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Analytical solution of the contact problem of a rigid indenter and an anisotropic linear elastic layer

机译:刚性压头与各向异性线性弹性层接触问题的解析解

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摘要

We use the Stroh formalism to study analytically generalized plane strain deformations of a linear elastic anisotropic layer bonded to a rigid substrate, and indented by a rigid cylindrical indenter. The mixed boundary-value problem is challenging since the a priori unknown deformed indented surface of the layer contacting the rigid cylinder is to be determined as a part of the solution of the problem. For a rigid parabolic prismatic indenter contacting either an isotropic layer or an orthotropic layer and a flat rigid punch indenting a half space, the computed solutions are found to agree well with those available in the literature. Parametric studies have been conducted to delimit the length and the thickness of the layer for which the derived relation between the axial load and the indentation depth caused by the rigid cylinder is valid. The indentation of a face centered cubic crystal with the plane of indentation oriented differently from the principal planes of symmetry has also been studied to illustrate the applicability of the technique to general layers made of anisotropic materials. Results presented herein can serve as benchmarks with which to compare solutions obtained by other methods.
机译:我们使用Stroh形式主义来研究键合到刚性基板上并由刚性圆柱压头压痕的线性弹性各向异性层的解析化广义平面应变变形。混合边界值问题是有挑战性的,因为与刚性圆柱体接触的层的先验未知的变形凹入表面将被确定为该问题的解决方案的一部分。对于接触各向同性层或正交各向异性层的刚性抛物柱面压头以及压入半空间的平坦刚性冲头,发现计算出的解与文献中提供的解非常吻合。已经进行了参数研究来限定层的长度和厚度,对于该层,轴向载荷与由刚性圆柱体引起的压痕深度之间的推导关系是有效的。还研究了面心立方晶体的压痕,压痕的平面与对称主平面的取向不同,以说明该技术对各向异性材料制成的普通层的适用性。本文介绍的结果可以用作基准,与其他方法获得的溶液进行比较。

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