The present invention relates to a leak detection system and a leak detection method thereof, and more particularly, to a leak detection system and a leak detection method utilizing high temperature or low temperature gas for the leak detection process.
A conventional car motor assembly includes an inverter, a motor and a gearbox. The inverter transforms DC voltage from a battery to AC voltage, for driving the motor. The gearbox delivers power generated by the motor to other connected components for propelling the vehicle. The inverter, the motor and the gearbox are jointly connected inside an enclosed case. When the car motor assembly is running, the inverter, the motor and the gearbox generate heat. In order to maintain functionality and efficiency of the car motor assembly from degradation from heat, the conventional art utilizes cooling medium flowing through the car motor assembly to dissipate heat. However, if the inverter, the motor and the gearbox are not properly sealed and causing cooling medium leaks, cooling efficiency may reduce and further damaging functionality of the motor assembly and the vehicle. The prior art uses fluorescent agent while performing the leak detection process, which may damage the inverter, the motor and the gearbox. Therefore, the conventional leak detection system and method may not effectively and efficiently perform the leak detection process to the car motor assembly.
The present invention provides a leak detection system and a leak detection method for effectively and efficiently performing the leak detection process to the motor car assembly.
The present invention provides a leak detection system, comprising a gas supplying device, configured to provide a tracer gas, wherein a temperature of the tracer gas is higher or lower than a temperature of ambient air; a gas pumping device, connected to the gas supplying device, configured to pump the tracer gas into a case; a gas exhausting device, configured to exhaust gas out of the case; a thermal image capturing device, configured to capture thermal images of the case; and a processing unit, electrically connected to the thermal image capturing device, configured to determine whether the tracer gas is leaking out of the case according to the thermal images of the case.
The present invention further provides a leak detection method, comprising a tracer gas, wherein a temperature of the tracer gas is higher or lower than a temperature of ambient air; providing a gas pumping device, configured to pump the tracer gas into a case; providing a gas exhausting device, configured to exhaust gas out of the case; capturing thermal images of the case; and determining whether the tracer gas is leaking out of the case according to the thermal images of the case.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
In one embodiment,
According to descriptions above, the leak detection system 100 of the present invention takes atmospheric air, easily obtained gas or non-corrosive gas as the tracer gas, which cause no damage to the car motor assembly 200 and needs no further cleaning process after the leak detection. In addition, the leak detection system 100 of the present invention may simultaneously perform pumping and exhausting to the car motor assembly 200, which may shortly replace gas inside the car motor assembly 200 to the tracer gas and further improve efficiency of the leak detection process.
Moreover, the leak detection system 100 of the present invention may further include a gas pressure sensing unit 160, configured to sense a gas pressure inside the car motor assembly 200. The processing unit 150 may control the gas fluxes of the gas pumping device 120 and the gas exhausting device 130 according to a sensing result of the gas pressure sensing unit 160, for keeping the gas pressure inside the car motor assembly 200 to be fixed or within a preset range. In such an embodiment, the gas pressure sensing unit 160 is arranged next to the air outlet 214 of the car motor assembly 200, and the present invention is not limited herein. Since the leak detection system 100 may simultaneously perform pumping and exhausting to the car motor assembly 200, the gas pressure inside the car motor assembly 200 may be controlled more accurately and further prevent instability of the gas pressure inside the car motor assembly 200.
In another embodiment, the leak detection system 100 of the present invention may include a temperature sensing unit 170, configured to sense a gas temperature inside the car motor assembly 200. The processing unit 150 may control the gas fluxes of the gas pumping device 120 and the gas exhausting device 130 according to a sensing result of the temperature sensing unit 170, for keeping the gas temperature inside the car motor assembly 200 to be fixed or within a preset range. In such an embodiment, the temperature sensing unit 170 is arranged nearby the air outlet 214 of the car motor assembly 200, and the present invention is not limited herein. Since the leak detection system 100 of the present invention may simultaneously perform pumping and exhausting to the car motor assembly 200, the gas temperature inside the car motor assembly 200 may be controlled more accurately and further prevent instability of the gas temperature inside the car motor assembly 200.
In another aspect, when performing the leak detection process, the car motor assembly 200 may be placed under a subatmospheric pressure environment in which the tracer gas is more likely to leak out of the enclosed case of the car motor assembly 200, and further improves efficiency of the leak detection process of the present invention.
In the embodiments stated above, the leak detection system 100 of the present invention performs the leak detection process to the car motor assembly 200, and the present invention is not limited herein. The leak detection system 100 of the present invention may perform the leak detection process to a case or a structure of other devices.
Step 310: Provide a tracer gas, wherein a temperature of the tracer gas is higher or lower than a temperature of ambient air.
Step 320: Provide a gas pumping device, configured to pump the tracer gas into a case.
Step 330: Provide a gas exhausting device, configured to exhaust gas out of the case.
Step 340: Capture thermal images of the case.
Step 350: Determine whether the tracer gas is leaking out of the case according to the thermal images of the case.
The leak detection system and the leak detection method thereof described herein are capable of performing the leak detection process with high temperature or low temperature gas, which cause no damage to the testing object and needs no further cleaning process after the leak detection process. In addition, the leak detection system may simultaneously perform pumping and exhausting to the case of the testing object, for shortly replacing air inside the case to the tracer gas with accurate control of the gas pressure and the gas temperature inside the case. Therefore, the leak detection system and the leak detection method of the present invention are advantageous over the conventional art for better efficiency of the leak detection process and higher accuracy of gas controlling.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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201710731965.1 | Aug 2017 | CN | national |
201721061735.0 | Aug 2017 | CN | national |