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THREE-DIMENSIONAL VORONOI AND MULTIGRID MODEL FOR MICROSTRUCTURE CONTACT PROBLEM

机译:微观结构接触问题的三维VORONI和多重网格模型

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The prediction of both the tribological behaviour and mechanical analysis of the wear resistance are still of great research interest in order to improve the lifetime of material surfaces. This concerns both bulk and coated materials although coating processes have been often developed in order to protect substrates from tribological solicitations. The wear resistance of coated materials has been the subject of many studies which show that it is possible to protect and improve significantly the durability of substrates. A straightforward discretisation of the multi-scale problem of graded coatings on substrates exceed the memory and CPU capacity of current (and next generation) computers. The authors have proposed an efficient numerical model that can handle this multi-scale problem: using billion points and locally refined grids.
机译:为了提高材料表面的寿命,摩擦学行为的预测和耐磨性的力学分析仍然具有很大的研究兴趣。尽管通常已经开发了涂层工艺以保护基材免受摩擦拉动,但是这既涉及散装材料也涉及涂覆的材料。涂层材料的耐磨性已成为许多研究的主题,这些研究表明可以保护和显着提高基材的耐久性。基板上渐变涂层的多尺度问题的直接离散化超过了当前(和下一代)计算机的内存和CPU容量。作者提出了一种可以处理这个多尺度问题的有效数值模型:使用十亿个点和局部精炼的网格。

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