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Stress optimization of smooth continuum structures based on the distortion strain energy density

机译:基于变形应变能密度的光滑连续体结构应力优化

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This paper presents an evolutionary structural optimization method of designing continuum structures with clear and smooth boundaries for stress minimization. The stress optimization problem is formulated with the P-norm function based on the distortion strain energy density, so as to avoid the stress relaxation and the local nature of the maximum stress. In order to obtain a smooth topology, the surrogate design variables on the volume fraction of elements are defined based on the proportion of solid and void points within an element. Based on sensitivity analysis, topology optimization evolves the structure by gradually decreasing the structural volume to the optimized one with the prescribed volume. 2D and 3D numerical examples are presented and discussed to demonstrate the effectiveness of the proposed topology optimization method for minimizing the maximum stress of continuum structures and alleviating stress concentration. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提出了一种进化的结构优化方法,该方法设计具有清晰且平滑边界的连续结构以最小化应力。应力优化问题是基于变形应变能密度采用P范数函数来表示的,以避免应力松弛和最大应力的局部性。为了获得平滑的拓扑,基于元素内固点和空隙点的比例定义元素体积分数上的替代设计变量。基于敏感性分析,拓扑优化通过逐渐将结构体积减小到具有指定体积的优化结构来演化结构。给出并讨论了2D和3D数值示例,以证明所提出的拓扑优化方法对于最小化连续体结构的最大应力并减轻应力集中的有效性。 (C)2018 Elsevier B.V.保留所有权利。

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