多物理
微尺度化学
材料科学
锂离子电池
电池(电)
多尺度建模
有限元法
机械
纳米技术
机械工程
物理
热力学
化学
工程类
数学教育
计算化学
功率(物理)
数学
作者
Binghe Liu,Xu Wang,Haosen Chen,Sen Chen,Yang Hong-xin,Jun Xu,Hanqing Jiang,Dai-Ning Fang
出处
期刊:Journal of Applied Mechanics
[ASME International]
日期:2019-01-09
卷期号:86 (4)
被引量:39
摘要
The increasing significance on the development of high-performance lithium-ion (Li-ion) batteries is calling for new battery materials, theoretical models, and simulation tools. Lithiation-induced deformation in electrodes calls attention to study the multiphysics coupling between mechanics and electrochemistry. In this paper, a simultaneous multiscale and multiphysics model to study the coupled electrochemistry and mechanics in the continuum battery cell level and the microscale particle level was developed and implemented in comsolmultiphysics. In the continuum scale, the porous electrode theory and the classical mechanics model were applied. In the microscale, the specific particle structure has been incorporated into the model. This model was demonstrated to study the effects of mechanical constraints, charging rate, and silicon/C ratio, on the electrochemical performance. This model provides a powerful tool to perform simultaneous multiscale and multiphysics design on Li-ion batteries, from the particle level to full-cell level.
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