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Experimental Study of Self-heating Ignition of Lithium-Ion Batteries During Storage: Effect of the Number of Cells

机译:储存过程中锂离子电池自加热点火的实验研究:细胞数量的影响

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摘要

Lithium-ion batteries (LIBs) are widely used as energy storage devices. However, a disadvantage of these batteries is their tendency to ignite and burn, thereby creating a fire hazard. Ignition of LIBs can be triggered by abuse conditions (mechanical, electrical or thermal abuse) or internal short circuit. In addition, ignition could also be triggered by self-heating when LIBs are stacked during storage or transport. However, the open circuit self-heating ignition has received little attention and seems to be misunderstood in the literature. This paper quantifies the self-heating behaviour of LIB by means of isothermal oven experiments. Stacks of 1, 2, 3 and 4 Sanyo prismatic LiCoO(2)cells at 30% state of charge were studied. The surface and central temperatures, voltage, and time to ignition were measured. Results show that self-heating ignition of open circuit LIBs is possible and its behaviour has three stages: heating up, self-heating and thermal runaway. We find for the first time that, for this battery type, as the number of cells increases from 1 to 4, the critical ambient temperature decreases from 165.5 degrees C to 153 degrees C. A Frank-Kamenetskii analysis using the measured data confirms that ignition is caused by self-heating. Parameters extracted from Frank-Kamenetskii theory are then used to upscale the laboratory results, which shows large enough LIB ensembles could self-ignite at even ambient temperatures. This is the first experimental study of the effect of the number of cells on self-heating ignition of LIBs, contributing to the understanding of this new fire hazard.
机译:锂离子电池(LIBS)广泛用作储能装置。然而,这些电池的缺点是它们对点燃和燃烧的倾向,从而产生火灾危险。 LIBS的点火可以通过滥用条件(机械,电气或热滥用)或内部短路来触发。此外,当在储存或运输期间堆叠LIB时,也可以通过自加热触发点火。然而,开放式电路自加热点火已经很少受到关注,似乎在文献中被误解。本文通过等温烤箱实验来量化了LIB的自热行为。研究了30%充电状态的1,2,3和4个三洋棱镜LiCoO(2)细胞的堆栈。测量表面和中心温度,电压和点火时间。结果表明,开放电路Libs的自加热点火是可能的,其行为有三个阶段:加热,自加热和热失控。我们发现第一次,对于这种电池类型,随着电池的数量从1到4增加,临界环境温度从165.5摄氏度降低到153摄氏度。使用测量数据的Frank-Kamenetskii分析确认点火确认点火是由自我加热引起的。然后,从Frank-Kamenetskii理论提取的参数升高了实验室结果,这显示了足够大的LIB系列可以在甚至环境温度下自燃。这是对自由度自加热点火的细胞数量的第一次实验研究,有助于了解这种新的火灾危险。

著录项

  • 来源
    《Fire Technology》 |2020年第6期|2649-2669|共21页
  • 作者单位

    Imperial Coll London Dept Mech Engn London SW7 2AZ England;

    Kings Coll London Dept Engn London WC2R 2LS England;

    Univ Sci & Technol China State Key Lab Fire Sci Hefei 230026 Anhui Peoples R China;

    Imperial Coll London Dept Mech Engn London SW7 2AZ England;

    Hong Kong Polytech Univ Dept Bldg Serv Engn Kowloon Hong Kong Peoples R China;

    Univ Sci & Technol China State Key Lab Fire Sci Hefei 230026 Anhui Peoples R China;

    Imperial Coll London Dept Mech Engn London SW7 2AZ England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ignition; Lithium-ion battery; Heat transfer; Thermal runaway; Energy;

    机译:点火;锂离子电池;传热;热失控;能量;
  • 入库时间 2022-08-18 21:38:42

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