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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Modeling the Electrical Conductive Paths within All-Solid-State Battery Electrodes
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Modeling the Electrical Conductive Paths within All-Solid-State Battery Electrodes

机译:在全固态电池电极内建模导电路径

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摘要

All-solid-state batteries constitute a very promising energy storage device. Two very important properties of these battery cells are the ionic and the electrical conductivity, which describe the ion and the electron transport through the electrodes, respectively. In this work, a numerical method is presented to model the electrical conductivity, considering the outcome of discrete-element method simulations and the intrinsic conductivities of both the active material particles and the conductive additive particles. The results are calibrated and validated with the help of experimental data of real manufactured electrodes. The tortuosity, which strongly influences the ionic conductivity, is also presented for the analyzed electrodes, taking their microstructure into account.
机译:全固态电池构成非常有前途的能量存储装置。 这些电池单元的两个非常重要的性质是离子和导电性,其分别描述了通过电极的离子和电子传输。 在这项工作中,考虑了考虑离散元素方法模拟的结果和活性材料颗粒和导电添加剂颗粒的内在电导率来模拟电导率的数值方法。 借助真实制造电极的实验数据校准并验证结果。 还介绍了对分析的电极产生了强烈影响离子电导率的曲折性,以考虑它们的微观结构。

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