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Novel 18650 lithium-ion battery surrogate cell design with anisotropic thermophysical properties for studying failure events

机译:具有各向异性的新型18650锂离子电池替代电池设计 用于研究失效事件的热物理性质

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摘要

Cylindrical 18650-type surrogate cells were designed and fabricated to mimic the thermophysical properties and behavior of active lithium-ion batteries. An internal jelly roll geometry consisting of alternating stainless steel and mica layers was created, and numerous techniques were used to estimate thermophysical properties. Surrogate cell density was measured to be 1593 ± 30 kg/m3, and heat capacity was found to be 727 ± 18 J/kg-K. Axial thermal conductivity was determined to be 5.1 ± 0.6 W/m- K, which was over an order of magnitude higher than radial thermal conductivity due to jelly roll anisotropy. Radial heating experiments were combined with numerical and analytical solutions to the time-dependent, radial heat conduction equation, and from the numerical method an additional estimate for heat capacity of 805 ± 23 J/kg-K was found. Using both heat capacities and analysis techniques, values for radial thermal conductivity were between 0.120 and 0.197 W/m-K. Under normal operating conditions, relatively low radial temperature distributions were observed; however, during extreme battery failure with a hexagonal cell package, instantaneous radial temperature distributions as high as 43-71 degrees C were seen. For a vertical cell package, even during adjacent cell failure, similar homogeneity in internal temperatures were observed, demonstrating thermal anisotropy.
机译:设计并制造了圆柱形18650型替代电池,以模拟活性锂离子电池的热物理性质和行为。建立了由交替的不锈钢和云母层组成的内部果冻卷几何形状,并使用了许多技术来估算热物理性质。替代细胞密度经测量为1593±30 kg / m3,热容为727±18 J / kg-K。轴向热导率被确定为5.1±0.6W / m-K,由于胶卷的各向异性,其比径向热导率高一个数量级。径向加热实验与数值和解析解相结合,得出了随时间变化的径向热传导方程,并从数值方法中得出了热容量为805±23 J / kg-K的附加估计值。使用热容量和分析技术,径向热导率值在0.120和0.197 W / m-K之间。在正常的工作条件下,观察到相对较低的径向温度分布。但是,在六角形电池组的极端电池故障期间,可以看到高达43-71摄氏度的瞬时径向温度分布。对于垂直电池包装,即使在相邻电池故障期间,也观察到内部温度具有相似的均质性,这表明了热各向异性。

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