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Multi-objective topology optimization of column structure for vertical machining center

机译:垂直加工中心柱结构多目标拓扑优化

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In this study, a multi-objective optimization method that combines the compromise programming approach with the mean frequency method is proposed. The proposed method is used to optimize a machine tool column for three objectives: compliance, deformation, and natural frequency. From this optimization, the following conclusions can be drawn: 1) the static stiffness of the vertical machining center is increased by 21.53%; 2) the tool tip static deformation is decreased by 13.69%; and 3) the shapes of the first four modes for the whole machine remain unchanged, but their natural frequencies are increased by 5.09%, 7.66%, 4.16%, and 5.45%, respectively.
机译:在该研究中,提出了一种与均值频率法相结合的多目标优化方法。所提出的方法用于优化三个目标的机床栏:合规性,变形和自然频率。从这种优化来看,可以绘制以下结论:1)垂直加工中心的静态刚度增加21.53%; 2)工具尖端静态变形减少13.69%; 3)整机前四种模式的形状保持不变,但它们的自然频率分别增加了5.09%,7.66%,4.16%和5.45%。

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