Chemical combination method of lithium-ion recharging battery
A technology of secondary charging and formation method, which is applied in secondary battery charging/discharging, secondary battery repair/maintenance, non-aqueous electrolyte storage battery, etc. Cycle performance and other issues, to achieve the effect of reducing the degree of polarization, improving cycle performance, and increasing migration rate
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Embodiment 1
[0019] Closed formation is adopted, and the temperature of closed formation is preferably 35-60°C. The battery is firstly charged with a constant current in three stages, and then charged with a constant voltage. There is a time interval between each charging stage. Three constant current charges Different charging currents are used in different stages, and the charging current increases sequentially.
[0020] In the first stage, the constant current charging current is 0.02C (C is the battery capacity), and the charging cut-off voltage is 2.2V; in the second stage, the constant current charging current is 0.12C, and the charging cut-off voltage is 3.1V; in the third stage, constant current charging The current is 0.2C, and the charging cut-off voltage is 3.7V. The charging voltage in the constant voltage charging stage is 3.7V, and the cut-off current is 0.01C. The time interval between each charging stage is 5 to 15 minutes, and the latter interval is longer than the former...
Embodiment 2
[0022] In the first stage, the constant current charging current is 0.03C, and the charging cut-off voltage is 2.3V; in the second stage, the constant current charging current is 0.14C, and the charging cut-off voltage is 3.2V; in the third stage, the constant current charging current is 0.2C, The cut-off voltage is 3.8V. The charging voltage in the constant voltage charging stage is 3.8V, and the cut-off current is 0.01C. The remaining steps are the same as in Embodiment 1.
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