Multifunctional detection device
Patent Information
- Application Number
- TW114205853
- Authority / Receiving Office
- TW · TW
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-04-09
- Filing Date
- 2025-06-06
- Publication Date
- 2026-08-11
- Estimated Expiration
- 2035-06-05
Smart Images

Figure TWG2TB001906001_001 
Figure TWG2TB001906001_002 
Figure TWG2TB001906001_003
Abstract
Claims
1. A multifunctional testing device configured to test an object, wherein the object is provided with a liquid-cooled pipeline, the improvement being that the multifunctional testing device comprises: The detection component is configured to be installed on the object to be tested and extend into the liquid-cooled pipe; A gas pipeline is configured to connect the liquid-cooled pipe of the test object to an external gas source, so that compressed gas can flow into the liquid-cooled pipe along the gas pipeline, and the detection component is configured to monitor the pressure change within the liquid-cooled pipe; a first liquid pipeline is configured to connect the liquid-cooled pipe of the test object to a coolant storage device, so that coolant in the coolant storage device can be injected into the liquid-cooled pipe along the first liquid pipeline, and the detection component is configured to monitor the flow rate of coolant within the liquid-cooled pipe; A second liquid line is configured to connect the liquid-cooled pipe of the test object to the cleaning fluid storage device, so that the cleaning fluid in the cleaning fluid storage device can flow into the liquid-cooled pipe along the second liquid line and clean the liquid-cooled pipe; a control component is connected to the gas line, the first liquid line and the second liquid line respectively, and the control component is configured to selectively control one of the gas line, the first liquid line and the second liquid line to connect to the liquid-cooled pipe of the test object.
2. The multifunctional testing device as described in claim 1, wherein, The multifunctional testing device further includes a gas heating component, which is installed in the gas pipeline and connected to the control component; the gas heating component is configured to heat the compressed gas flowing through the gas pipeline so that the heated compressed gas dries the liquid-cooled pipeline.
3. The multifunctional testing device as described in claim 2, wherein, The multifunctional detection device further includes a first humidity detector and a second humidity detector. The first humidity detector is configured to be installed at the inlet of the liquid cooling pipe to monitor the humidity value at the inlet of the liquid cooling pipe, and the second humidity detector is configured to be installed at the outlet of the liquid cooling pipe to monitor the humidity value at the outlet of the liquid cooling pipe.
4. The multifunctional testing device as described in any one of claims 1 to 3, wherein, The first liquid pipeline includes a first inlet branch and a first outlet branch. The first inlet branch is configured to connect the inlet of the liquid-cooled pipe and the coolant storage device, so that the coolant in the coolant storage device can be injected into the liquid-cooled pipe along the first inlet branch. The first outlet branch is configured to connect the outlet of the liquid-cooled pipe and the gas pipeline, so that the coolant in the liquid-cooled pipe can be discharged along the first outlet branch when the compressed gas flows into the liquid-cooled pipe along the gas pipeline.
5. The multifunctional testing device as described in claim 4, wherein, The second liquid pipeline includes a second inlet branch and a second outlet branch. The second inlet branch is configured to connect the inlet of the liquid cooling pipeline and the cleaning fluid storage device, and the second outlet branch is configured to connect the outlet of the liquid cooling pipeline, so that the cleaning fluid in the cleaning fluid storage device can flow into the liquid cooling pipeline along the second inlet branch and flow out along the second outlet branch.
6. The multifunctional testing device as described in claim 5, wherein, The first liquid inlet branch and the second liquid inlet branch are configured as the same pipeline.
7. The multifunctional testing device as described in claim 5, wherein, The first liquid pipeline further includes a first liquid storage chamber and a second liquid storage chamber. The first liquid storage chamber is located in the first liquid inlet branch and is configured to contain the coolant during the process of the coolant being injected into the liquid cooling pipeline along the first liquid inlet branch. The second liquid storage chamber is located in the first liquid outlet branch, and the second liquid storage chamber is configured to contain the coolant during the discharge of the coolant along the first liquid outlet branch.
8. The multifunctional testing device as described in claim 7, wherein, The second liquid pipeline further includes a third liquid storage chamber, which is located in the second liquid outlet branch and is configured to contain the cleaning liquid as it flows out along the second liquid outlet branch.
9. The multifunctional testing device as described in claim 8, wherein, The multifunctional testing device further includes a first drain pipe, a second drain pipe, and a third drain pipe. The first drain pipe is connected to the first liquid storage chamber, the second drain pipe is connected to the second liquid storage chamber, and the third drain pipe is connected to the third liquid storage chamber. The first drain pipe is configured to discharge the coolant in the first liquid storage chamber to the outside, the second drain pipe is configured to discharge the coolant in the second liquid storage chamber to the outside, and the third drain pipe is configured to discharge the cleaning fluid in the third liquid storage chamber to the outside.
10. The multifunctional testing device as described in claim 2, wherein, The gas pipeline includes a first gas branch and a second gas branch, both of which are connected to the control component. The gas heating component is located in the first gas branch. The first gas branch is configured to be connected to an external air compressor, and the second gas branch is configured to be connected to a gas storage device. The control component is configured to selectively control one of the first gas branch and the second gas branch to be connected to the liquid-cooled pipeline of the test object.