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Structural topology optimization with implicit design variable-optimality and algorithm

机译:具有隐式设计变量优化和算法的结构拓扑优化

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This paper presents a novel formulation for structural topology optimization in which both cost function and constraints are expressed in terms of an implicit design variable-the iso-line/surface threshold of a characteristic response function, such as a strain or mutual strain energy density function. A new material representation model is developed to implicitly describe material usage in a given design domain in terms of one implicit design variable. Based on the Karush-Kuhn-Tucker (KKT) necessary conditions, optimality criteria for finding solutions are established and then employed to develop a simple algorithm for one-material minimum mean compliance and compliant mechanism problems. The algorithm consists of sequentially moving iso-surface threshold (MIST) of chosen characteristic response function. Numerical examples are then presented to validate the proposed algorithm MIST for the minimum mean compliance, compliant mechanism, and fully stressed design problems.
机译:本文提出了一种用于结构拓扑优化的新颖公式,其中成本函数和约束都以隐式设计变量(特征响应函数的等值线/表面阈值)表示,例如特征应变或互应变能量密度函数。开发了一种新的材料表示模型,以根据一个隐式设计变量隐式描述给定设计域中的材料使用情况。基于Karush-Kuhn-Tucker(KKT)必要条件,建立了寻找解决方案的最优标准,然后将其用于开发一种针对单一材料最小均值顺应性和顺应性机制问题的简单算法。该算法由所选特征响应函数的顺序移动等值线阈值(MIST)组成。然后提供了数值示例,以验证所提出的算法MIST的最小均值顺应性,顺应性机制以及完全受压的设计问题。

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