Short-circuit inspection method for secondary cell
A secondary battery is charged at a predetermined charging current density to a first SOC, and discharged at a discharging current density same as the charging current density to a second SOC smaller than the first SOC, the voltage thereof is stabilized by leaving the secondary battery for a predetermined time while maintaining the secondary battery in the range of ±3° C. from the battery temperature of the secondary battery that has been discharged, the secondary battery the voltage of which has been stabilized is self-discharged under room temperature, and the presence or absence of a short-circuit is detected on the basis of a voltage drop amount after a given time.
1. A method for inspecting short-circuit in a secondary battery, comprising:
charging the secondary battery to a first SOC with a predetermined charging current density;
discharging the secondary battery to a second SOC lower than the first SOC with a discharging current density that is the same as the charging current density;
regulating a voltage of the secondary battery by leaving the secondary battery for a predetermined time at a battery temperature in a range of ±3° C. from the battery temperature of the secondary battery after discharging; and
self-discharging the secondary battery, the voltage of which is regulated, under room temperature and inspecting whether the short-circuit exists on the basis of an amount of voltage drop after a given time, wherein
the regulating is operated in a condition that the battery temperature is kept at room temperature and in the range of ±3° C. from the battery temperature after discharging, and the given time is not less than 24 hours.
2. The method according to claim 1 , wherein
in the discharging, the second SOC is not more than 10% of the full battery capacity.
3. A method for inspecting short-circuit in a secondary battery, comprising:
charging the secondary battery to a first SOC with a predetermined charging current density;
discharging the secondary battery to a second SOC lower than the first SOC with a discharging current density that is the same as the charging current density;
regulating a voltage of the secondary battery by leaving the secondary battery for a predetermined time at a battery temperature in a range of ±3° C. from the battery temperature of the secondary battery after discharging;
self-discharging the secondary battery, the voltage of which is regulated, under room temperature, and inspecting whether the short-circuit exists on the basis of an amount of voltage drop after a given time; and
aging the secondary battery under high-temperature atmosphere after charging the secondary battery.
4. The method according to claim 3 , wherein the first SOC is not less than 3.6 V.