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Sealing detection system and method after liquid injection of lithium battery

A technology for leak tightness detection and lithium battery injection. It is applied in the liquid/vacuum degree of liquid tightness measurement and by detecting the appearance of fluid at the leak point. It can solve the problems of low sensitivity, high consumption of helium and high cost. , to achieve the effect of high detection sensitivity, reduced helium content, and short detection time

Active Publication Date: 2018-11-16
HEFEI GUOXUAN HIGH TECH POWER ENERGY
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AI Technical Summary

Problems solved by technology

[0004] If utilize above-mentioned method to carry out the air-tightness detection after lithium battery injection, mainly have following defects: 1, bubble method: can cause battery pollution, inefficiency, can't be automated; 2, pressure drop method, pressure difference method: inefficiency, Low sensitivity; 3. Ultrasonic detection method: poor accuracy; 4. Helium gas leak detection method: it needs to consume a lot of expensive helium gas, and the cost is high, which is not conducive to mass production

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  • Sealing detection system and method after liquid injection of lithium battery
  • Sealing detection system and method after liquid injection of lithium battery

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Embodiment Construction

[0027] refer to figure 1 , a leak detection system for a lithium battery after liquid injection proposed in the present disclosure, including: a helium gas detector 101, a helium gas detection valve 102, a vacuum pump 201, a helium gas tank 301, a helium gas metering pump 302, and a compressed air source 401 and main pipe 501.

[0028] The first end of the main pipeline 501 is used to connect the test area, the second end of the main pipeline 501 is connected to the vacuum pump 201 and connected to the helium detector 101 through the helium detection valve 102, when the helium detection valve 102 is opened, the helium detector 101 is used To detect whether the gas in the main pipeline 501 contains helium components, the vacuum pump 201 is used to evacuate the main pipeline 501 to a negative pressure. The compressed air source 401 communicates with the main pipeline 501 for filling the main pipeline 501 with air.

[0029] The helium gas tank 301 is connected to the input end ...

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Abstract

The invention provides a sealing detection system after liquid injection of a lithium battery. The system comprises a helium detector, a helium detection valve, a vacuum pump, a helium pot, a helium metering pump, a compressed air source and a main pipe. The invention also provides a sealing detection method and method after liquid injection of lithium battery. According to the method, the vacuumpump forms a negative pressure environment outside a liquid injection hole, helium is dissipated in the vacuum environment, and the helium detector detects whether there is helium overflows from the battery to determine the sealing of the battery. A traditional method in which helium is filled into the battery in advance is not used, the needed amount of helium is reduced greatly, and the cost issaved; and the system and method have no influence on the internal of the battery, and the battery quality can be ensured more effectively via lossless detection.

Description

technical field [0001] The present disclosure relates to the technical field of lithium-ion batteries, and in particular to a system and method for detecting the leakiness of a lithium battery after liquid injection. Background technique [0002] After the lithium-ion battery is injected with the electrolyte, sealing and welding operations are required at the injection hole, and then an air-tightness test is performed to prevent the electrolyte from leaking and overflowing, polluting the environment, and at the same time ensure the stable performance of the lithium-ion battery. [0003] At present, the common air tightness testing methods are as follows: 1. Bubble method: Introduce a certain pressure of gas into the sealed workpiece cavity, sink the workpiece into water (or other liquids), or apply soap on the surface of the workpiece Water, observe whether there are bubbles; 2. Pressure drop method: Introduce a certain pressure of gas into the sealed workpiece cavity, stand...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M3/20
CPCG01M3/20
Inventor 高冲王晨旭
Owner HEFEI GUOXUAN HIGH TECH POWER ENERGY