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Design, fabrication and verification of a novel auxetic microstructure using topology optimization

机译:使用拓扑优化设计,制造和验证新型辅助微观结构

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This research presents a numerical method to design a two-dimensional auxetic microstructure with negative Poisson’s ratios. The method is established by combining the finite element method (FEM) with two different optimization procedures called bi-directional evolutionary structural optimization (BESO) and solid isotropic material with penalization (SIMP), respectively. The results show that by choosing any of the two methods of optimization (FEM and BESO or FEM and SIMP), each with a different objective function, it is possible to create microstructures that show negative Poisson’s ratio. In addition, there is a significant resemblance between the results of both optimization methodologies. The final part of this study is to verify the outcome of optimization, both numerically and experimentally using three-dimensional (3D) printing techniques.
机译:该研究介绍了设计具有负泊松比率的二维辅助微观结构的数值方法。 通过将有限元方法(FEM)与两个不同优化过程的有限元方法(FEM)组合,分别与惩罚(SIMP)分别与双向进化结构优化(BESO)和固体各向同性材料的两种不同优化程序相结合来建立该方法。 结果表明,通过选择各种优化(FEAR和FASO或FEM和SIMP)中的任何一种,每个方法具有不同的目标函数,可以创建显示负泊松比的微结构。 此外,两种优化方法的结果之间存在显着的相似之处。 本研究的最后一部分是使用三维(3D)印刷技术进行数值和实验的优化结果。

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