Stress Analysis for Nano-Scale Elastic Materials : Elastic Contact Problems Considering Surface Stresses

H. Koguchi
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引用次数: 5

Abstract

It is known that intrinsic mechanical stress exists in a general free surface or interface, because of surface atomic structure changes relative to the bulk. We present an analysis of using the interrelationship between surface stresses, free surface and volume stress deduced in our previous paper. The surface stresses are closely related to the surface energy and surface geometry (mean curvature) of materials. In the present paper, an elastic contact problem in which an axisymmetric elastic body is pressed into an elastic half-region coated with a thin elastic film is analyzed using the three-dimensional theory of elasticity. In this analysis, the relevant dimensionless parameter, called the elastic capillary number, which is a function of surface energy, elastic modulus and the film thickness, is introduced. It is shown that the elastic modulus of the thin film apparently increases and the bulk stress also increases when the surface stresses are taken into account.
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纳米尺度弹性材料的应力分析:考虑表面应力的弹性接触问题
由于表面原子结构相对于体的变化,在一般的自由表面或界面中存在固有的机械应力。我们利用我们在前一篇文章中推导出的表面应力、自由表面和体积应力之间的相互关系进行了分析。表面应力与材料的表面能和表面几何形状(平均曲率)密切相关。本文用三维弹性理论分析了轴对称弹性体被压入覆盖有弹性薄膜的弹性半区域的弹性接触问题。在此分析中,引入了相关的无量纲参数,即弹性毛细数,它是表面能、弹性模量和薄膜厚度的函数。结果表明,当考虑表面应力时,薄膜的弹性模量明显增大,体应力也随之增大。
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