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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Insights Into Lithium-Ion Battery Degradation and Safety Mechanisms From Mesoscale Simulations Using Experimentally Reconstructed Mesostructures
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Insights Into Lithium-Ion Battery Degradation and Safety Mechanisms From Mesoscale Simulations Using Experimentally Reconstructed Mesostructures

机译:使用实验重构的介观结构从中尺度模拟中洞悉锂离子电池的降解和安全机制

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摘要

Battery performance, while observed at the macroscale, is primarily governed by the bicontinuous mesoscale network of the active particles and a polymeric conductive binder in its electrodes. Manufacturing processes affect this mesostructure, and therefore battery performance, in ways that are not always clear outside of empirical relationships. Directly studying the role of the mesostructure is difficult due to the small particle sizes (a few microns) and large mesoscale structures. Mesoscale simulation, however, is an emerging technique that allows the investigation into how particle-scale phenomena affect electrode behavior. In this manuscript, we discuss our computational approach for modeling electrochemical, mechanical, and thermal phenomena of lithium-ion batteries at the mesoscale. We review our recent and ongoing simulation investigations and discuss a path forward for additional simulation insights.
机译:在宏观上观察时,电池性能主要由活性颗粒和电极中的聚合物导电粘合剂的双连续中尺度网络决定。制造过程会以这种在经验关系之外并不总是清楚的方式影响这种介观结构,从而影响电池性能。由于小粒径(几微米)和大尺度结构,直接研究介观结构的作用是困难的。但是,中尺度模拟是一种新兴技术,它可以研究粒子尺度现象如何影响电极性能。在本手稿中,我们讨论了在中尺度下对锂离子电池的电化学,机械和热现象进行建模的计算方法。我们回顾了我们最近和正在进行的仿真研究,并讨论了获得更多仿真见解的途径。

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