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FINITE ELEMENT MODELING OF THE ELASTIC-PLASTIC CONTACT BETWEEN TWO ROUGH SURFACES

机译:两个粗糙表面之间的弹塑性接触的有限元建模

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In order to investigate the complex contact behaviors of micro-rough interfaces, this paper proposed a novel finite element method (FEM) for simulating the contact between two rough surfaces. The numerical methods for generating Gaussian and non-Gaussian rough surfaces were introduced, and the contact surfaces were produced with given autocorrelation function (ACF) and the first four moments of surface height. Finite element (FE) models were constructed based on the generated rough surfaces, in which 3D structural modeling and meshing strategies were utilized to improve the mesh quality and solution efficiency. A 3D finite element analysis (FEA) was conducted to investigate the contact characteristics including the contact stiffness, real contact area and the contact pressure distribution of rough interfaces. The results of the contacts between two rough surfaces were compared with those of the conventional equivalent contact models in which an equivalent rough surface contacted with a rigid smooth plane. The proposed FEM makes it effective to predicate or evaluate the contact characteristics of the contact of two rough surfaces, and may provide a new way to optimize the design of surface topographies and improve the performances of contact interfaces.
机译:为了研究微粗糙界面的复杂接触行为,本文提出了一种新颖的有限元方法(FEM),用于模拟两个粗糙表面之间的接触。介绍了生成高斯和非高斯粗糙表面的数值方法,并使用给定的自相关函数(ACF)和表面高度的前四个矩来生成接触表面。基于生成的粗糙表面构造有限元(FE)模型,其中使用3D结构建模和网格划分策略来改善网格质量和求解效率。进行了3D有限元分析(FEA),以研究接触特性,包括接触刚度,实际接触面积和粗糙界面的接触压力分布。将两个粗糙表面之间的接触结果与常规等效接触模型的结果进行了比较,在常规等效接触模型中,等效粗糙表面与刚性光滑平面接触。所提出的有限元方法使预测或评估两个粗糙表面接触的接触特性有效,并且可以提供一种优化表面形貌设计并改善接触界面性能的新方法。

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