Experimental investigation on the combustion characteristics of electrolyte jets containing flame retardant tris (2-chloroethyl) phosphate

Jie Zhou, Hui-Sheng Peng, Dong Zheng
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Abstract

It is critical to well understand the combustion characteristics of the electrolytes inside lithium-ion batteries for safety concerns, particularly the electrolyte jet flames after thermal runaway. An electrolyte jet fire setup is developed in this study to investigate the combustion characteristics of electrolyte jets with the flame-retardant additive tris (2-chloroethyl) phosphate (TCEP) under high-temperature circumstances. Jet and ignition delay times and flammability are defined to characterize the flame-retardant effects. The fundamental parameters of self-extinguishing time and propagation rate are also measured for a comprehensive comparison. The experimental results show that the propagation of electrolyte flame at ambient temperature can be entirely stopped with 40 wt % of TCEP additives and 50 wt % can make the electrolyte nonflammable. Owing to the high boiling temperature and vaporization enthalpy of TCEP, more heat is required for the decomposition of electrolytes and TCEP mixtures, resulting in lower decomposition reaction rates and heat release rates. Thus, both the jet delay times and the ignition delay times significantly increase with the TCEP additives. Moreover, analyses on the spectrum of electrolyte jet flame reveal that the suppressing effects of TCEP on the combustion of electrolyte jets are operated by scavenging the OH radical and heat release.
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对含有阻燃剂磷酸三(2-氯乙基)酯的电解质喷流燃烧特性的实验研究
出于安全考虑,充分了解锂离子电池内部电解液的燃烧特性至关重要,尤其是热失控后的电解液喷射火焰。本研究开发了一种电解质喷射火焰装置,用于研究含有阻燃添加剂磷酸三(2-氯乙基)酯(TCEP)的电解质喷射在高温环境下的燃烧特性。定义了喷射和点火延迟时间以及可燃性,以描述阻燃效果。此外,还测量了自熄时间和传播速度等基本参数,以进行综合比较。实验结果表明,40 wt % 的 TCEP 添加剂可完全阻止电解液火焰在环境温度下的传播,50 wt % 的 TCEP 添加剂可使电解液不易燃。由于 TCEP 的沸点温度和汽化焓较高,电解质和 TCEP 混合物的分解需要更多的热量,导致分解反应速率和热量释放速率较低。因此,喷射延迟时间和点火延迟时间都会随着 TCEP 添加剂的加入而显著增加。此外,对电解质喷射火焰光谱的分析表明,TCEP 对电解质喷射燃烧的抑制作用是通过清除 OH 自由基和释放热量来实现的。
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