Method for preparing lithium ion battery pack
A lithium-ion battery pack and lithium-ion battery technology, which is applied in secondary batteries, battery electrodes, secondary battery manufacturing, etc., can solve problems such as limited service life, limited battery functions, and large capacity differences, and achieve enhanced Wetting performance, effect of enhancing anti-overcharge performance
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Embodiment 1
[0034] 1) Vacuum drying the assembled lithium-ion batteries;
[0035] 2) Inject an electrolyte solution accounting for 72% of the total electrolyte volume; the electrolyte contains dioctylphenyl phosphate as an additive, and the concentration of the dioctylphenyl phosphate in the electrolyte is 1.2% by volume;
[0036] 3) 0.1C constant current charging to a first predetermined voltage; the first predetermined voltage is 3.85V;
[0037] 4) Constant voltage charging with the first predetermined voltage until the charging current is lower than the cut-off current by 0.01C;
[0038] 5) At an ambient temperature of 25 degrees Celsius, charge the battery at a constant current of 1C to a charge cut-off voltage of 4.25V;
[0039] 6) Measure the surface temperature of the battery; record the charging quantity of the battery voltage rising from the first predetermined voltage to the charging cut-off voltage of 4.25V for the first time;
[0040] 7) If the surface temperature of the bat...
Embodiment 2
[0048] 1) Vacuum drying the assembled lithium-ion batteries;
[0049] 2) Inject an electrolyte solution accounting for 75% of the total electrolyte volume; the electrolyte contains dioctylphenyl phosphate as an additive, and the concentration of the dioctylphenyl phosphate in the electrolyte is 1.0% by volume;
[0050] 3) 0.1C constant current charging to a first predetermined voltage; the first predetermined voltage is 3.82V;
[0051] 4) Constant voltage charging with the first predetermined voltage until the charging current is lower than the cut-off current by 0.01C;
[0052] 5) At an ambient temperature of 25 degrees Celsius, charge the battery at a constant current of 1C to a charge cut-off voltage of 4.25V;
[0053] 6) Measure the surface temperature of the battery; record the charging quantity of the battery voltage rising from the first predetermined voltage to the charging cut-off voltage of 4.25V for the first time;
[0054]7) If the surface temperature of the batt...
Embodiment 3
[0062] 1) Vacuum drying the assembled lithium-ion batteries;
[0063] 2) Inject an electrolyte solution accounting for 74% of the total electrolyte volume; the electrolyte contains dioctylphenyl phosphate as an additive, and the concentration of the dioctylphenyl phosphate in the electrolyte is 1.1% by volume;
[0064] 3) 0.1C constant current charging to a first predetermined voltage; the first predetermined voltage is 3.84V;
[0065] 4) Constant voltage charging with the first predetermined voltage until the charging current is lower than the cut-off current by 0.01C;
[0066] 5) At an ambient temperature of 25 degrees Celsius, charge the battery at a constant current of 1C to a charge cut-off voltage of 4.25V;
[0067] 6) Measure the surface temperature of the battery; record the charging quantity of the battery voltage rising from the first predetermined voltage to the charging cut-off voltage of 4.25V for the first time;
[0068] 7) If the surface temperature of the bat...
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