Method for quickly evaluating expansion of aluminum-housing high-nickel ternary battery
A ternary battery, high nickel technology, applied in the direction of measuring electricity, measuring electrical variables, measuring devices, etc.
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Embodiment 1
[0024] A method for quickly evaluating the expansion of aluminum shell high-nickel ternary batteries, the steps are as follows:
[0025] (1) Take the sealed aluminum shell high-nickel ternary battery, charge the battery to 4.2V at 1C at a temperature of 25±2°C, measure and record the initial thickness d of the battery 0 27.05mm;
[0026] (2) Float charge it for 15 days at a temperature of 25±2°C with a current of 0.1C and a voltage of 4.25V. The simulated battery life is 1 year. Test and record the thickness d of the battery at this time 1 is 27.46mm, then the battery expansion coefficient η=(d 1 -d 0 ) / d 0 was 1.52%.
Embodiment 2
[0028] A method for quickly evaluating the expansion of aluminum shell high-nickel ternary batteries, the steps are as follows:
[0029] (1) Take the sealed aluminum shell high-nickel ternary battery, charge the battery to 4.2V at 1.0C at a temperature of 25±2°C, measure and record the initial thickness d of the battery 0 27.05mm;
[0030] (2) At a temperature of 25±2°C, float charge it for 90 days with a current of 0.15C and a voltage of 4.25V. The simulated battery life is 4 years. Test and record the thickness d of the battery at this time 1 is 28.42mm, then the battery expansion coefficient η=(d 1 -d 0 ) / d 0 was 5.16%.
Embodiment 3
[0032] A method for quickly evaluating the expansion of aluminum shell high-nickel ternary batteries, the steps are as follows:
[0033] (1) Take the sealed aluminum shell high-nickel ternary battery, charge the battery to 4.2V at a temperature of 45±2°C at 1.0C, measure and record the initial thickness d of the battery 0 27.05mm;
[0034] (2) At a temperature of 45±2°C, with a current of 0.1C and a voltage of 4.25V, float charge it for 83.5 days. The simulated battery life is 10 years. Test and record the thickness d of the battery at this time 1 is 28.87mm, then the battery expansion coefficient η=(d 1 -d 0 ) / d 0 was 6.73%.
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