motor 311 is fixedly connected to the rotation center of the fan blade 312.
[0075] By fixing the motor 311 to the fan blade 312, effective temperature regulation can be achieved. The rotation center of the fan blade 312 is provided with a receiving part, and the inner side of the receiving part is closely attached to the outer peripheral surface of the power shaft of the motor 311.
[0076] The technical features of the above embodiments can be combined arbitrarily, and the execution order of the method steps is not restricted. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0077] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A water supply device for a high and low temperature chamber, characterized in that, include: Regulator body; The evaporator is in communication with the regulator body; The driver includes a drive section and a drive power section. The drive section includes a motor and a fan blade. The motor is connected to the fan blade and is fixedly connected to the side of the fan blade. The drive power section is in communication with the regulator body. A water supply device includes a pump body, a fluid wall panel, and a water storage tank. The water storage tank is disposed on the side of the fluid wall panel and is attached to the fluid wall panel. The top of the fluid wall panel is connected to the water storage tank. The pump body is disposed at the connection between the top of the fluid wall panel and the water storage tank.
2. The high and low temperature chamber water supply device according to claim 1, characterized in that, The regulator body includes a temperature piping network; The temperature piping network includes longitudinal primary pipes and constant-temperature primary pipes; The longitudinal source tube and the constant-temperature source tube are interconnected; The top of the constant-temperature source tube is connected to the bottom of the fluid wall plate.
3. The high and low temperature chamber water supply device according to claim 2, characterized in that, The fluid wall panel includes a panel body, a first drainage section, and a second drainage section; The main body of the plate is provided with multiple flow channels; Each of the aforementioned flow channels has the same structure; The first drainage section is fixedly connected to the top end of each of the flow channels; The second drainage section is fixedly connected to the bottom end of each of the flow channels.
4. The high and low temperature tank water supply device according to claim 3, characterized in that, The water storage device is connected to the first inlet section; The water storage device is connected to the second inlet section; The pump body is located at the connection between the water reservoir and the second diversion section.
5. The high and low temperature tank water supply device according to claim 4, characterized in that, The drive power unit includes a medium pipeline network; The first curved section of the medium pipeline is attached to the side wall of the fluid wall panel; The second curved section of the medium network is attached to the end face of the fan blade.
6. The high and low temperature chamber water supply device according to claim 5, characterized in that, The volume of the first curved section of the medium pipeline is greater than that of the second curved section of the medium pipeline; The medium pipeline is provided with a first end and a second end; The first end is located near the first curved section of the medium pipeline network; The second end is located near the second curved section of the medium pipeline.
7. The high and low temperature tank water supply device according to claim 6, characterized in that, The first end and the second end are connected to each other; The first end and the second end are electrically connected to each other.
8. The high and low temperature tank water supply device according to claim 6, characterized in that, The drive power unit also includes a drive pump; The drive pump is disposed between the first end and the second end; The inner circumferential surface of the first end is attached to the outer circumferential surface of the first end of the drive pump. The inner circumferential surface of the second end is attached to the outer circumferential surface of the second end of the drive pump.
9. The high and low temperature tank water supply device according to claim 8, characterized in that, The first end of the drive pump is defined as the medium inlet of the medium pipeline network; The second end of the drive pump is defined as the medium outlet end of the medium pipeline network.
10. The high and low temperature chamber water supply device according to claim 9, characterized in that, The motor's power shaft is fixedly connected to the rotation center of the fan blade.