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Stress-constrained topology optimization considering uniform manufacturing uncertainties

机译:考虑统一制造不确定性的应力约束拓扑优化

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摘要

This paper proposes a robust design approach, based on eroded, intermediate and dilated projections, to handle uniform manufacturing uncertainties in stress-constrained topology optimization. In addition, a simple scheme is proposed to increase accuracy of stress evaluation at jagged edges, based on limiting sharpness of the projections to intentionally allow a thin layer of intermediate material between solid and void phases. A reference problem is analyzed through voxel-based finite element models, demonstrating that, in association with a proper choice of stiffness and stress interpolation functions, the proposed scheme can ensure consistent stress magnitude and smooth stress behavior for uniform boundary variation. Optimization problems are solved and post-processing with body-fitted meshes is performed over optimized solutions, demonstrating that: (1) stresses evaluated with voxel-based meshes containing thin soft transition boundaries are consistent with stresses evaluated with body-fitted meshes; and (2) optimized structures are robust with respect to uniform boundary variations. (C) 2018 Elsevier B.Y. All rights reserved.
机译:本文提出了一种基于腐蚀,中间和膨胀投影的稳健设计方法,以处理应力受限拓扑优化中的统一制造不确定性。另外,基于限制突起的清晰度以有意允许固相和空隙相之间的中间材料薄层,提出了一种简单的方案来提高锯齿状边缘处应力评估的准确性。通过基于体素的有限元模型分析了一个参考问题,表明与适当选择的刚度和应力插值函数相关联,所提出的方案可以确保一致的应力幅度和平滑的应力行为,以实现均匀的边界变化。解决了优化问题,并通过优化后的解决方案对贴身网格进行了后处理,这表明:(1)包含薄软过渡边界的基于体素的网格评估的应力与贴身网格评估的应力一致; (2)优化的结构对于均匀的边界变化具有鲁棒性。 (C)2018年Elsevier B.Y.版权所有。

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