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Analysis of diffusion-induced delamination of an elastic-perfectly plastic film on a deformable substrate under potentiostatic operation

机译:在电位操作下可变形基材上弹性完美塑料膜的扩散诱导分层分析

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摘要

Considering the coupling effect between diffusion and stress on diffusion-induced stress presented in a lithium-ion battery, the finite element method is used to analyze the diffusion-induced interfacial delamination of a thin film from a deformable substrate under a potentiostatic condition. Both the film and the substrate are elastic-perfectly plastic, and solute atoms diffuse into the thin film only from top and side surfaces of the thin film. A linear traction-separation law is used to describe the bonding between the film and the substrate. Numerical results show that both the radial stress and the hoop stress in the material near the top surface of the thin film are at a tensile state during lithiation, which can lead to interface damage/delamination and surface cracking concurrently. A film-substrate structure consisting of a substrate with small elastic modulus and yield stress and a thin film of a small film thickness is desirable to inhibit interface damage and delamination.
机译:考虑到锂离子电池中呈现的扩散和应力之间的扩散和应力之间的耦合效应,有限元方法用于在趋弓条件下分析来自可变形基质的薄膜的扩散诱导界面分层。 薄膜和基材都是弹性完美的塑料,并且溶质原子仅从薄膜的顶表面和侧表面扩散到薄膜中。 线性牵引分离法用于描述膜和基材之间的粘合。 数值结果表明,薄膜顶表面附近的材料中的径向应力和箍应力均在锂化期间处于拉伸状态,这可以导致界面损坏/分层和表面开裂。 一种薄膜基板结构,由具有小弹性模量和屈服应力的基板和小膜厚度的薄膜组成,以抑制界面损坏和分层。

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