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首页> 外文期刊>Journal of power sources >Pursuing safer batteries: Thermal abuse of LiFePO_4 cells
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Pursuing safer batteries: Thermal abuse of LiFePO_4 cells

机译:追求更安全的电池:LiFePO_4电池的热滥用

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摘要

In this paper, accelerated rate calorimetry (ARC) and oven exposure, are used to investigate thermal runaway (TR) in lithium-ion cells. Previous work shows that lithium iron phosphate (LFP) cells have a lower risk of TR over other Li-ion chemistries. ARC is carried out on cells at various SOC to identify which decomposition reactions are contributing to the TR behaviour of a cell at different SOC. Results show, at SOC of 100% and 110%, the negative and positive electrode reactions are the main contributors to TR, while at lower SOC it is the negative electrode reaction that dominates. Cells at 100% SOC exposed to high temperatures during oven tests show, along with the ARC analysis, that the presence of the cathode and electrolyte reactions leads to an increase In the severity of a TR event for oven temperatures above 200 degrees C. By comparing the heat generated in ARC and oven testing, it is shown that ARC does not fully capture the self-heating and TR safety hazard of a cell, unlike oven testing. This work gives new insight into the nature of the decomposition reactions and also provides an essential data set useful for model validation which is of importance to those studying LFP cells computationally.
机译:在本文中,加速速率量热法(ARC)和烤箱暴露用于研究锂离子电池的热失控(TR)。先前的工作表明,磷酸铁锂(LFP)电池比其他锂离子化学药品具有更低的TR风险。在不同SOC的电池上进行ARC,以识别哪些分解反应对不同SOC的电池的TR行为有贡献。结果表明,在SOC为100%和110%时,负电极和正电极反应是TR的主要因素,而在SOC较低时,负电极反应占主导。在烤箱测试期间暴露于高温的100%SOC的电池以及ARC分析表明,存在阴极和电解质反应会导致烤箱温度高于200摄氏度时TR事件的严重性增加。 ARC和烤箱测试产生的热量表明,与烤箱测试不同,ARC不能完全捕获电池的自热和TR安全隐患。这项工作为分解反应的性质提供了新的见解,还提供了对模型验证有用的基本数据集,这对于那些以计算机方式研究LFP细胞的研究者来说非常重要。

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