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首页> 外文期刊>Journal of thermal analysis and calorimetry >The investigation of thermal runaway propagation of lithium-ion batteries under different vertical distances
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The investigation of thermal runaway propagation of lithium-ion batteries under different vertical distances

机译:不同垂直距离下锂离子电池热失控传播的研究

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摘要

The time of safety valve cracks and thermal runaway propagation are influenced seriously by vertical distance and the stage of charge (SOC). In this study, a series of experiments with four lithium-ion batteries has been finished to evaluate the fire hazards by in situ calorimeter. The temperature of safety valve crack is inversely proportional to the SOC. For upper batteries of 0, 50 and 100% SOC, the safety valve was not cracked at 3, 5 and 8 cm, respectively. The safety valve crack time is an exponential function of distance for 50% and 100% SOC. The SO2 can be obviously found under a high temperature for the fully charged batteries.
机译:安全阀裂缝和热失控传播的时间受到垂直距离和电荷阶段(SOC)的影响。 在这项研究中,一系列具有四个锂离子电池的实验已经完成,以评估原位量热计的火灾危险。 安全阀裂纹的温度与SOC成反比。 对于0,50和100%SOC的上电池,安全阀分别不会在3,5和8cm下破裂。 安全阀裂缝时间是50%和100%SoC的距离的指数函数。 SO2显然可以在高温下找到完全带电的电池。

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