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首页> 外文期刊>Advances in Engineering Software >The application of drilling degree of freedom to checkerboards in structural topology optimization
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The application of drilling degree of freedom to checkerboards in structural topology optimization

机译:钻孔自由度在棋盘格结构优化中的应用

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摘要

The subject of the paper is to investigate a new way for avoiding the development of checkerboard patterns in structural topology optimization, using an additional in-plane rotational freedom. The efficiency of a few, from the many existing formulations, with differing complexity are put into comparison, such as the standard 4 noded bilinear element, the Allman-type solution, the shell element from SAP2000 and finally an element constructed on the basis of micropolar theory. Since the emergence of checkerboarded regions is a general phenomenon, the optimization problem is as simple as possible, being a weight minimization with a compliance constraint, solved with the optimality criteria method and a FEM discretization of the design domain.
机译:本文的主题是研究使用额外的平面内旋转自由度来避免在结构拓扑优化中棋盘格图案发展的新方法。比较了许多现有配方中几种效率不同,复杂度不同的效率,例如标准的4节点双线性单元,Allman型解,SAP2000的壳单元,最后是基于微极性构造的单元理论。由于棋盘格区域的出现是普遍现象,因此优化问题尽可能地简单,即具有顺应性约束的权重最小化,可以通过最优准则方法和设计域的FEM离散化来解决。

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