首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Lattice structure optimization and homogenization through finite element analyses
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Lattice structure optimization and homogenization through finite element analyses

机译:通过有限元分析晶格结构优化和均质化

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Lattice topology optimization can stimulate the design of new materials with spatially dependent properties with composite parts or three-dimensional printed components. The present work considers a mounting bracket for an industrial robotic arm as a case study, having as the main objective the increase of the fundamental frequency and secondly its mass reduction. Two design approaches were considered by using the ANSYS software: the first stage optimized the orthotropic lattice material by establishing an optimal variable cubic cell lattice density distribution in the geometric model; the second stage used a homogenized model based on the lattice optimization resulted from the previous stage and considered different volume fractions and variable density for four different types of cells. Homogenization increased the stiffness of the bracket by using the same cubic lattice cell and the fundamental frequency increased from 1227 Hz obtained with lattice optimization to 1366 Hz after homogenization. For the unoptimized bracket the fundamental frequency was only 839 Hz. The mass was reduced to more than half. The most effective proved to be the midpoint lattice cell as by homogenization the mass was reduced from 45.5 kg to 18.22 kg.
机译:格子拓扑优化可以刺激具有空间相关性的新材料的设计,具有复合部件或三维印刷部件。目前的作品认为,用于工业机器人手臂的安装支架作为案例研究,主要目标是基本频率的增加,其次是其大量减少。通过使用ANSYS软件考虑了两种设计方法:通过在几何模型中建立最佳可变立方体晶格密度分布,第一阶段优化了正交晶格材料;第二阶段使用基于晶格优化的均质模型,从前位产生,并且被认为是四种不同类型细胞的不同体积分数和可变密度。均质化通过使用相同的立方晶格细胞增加支架的刚度,并且在均匀化后用晶格优化获得的1227 Hz增加到1366Hz的基本频率。对于未优化的括号,基频仅为839 Hz。质量降至一半以上。最有效的证明是均质化的中点晶格细胞,质量从45.5kg降低至18.22kg。

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