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Stress-based shape and topology optimization with the level set method

机译:水平集方法基于应力的形状和拓扑优化

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AbstractThis paper proposes a level set method to solve minimum stress and stress-constrained shape and topology optimization problems. The method solves a sub-optimization problem every iteration to obtain optimal boundary velocities. Ap-norm stress functional is used to aggregate stresses in a single constraint. The shape sensitivity function is derived and a computational procedure based on a least squares interpolation approach is devised in order to compute sensitivities at the boundaries. Adaptive constraint scaling is used to enforce exact control of stress limits. Numerical results show that the method is able to solve the problem efficiently for single and multiple load cases obtaining solutions with smooth boundaries.HighlightsTopology optimization is applied to stress-based structural design problems.Shape sensitivities and the level set method are used.Stress minimization, stress constraints and multiple load cases and stress criteria are considered.A p-norm function is used as stress constraints aggregation.
机译: 摘要 本文提出了一种水平集方法来解决最小应力以及应力约束形状和拓扑优化问题。该方法每次迭代都解决了次优化问题,以获得最佳边界速度。 A p 范数应力函数用于在单个约束条件中聚集应力。导出形状敏感度函数,并设计基于最小二乘内插法的计算程序,以计算边界处的敏感度。自适应约束缩放用于强制控制应力极限。数值结果表明,该方法能够有效地解决单载荷和多载荷工况下获得光滑边界的问题。 突出显示 拓扑优化适用于基于应力的结构设计问题。 使用了形状敏感度和级别设置方法。 应力最小化,应力约束和多种载荷工况和str p范函数用作压力约束聚合。

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