Advances in Simulation Research for Thermal Runaway of Lithium-Ion Batteries

Ma Xuezhi, Hongrun Zhu, Zhili Xie, Jiechang Zheng, Yuan Beizhe
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引用次数: 1

Abstract

Safety issue is main obstacle for commercialization of high energy density lithium-ion battery. Thermal runaway is the most crucial problem in battery safety research. In order to solve safety problem, a lot of efforts have been made in the research of battery thermal runaway mechanism, thermal stability test, simulation and modeling. Herein, this article provides a review on chemical reaction of thermal runaway and the development of thermal simulation research on lithium battery. Thermal runaway are mainly divided into four types according to reaction mechanism, having different heat-generating behaviors. Researchers can reduce the cost and time of experiments through modelling of lithium-ion batteries, analyze the key factors of the thermal runaway during charge/discharge process, and improve the structural design and safety of the batteries. Finally, the review prospects the further development of nextgeneration lithiumion batteries.
锂离子电池热失控仿真研究进展
安全问题是高能量密度锂离子电池商业化的主要障碍。热失控是电池安全研究中最关键的问题。为了解决电池的安全性问题,人们在电池热失控机理研究、热稳定性测试、仿真和建模等方面做了大量的工作。本文对锂电池热失控的化学反应及热模拟研究进展进行了综述。根据反应机理的不同,热失控主要分为四种类型,各有不同的产热行为。研究人员可以通过对锂离子电池进行建模,降低实验成本和时间,分析充放电过程中热失控的关键因素,改进电池的结构设计和安全性。最后,对下一代锂离子电池的进一步发展进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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