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Stress-driven evolution of waviness in an elastic layer

机译:应力驱动弹性层中波纹度的演变

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摘要

The effect of a far-field tensile stress on surface evolution of an elastic layer deposited on a rigid cylindrical substrate is analyzed by using the linear perturbation theory and frictionless contact condition between the elastic layer and the substrate. The driving force controlling the surface evolution is the gradient of chemical potential associated with surface energy and the stored strain energy in the elastic layer. A new expression of dispersion relation is derived, which depends on geometrical configuration and elastic properties of the material. It is found that the tensile stress has a significant effect on destabilizing surface evolution. Closed-form solution of the critical spatial frequency of surface perturbations for the zero growth rate is obtained. The critical frequency is proportional to the tensile stress and inversely proportional to the square root of the film thickness for elastic thin films deposited on planar rigid substrate.
机译:利用线性摄动理论和弹性层与基底之间的无摩擦接触条件,分析了远场拉应力对沉积在刚性圆柱基底上的弹性层表面演变的影响。控制表面演变的驱动力是与表面能和弹性层中存储的应变能相关的化学势的梯度。导出了色散关系的新表达式,它取决于材料的几何构型和弹性特性。发现拉应力对破坏稳定的表面演变具有显着影响。获得了零增长率下表面扰动临界空间频率的闭式解。对于沉积在平面刚性基板上的弹性薄膜,临界频率与拉伸应力成比例,与膜厚度的平方根成反比。

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