A lithium-ion battery self-discharge detection and assembly process
A lithium-ion battery, self-discharge technology, applied in the direction of measuring electricity, measuring devices, measuring electrical variables, etc., can solve the problems of insignificant changes in voltage and capacity, speed up battery self-discharge, and short storage time, so as to save the binning process , Improve production efficiency, and facilitate production and operation
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Embodiment 1
[0025] (1) Formation of the lithium battery that has been injected with electrolyte and activated, the charging cut-off voltage is V1, and the battery capacity C1 after formation is recorded;
[0026] (2) Perform high temperature aging on the formed battery, the aging temperature is 40~80℃, and the aging time is 3~7 days;
[0027] (3) Reverse charge the battery aged at high temperature, the charging cut-off voltage is V2, record the battery capacity C2, calculate the ratio K of C2 / C1, select the battery with larger self-discharge according to the K value, and classify the remaining batteries. The battery with K greater than or equal to R is a battery with large self-discharge, that is, an unqualified battery, and the battery with K between 0 and R is divided into N grades according to the K value;
[0028] (4) Carry out the binning of batteries according to the gears.
[0029] where R is 4%-10%.
[0030] where N≥2.
[0031] Wherein, the charging cut-off voltage in step (1) ...
Embodiment 2
[0043] (1) The lithium iron phosphate battery with the rated capacity of 55AH after the electrolyte injection and activation treatment was formed, first charged at 0.02C for 300min, and then charged with a constant current of 0.05C to 3.65V, and the recorded charging capacity was C1;
[0044] (2) High-temperature aging of the formed battery, the aging temperature is 60 °C, and the aging time is 4 days;
[0045] (3) Reverse charge the battery aged at high temperature, charge the battery with 0.3C constant current and constant voltage to 3.65V, the current is cut off at 0.05C, record the charging capacity as C2, calculate the ratio K of C2 / C1, and the battery with K≥5% is Batteries with large self-discharge, that is, unqualified batteries, are divided into 5 grades according to the K value before K is 0~5%;
[0046] 0~1% is grade A;
[0047] 1%~2% is B grade;
[0048] 2%~3% is C grade;
[0049] 3%~4% is D grade;
[0050] 4%~5% is E grade;
[0051] (4) Carry out the binning of...
Embodiment 3
[0057] (1) Formation of the lithium battery that has been injected with electrolyte and activated, the charging cut-off voltage is V1, and the battery capacity C1 after formation is recorded;
[0058] (2) Perform high temperature aging on the formed battery, the aging temperature is 40~80℃, and the aging time is 3~7 days;
[0059] (3) Reverse charge the battery aged at high temperature, the charging cut-off voltage is V2, record the battery capacity C2, calculate the ratio K of C2 / C1, select the battery with larger self-discharge according to the K value, and classify the remaining batteries. The battery with K greater than or equal to R is a battery with large self-discharge, that is, an unqualified battery, and the battery with K between 0 and R is divided into N grades according to the K value;
[0060] (4) Carry out the binning of batteries according to the gears.
[0061] where R is 4%-10%.
[0062] where N≥2.
[0063] Wherein, the charging cut-off voltage in step (1) ...
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