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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Phase field modeling of chemomechanical fracture of intercalation electrodes: Role of charging rate and dimensionality
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Phase field modeling of chemomechanical fracture of intercalation electrodes: Role of charging rate and dimensionality

机译:插入电极化学机械断裂的相场建模:充电速率和尺寸的作用

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We investigate the fracture of Li-ion battery cathodic particles using a thermodynamically consistent phase-field approach that can describe arbitrarily complex crack paths and captures the full coupling between Li-ion diffusion, stress, and fracture. Building on earlier studies that introduced the concept of electrochemical shock, we use this approach to quantify the relationships between stable or unstable crack propagation, flaw size, and Crate for 2D disks and 3D spherical particles. We find that over an intermediate range of flaw sizes, the critical flaw size for the onset of crack propagation depends on charging rate as an approximate power-law that we derive analytically. This scaling law is quantified in 2D by exhaustive simulations and is also supported by 3D simulations. In addition, our results reveal a significant difference between 2D and 3D geometries. In 2D, cracks propagate deep inside the particle in a rectilinear manner while in 3D they propagate peripherally on the surface and bifurcate into daughter cracks, thereby limiting inward penetration and giving rise to complex crack geometries. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们使用热力学一致的相场方法研究锂离子电池阴极颗粒的断裂,该方法可以描述任意复杂的裂纹路径,并捕获锂离子扩散,应力和断裂之间的完全耦合。在引入电化学冲击概念的早期研究的基础上,我们使用这种方法来量化2D磁盘和3D球形颗粒的稳定或不稳定裂纹扩展,缺陷尺寸和板条箱之间的关系。我们发现在裂纹尺寸的中间范围内,裂纹扩展开始的临界裂纹尺寸取决于充电速率,这是我们通过分析得出的近似幂律。该缩放定律通过穷举模拟在2D中进行量化,并且也得到3D模拟的支持。此外,我们的结果表明2D和3D几何之间存在显着差异。在2D中,裂纹以直线方式深深地传播到粒子内部,而在3D中,裂纹在表面上沿外围传播并分叉成子裂纹,从而限制了向内的渗透并产生了复杂的裂纹几何形状。 (C)2019 Elsevier Ltd.保留所有权利。

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