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首页> 外文期刊>Computer Modeling in Engineering & Sciences >A Generalized Kelvin Solution Based BEM for Contact Problems of Elastic Indenter on Functionally Graded Materials
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A Generalized Kelvin Solution Based BEM for Contact Problems of Elastic Indenter on Functionally Graded Materials

机译:基于通用开尔文解决方案的BEM解决功能梯度材料上弹性压头的接触问题

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This paper presents a three-dimensional boundary element method for contact problems of an elastic indenter on the surface of functionally graded materials (FGMs). The FGM elastic properties can have any irregular variations with depth. The indenter is subjected to the loading normal to the flat contact surface. The classical Kelvin solution is used for the mathematical formulation of the homogeneous elastic indenter. The generalized Kelvin solution is used for the mathematical formulation of the FGM base. The contact variables are defined with respect to each of the surfaces using local coordinate systems. The corresponding contact equations are used to couple the two sets of the linear equation systems for the indenter and the FGM. The numerical verifications illustrate that the proposed method can obtain accurate results for the contact displacement and stress. Numerical results for an elastic rectangular plate centrically or eccentrically indenting a FGM of actual depth variation property are presented and analyzed.
机译:本文针对功能梯度材料(FGM)表面弹性压头的接触问题提出了一种三维边界元方法。 FGM的弹性可以随深度有任何不规则的变化。压头承受垂直于平坦接触表面的载荷。经典的Kelvin解决方案用于均质弹性压头的数学表示。广义的Kelvin解用于FGM基数的数学公式化。使用局部坐标系针对每个表面定义接触变量。相应的接触方程式用于耦合压头和FGM的两组线性方程组。数值验证表明,所提出的方法可以获得准确的接触位移和应力结果。给出并分析了弹性矩形板在中心或偏心处压入实际深度变化特性的FGM的数值结果。

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