阳极
电化学
阴极
电解质
离子
短路
材料科学
锂(药物)
下降(电信)
化学
电极
分析化学(期刊)
热的
热力学
电压
电气工程
物理
色谱法
物理化学
有机化学
内分泌学
工程类
医学
作者
Weifeng Fang,Premanand Ramadass,Zhengming Zhang
标识
DOI:10.1016/j.jpowsour.2013.10.004
摘要
A 3D (Three-Dimensional) electrochemical-thermal model has been developed to study internal short circuits in a 1 Ah Li-ion cell, which was inspired by the new findings from the controlled internal short tests. Noteworthy difference of the temperature profiles at the short spot were observed between a Anode–Aluminum (current collector) shorting test and a Anode–Cathode shorting test, with the former showing a temperature spike upon incurring short circuit while the later not. Modeling study reveals that the rapid temperature increase observed in the Anode–Aluminum short was the result of high rate discharge while the following sudden temperature drop was due to the lithium transport limitations in the solid and electrolyte phases. By contrast, in the Anode–Cathode short, such limitations were not observed as the discharge rate was much lower. The results of the present study may help design a safer Li-ion cell through the understanding of a specific internal short circuit.
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