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ELASTIC-VISCOPLASTIC MECHANICS OF LITHIUM IN A STANDARD DRY ROOM

机译:标准干燥室中锂的弹性粘塑机制

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In electrochemical-mechanical modeling of solid-state batteries, there is a lack of understanding of the mechanical parameters and mode of deformation of lithium metal. Understanding these characteristics is crucial for predicting the propagation of lithium dendrites through the electrolyte - a key element of battery safety. Past theories have assumed linear elastic as well as elastic-plastic deformation of lithium. However, recent experiments show that the primary mode of deformation is creep. This study replicates the temperature dependent mechanical experiments but inside an industrial dry room, where battery cells are manufactured at high volume. Furthermore, this work conducts time dependent studies-also inside the dry room-to gain insight of the large deformation theories of lithium metal. The results confirm the activation energy, which dictates the creep mechanism, is correlated to core diffusion rather than lattice diffusion.
机译:在固态电池的电化学 - 机械建模中,缺乏了解锂金属的机械参数和变形模式。 理解这些特征对于通过电解质预测锂枝晶的传播至关重要 - 电池安全的关键元件。 过去的理论已经假定了锂的线性弹性以及弹性塑性变形。 然而,最近的实验表明,主要变形模式是蠕动。 本研究复制了温度依赖性机械实验,而是在工业干燥室内进行,电池单元以大容量制造。 此外,这项工作在干燥室内进行了时间依赖性研究 - 进入锂金属的大变形理论的洞察力。 结果证实了决定蠕变机制的激活能量与核心扩散相关而不是格子扩散。

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