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Failure mechanism of the lithium ion battery during nail penetration

机译:锂离子电池指甲穿透过程中的失效机理

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摘要

Nail penetration is one of the most important methods to study the internal short circuit safety of lithium ion batteries (LIBs). A series of penetration tests on LIBs under different conditions are conducted. The effects of the states of charge (SOC), penetration positions, depths and speeds are analyzed. As for different penetration positions, thermal runaway reaction is more severe when the battery is penetrated at center due to the faster propagation of thermal runaway. The battery surface temperature is not positively correlated with penetration depth, and the temperature distribution becomes more nonuniform with the increasing of penetration speed. All batteries get into thermal runaway if their temperatures exceed 233 °C due to the shrinkage of separator and trigger of reaction between cathode and electrolyte. The fire behavior of penetrated batteries is exhibited in this work. “Micro short-circuit cell” structure is proposed to interpret the mechanism of internal short circuit induced by penetration.
机译:钉入是研究锂离子电池(LIB)内部短路安全性的最重要方法之一。在不同条件下对LIB进行了一系列渗透测试。分析了荷电状态(SOC),穿透位置,深度和速度的影响。对于不同的穿透位置,由于热失控的更快传播,当电池在中心穿透时,热失控反应更加严重。电池表面温度与穿透深度不呈正相关,并且随着穿透速度的增加,温度分布变得更加不均匀。如果所有电池的温度超过233 C,都会由于隔板的收缩以及触发阴极和电解质之间的反应而进入热失控状态。这项工作表现出穿透电池的着火行为。提出了“微短路单元”结构来解释穿透引起的内部短路的机理。

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