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Shape feature control in structural topology optimization

机译:结构拓扑优化中的形状特征控制

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摘要

A variational approach to shape feature control in topology optimization is presented in this paper. The method is based on a new class of surface energies known as higher-order energies as opposed to the conventional energies for problem regularization, which are linear. In employing a quadratic energy functional in the objective of the topology optimization, non-trivial interactions between different points on the structural boundary are introduced, thus favoring a family of shapes with strip-like (or beam) features. In addition, the quadratic energy functional can be seamlessly integrated into the level set framework that represents the geometry of the structure implicitly. The shape gradient of the quadratic energy functional is fully derived in the paper, and it is incorporated in the level set approach for topology optimization. The approach is demonstrated with benchmark examples of structure optimization and compliant mechanism design. The results presented show that this method is capable of generating strip-like (or beam) designs with specified feature width, which have highly desirable characteristics and practical benefits and uniquely distinguish the proposed method.
机译:提出了一种拓扑优化中形状特征控制的变分方法。该方法基于一类新的表面能,称为高阶能,与用于问题正则化的常规线性能相反。在以拓扑优化为目标的二次函数函数中,引入了结构边界上不同点之间的非平凡交互作用,因此有利于具有带状(或梁形)特征的形状族。此外,二次能函数可以无缝集成到水平集框架中,该框架隐式表示结构的几何形状。本文充分推导了二次能量函数的形状梯度,并将其合并到用于拓扑优化的水平集方法中。通过结构优化和兼容机制设计的基准示例演示了该方法。给出的结果表明,该方法能够生成具有指定特征宽度的带状(或梁形)设计,这些设计具有非常理想的特性和实用优势,并且能够与众不同。

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