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Statistical Models of Rough Surfaces for Finite Element 3D-Contact Analysis

机译:有限元3D接触分析的粗糙表面统计模型

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摘要

The present study is divided in two parts. In the first one the complete elasto-plastic microcontact model of anisotropic rough surfaces is given. Rough surfaces are modelled as a random process in which the height of the surface is considered to be a two-dimensional random variable. It is assumed that the surface is statistically homogeneous. The description of anisotropic random surfaces is concentrated on strongly rough surfaces; for such surfaces the summits are represented by highly eccentric elliptic paraboloids. The model is based on the volume conservation of asperities with the plasticity index modified to suit more general geometric contact shapes during plastic deformation process. This model is utilized to determine the total contact area, contact load and contact stiffness which are a combination of the elastic, elasto-plastic and plastic components. The elastic and elasto-plastic stiffness coefficients decrease with increasing variance of the surface height about the mean plane. The standard deviation of slopes and standard deviation of curvatures have no observable effects on the normal contact stiffness. The part two deals with the solution of the fully three-dimensional contact/friction problem taking into account contact stiffnesses in the normal and tangential directions. An incremental non-associated hardening friction law model analogous to the classical theory of plasticity is used. Two numerical examples are selected to show applicability of the method proposed.
机译:本研究分为两个部分。在第一个中,给出了各向异性粗糙表面的完整弹塑性微接触模型。粗糙表面被建模为随机过程,其中表面的高度被认为是二维随机变量。假定表面在统计上是均匀的。各向异性随机表面的描述集中在非常粗糙的表面上。对于这样的表面,顶点由高度偏心的椭圆抛物面表示。该模型基于粗糙体的体积守恒性,并修改了塑性指数以适应塑性变形过程中更一般的几何接触形状。该模型用于确定总接触面积,接触载荷和接触刚度,它们是弹性,弹塑性和塑性组件的组合。弹性刚度系数和弹塑性刚度系数随着围绕平均平面的表面高度变化的增加而减小。斜率的标准偏差和曲率的标准偏差对法向接触刚度没有明显影响。第二部分考虑了法向和切向的接触刚度,解决了完全三维接触/摩擦问题。使用类似于经典可塑性理论的增量非关联硬化摩擦定律模型。选择两个数值示例来说明所提出方法的适用性。

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  • 来源
    《Archives of Computational Methods in Engineering》 |2009年第4期|p.399-424|共26页
  • 作者单位

    Maritime University of Szczecin, Division of Computer Methods, H. Poboznego 11, 70-507 Szczecin, Poland;

    Institute of Fundamental Technological Research, Polish Academy of Sciences, Pawinskiego 5B, 02-106 Warsaw, Poland;

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