拓扑优化
拓扑(电路)
格子(音乐)
计算
均质化(气候)
参数化设计
刚度
参数统计
数学优化
计算机科学
离散空间
算法
有限元法
数学
工程类
结构工程
数学分析
物理
统计
组合数学
声学
生物
生物多样性
生态学
作者
Yuan Liu,Shurong Zhuo,Yining Xiao,Guolei Zheng,Guoying Dong,Yaoyao Fiona Zhao
摘要
Abstract Lightweight lattice structure generation and topology optimization (TO) are common design methodologies. In order to further improve potential structural stiffness of lattice structures, a method combining the multi-topology lattice structure design based on unit-cell library with topology optimization is proposed to optimize the parts. First, a parametric modeling method to rapidly generate a large number of different types of lattice cells is presented. Then, the unit-cell library and its property space are constructed by calculating the effective mechanical properties via a computational homogenization methodology. Third, the template of compromise Decision Support Problem (cDSP) is applied to generate the optimization formulation. The selective filling function of unit cells and geometric parameter computation algorithm are subsequently given to obtain the optimum lightweight lattice structure with uniformly varying densities across the design space. Lastly, for validation purposes, the effectiveness and robustness of the optimized results are analyzed through finite element analysis (FEA) simulation.
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