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Mathematical model for silicon electrode - Part Ⅰ. 2-d model

机译:硅电极的数学模型-第一部分。二维模型

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This paper presents a 2-dimensional transient numerical model to simulate the electrochemical lithium insertion in a silicon nanowire (Si NW) electrode. The model geometry is a cylindrical Si NW electrode anchored to a copper current collector (Cu CC) substrate. The model solves for diffusion of lithium in Si NW, stress generation in the Si NW due to chemical and elastic strains, stress generation in the Cu CC due to elastic strain, and volume expansion in the Si NW and Cu CC geometries. The evolution of stress components, i.e., radial, axial and tangential stresses in different regions in the Si NW are presented and discussed. The effect of radius of Si NW and lithiation rate, on the maximum stresses developed in the Si NW are also discussed.
机译:本文提出了二维瞬态数值模型,以模拟电化学锂插入硅纳米线(Si NW)电极中。模型的几何形状是固定在铜集电器(Cu CC)基板上的圆柱形Si NW电极。该模型解决了锂在Si NW中的扩散,由于化学和弹性应变在Si NW中产生的应力,由于弹性应变在Cu CC中产生的应力以及在Si NW和Cu CC几何形状中的体积膨胀的问题。介绍并讨论了应力分量的演变,即Si NW中不同区域的径向,轴向和切向应力。还讨论了Si NW的半径和锂化速率对Si NW中产生的最大应力的影响。

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