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Experimental study on thermal runaway behaviors of 18650 li-ion battery under enclosed and ventilated conditions

机译:封闭通风条件下18650锂离子电池热失控行为的实验研究

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摘要

A novel study was done using a designed 6.7L chamber for experiments under both enclosed and ventilated conditions. Under enclosed condition, for LIB (li-ion battery) above 0% SOC (state of charge), the cases ruptured. Above 50% SOC, an explosion was even triggered. Though the analysis of collected gas from the enclosed condition, the flammable gas (e.g., CH4, CO) concentration increased as SOC increased, even a gas explosion occurred. Under ventilation, the tendency of case rupture decreased and the gas explosion risk was reduced. Whether the case rupture occurred was depended on the rate of generated gas venting. Fick's Law was adopted to describe this phenomenon. It was found that the external pressure was the key factor impacting the case rupture. This work studied the LIB thermal runaway behaviors from a novel perspective, and provided a reference for the safety protection of the LIBs.
机译:使用设计的6.7L室进行了一种新的研究,用于在封闭和通风条件下进行实验。 在封闭状态下,对于以上0%SOC(充电状态)的Lib(Li-Ion电池),案例破裂。 超过50%的SOC,甚至触发了爆炸。 虽然从封闭条件下分析了收集的气体,但随着SoC的增加,易燃气体(例如,CH4,CO)浓度增加,即使发生气体爆炸也会增加。 在通风下,案例破裂的趋势降低,降低了气体爆炸风险。 是否发生了案件破裂,取决于产生的气体通风率。 采用Fick的法律来描述这种现象。 发现外部压力是影响案例破裂的关键因素。 这项工作研究了一种从新颖的角度来看的LIB热失控行为,并为LIBS的安全保护提供了参考。

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