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Optimum structure with homogeneous optimum truss-like material

机译:具有均匀的最佳桁架状材料的最佳结构

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摘要

This paper presents a concurrent topology optimization method to simultaneously achieve the optimum structure and material micro-structure for minimum system compliance. Microstructure is assumed to be uniform in macro-scale to meet manufacturing requirements. Design variables for structure and material microstructure are independently defined and then integrated into one system with the help of homogenization theory. Penalization approaches are adopted in both scales to ensure clear topologies, i.e. SIMP (Solid Isotropic Material with Penalization) in micro-scale and PAMP (Porous Anisotropic Material with Penalization) in macro-scale. Numerical experiments for two examples validate the proposed method and also demonstrate the superiority of truss-like materials.
机译:本文提出了一种并行拓扑优化方法,可以同时实现最佳的结构和材料的微观结构,以最小化系统的兼容性。假定微观结构在宏观上是一致的,以满足制造要求。结构和材料微观结构的设计变量是独立定义的,然后借助均化理论将其集成到一个系统中。在两种规模中均采用惩罚方法来确保清晰的拓扑结构,即在微观规模上使用SIMP(带有惩罚的固体各向同性材料),在宏观规模上采用PAMP(带有惩罚的多孔各向异性材料)。通过两个例子的数值实验验证了所提方法的有效性,并证明了类桁架材料的优越性。

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