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A Novel Modeling Platform for Characterization and Optimal Design of Micro-Architected Materials

机译:微型架构材料表征和最优设计的新型建模平台

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Recent advances in multi-scale manufacturing enable fabrication of hollow-truss based lattices with dimensional control spanning seven orders of magnitude in length scale (from ~50nm to ~10cm), offering tremendous potential for multifunctionality. Topology optimization is essential to realize the full potential of these micro-architected materials. This paper presents a novel optimal design and modeling platform, consisting of four interconnected tools: (i) a geometric modeling algorithm; (ii) a meshing algorithm; (iii) an optimal design code; and (iv) a communication interface with a commercial Finite Elements program (Abaqus). The powerfulness of the proposed platform is demonstrated for the optimization of specific stiffness in pyramidal hollow micro-lattices.
机译:多尺寸制造的最新进展使得空心桁架的格子制造具有尺寸控制的尺寸控制,长度尺度(从〜50nm至10cm),提供多功能性的巨大潜力。拓扑优化对于实现这些微架构材料的全部潜力至关重要。本文提出了一种新颖的最优设计和建模平台,包括四种互连工具:(i)一种几何建模算法; (ii)一种网格化算法; (iii)最佳设计代码; (iv)具有商业有限元项目(ABAQUS)的通信接口。所提出的平台的强大性得到证明了金字塔空心微晶中的特定刚度优化。

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