热失控
阳极
分离器(采油)
阴极
核工程
容量损失
电池(电)
材料科学
热的
锂离子电池
淡出
分析化学(期刊)
化学
电气工程
电极
工程类
物理
计算机科学
热力学
色谱法
功率(物理)
物理化学
操作系统
作者
Xuning Feng,Jing Sun,Minggao Ouyang,Xiangming He,Languang Lu,Xiao Han,Mou Fang,Huei Peng
标识
DOI:10.1016/j.jpowsour.2014.08.094
摘要
This paper provides a study on the characterizations of large format lithium ion battery cells exposed to extreme high temperature but without thermal runaway. A unique test is set up: an extended volume-accelerating rate calorimetry (EV-ARC) test is terminated at a specific temperature before thermal runaway happens in the battery. The battery was cooled down after an EV-ARC test with early termination. The performances of the battery before and after the EV-ARC test are investigated in detail. The results show that (a) the melting point of the separator dictates the reusability of the 25 Ah NCM battery after a near-runaway event. The battery cannot be reused after being heated to 140 °C or higher because of the exponential rise in ohmic resistance; (b) a battery can lose up to 20% of its capacity after being heated to 120 °C just one time; (c) if a battery is cycled after a thermal event, its lost capacity may be recovered partially. Furthermore, the fading and recovery mechanisms are analyzed by incremental capacity analysis (ICA) and a prognostic/mechanistic model. Model analysis confirms that the capacity loss at extremely high temperature is caused by the increase of the resistance, the loss of lithium ion (LLI) at the anode and the loss of active material (LAM) at the cathode.
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