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Stress-constrained topology optimization for compliant mechanism design

机译:应力约束拓扑优化,用于顺应性机构设计

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摘要

This article presents an application of stress-constrained topology optimization to compliant mechanism design. An output displacement maximization formulation is used, together with the SIMP approach and a projection method to ensure convergence to nearly discrete designs. The maximum stress is approximated using a normalized version of the commonly-used p-norm of the effective von Mises stresses. The usual problems associated with topology optimization for compliant mechanism design: one-node and/or intermediate density hinges are alleviated by the stress constraint. However, it is also shown that the stress constraint alone does not ensure mesh-independency.
机译:本文介绍了应力约束拓扑优化在顺应性机构设计中的应用。使用输出位移最大化公式,以及SIMP方法和投影方法,以确保收敛到几乎离散的设计。使用有效的冯·米塞斯应力的常用p范数的规格化版本来估算最大应力。与顺应性机构设计的拓扑优化相关的常见问题:应力约束缓解了单节点和/或中等密度铰链。但是,还显示出仅应力约束不能确保网格独立性。

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