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An evolutionary shape optimization for elastic contact problems subject to multiple load cases

机译:多种载荷情况下弹性接触问题的演化形状优化

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Most structures in the real life are subject to multiple load cases. This paper aims at extending the evolutionary structural optimization (ESO) algorithm to optimal contact shape design for elastic bodies under the multiple load cases. To evaluate the reference stresses of each contact node in a finite element framework, an extreme stress criterion (the worst case design) and a weighted average criterion (Pareto design) are presented. In the extreme stress method, the highest nodal contact stress under all load cases is adopted as the reference level. In the weighted average method, the weighted sum of nodal contact stresses over all the load cases is regarded as the reference. It is found that these two criteria can produce different results. In this paper, the examples are presented to demonstrate some new features of contact shape optimization in the presence of the multiple load cases.
机译:现实生活中的大多数结构都会承受多种载荷情况。本文旨在将演化结构优化(ESO)算法扩展到多种载荷情况下弹性体的最佳接触形状设计。为了评估有限元框架中每个接触节点的参考应力,提出了极限应力准则(最坏情况设计)和加权平均准则(帕累托设计)。在极限应力法中,采用所有载荷情况下的最高节点接触应力作为参考水平。在加权平均法中,将所有载荷工况下的节点接触应力的加权总和作为参考。发现这两个标准可以产生不同的结果。在本文中,提供了示例以说明在多种载荷情况下接触形状优化的一些新功能。

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