回顾锂离子电池因机械负载而产生的内部变化

Maria Cortada-Torbellino, D. Elvira, A. El Aroudi, Hugo Valderrama-Blavi
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摘要

电动汽车(EV)的发展促使人们需要提高锂离子电池(LIB)的技术,以改善其在受到外部因素影响时的反应,这些因素会改变电池的性能,从而影响其安全性和效率。机械滥用被认为是锂离子电池失效的主要原因之一,因为它会改变电池的结构完整性。因此,本文旨在根据对锂电池进行滥用测试的不同实验室测试结果,回顾加剧机械负载影响的主要因素。本文收集了不同类型电池在不同机械负载下的测试结果,以评估锂电池性能的变化以及导致其失效和永久损坏的主要机制。机械滥用的主要后果是增加锂电池的降解和形成内部短路(ISC)和热跑道(TR)等事件。随后,还回顾了在机械滥用条件下对锂电池进行评估的一系列标准和规定。
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Review of Lithium-Ion Battery Internal Changes Due to Mechanical Loading
The growth of electric vehicles (EVs) has prompted the need to enhance the technology of lithium-ion batteries (LIBs) in order to improve their response when subjected to external factors that can alter their performance, thereby affecting their safety and efficiency. Mechanical abuse has been considered one of the major sources of LIB failure due to the changes it provokes in the structural integrity of cells. Therefore, this article aims to review the main factors that aggravate the effects of mechanical loading based on the results of different laboratory tests that subjected LIBs to abusive testing. The results of different cell types tested under different mechanical loadings have been gathered in order to assess the changes in LIB properties and the main mechanisms responsible for their failure and permanent damage. The main consequences of mechanical abuse are the increase in LIB degradation and the formation of events such as internal short circuits (ISCs) and thermal runways (TRs). Then, a set of standards and regulations that evaluate the LIB under mechanical abuse conditions are also reviewed.
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