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An efficient approximate numerical method for modeling contact of materials with distributed inhomogeneities

机译:一种有效的近似数值方法,用于建模具有分布不均匀性的材料的接触

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摘要

This research explores the influence of distributed non-interpenetrating inhomogeneities on the contact of inhomogeneous materials via a new efficient numerical model based on Eshelby's Equivalent Inclusion Method. The half-space contact of a sphere with an inhomogeneous material is considered, and the solutions take into account interactions between all inhomogeneities. The efficiency and solution accuracy of the proposed method are demonstrated through comparative studies with those of an existing numerical method and the finite element method. The influence of spatial inhomogeneity orientations on the contact elastic field is investigated and parametric studies are conducted for the effect of arbitrarily distributed inhomogeneities on the stress field of the materials. The significance of the influences of inhomogeneity distribution parameters on the inverse volumetric stress integral is quantified and the corresponding data are fitted into selected several formulas as a step towards understanding the rolling contact fatigue life of the materials.
机译:本研究通过基于Eshelby等效夹杂法的新型有效数值模型,探索了分布不互穿的不均匀性对不均匀材料接触的影响。考虑了球与不均匀材料的半空间接触,并且解决方案考虑了所有不均匀性之间的相互作用。通过与现有数值方法和有限元方法的比较研究,证明了该方法的效率和求解精度。研究了空间不均匀取向对接触弹性场的影响,并进行了参数研究,以研究任意分布的不均匀性对材料应力场的影响。量化了不均匀分布参数对体积反应力积分的影响的重要性,并将相应的数据拟合到选定的几个公式中,以逐步了解材料的滚动接触疲劳寿命。

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