二维微纳角工作台结构拓扑优化

M. Helal, Lefeng Wang, Lining Sun
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引用次数: 1

摘要

柔性机构在各种领域的设计过程中做出了巨大的贡献,如自适应结构、手持工具、运输部件、电子设备和外科手术工具。使用兼容的机制将有助于减少组件的数量,从而降低制造成本并额外提高性能。拓扑优化已被证明是结构和机构概念设计的有力方法。拓扑优化是在指定的设计域内找到结构的最优布局的技术。提出了一种微纳角工作台柔性机构。将拓扑优化方法应用于二维微纳角工作台柔性机构的设计。最后给出并讨论了微/纳米角表的最优拓扑结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure topology optimization of two-dimension micro/nano angular-table
Compliant mechanisms have made an enormous contribution in the design process of various fields such as for adaptive structures, hand-held tools, components in transportations, electronics, and surgical tools. The use of compliant mechanisms will help in reducing the number of components, which therefore decrease manufacturing cost and additionally increase the performance. Topology optimization has proven to be a powerful method for the conceptual design of structures and mechanisms. Topology optimization is the technique that finds the optimal layout of the structure within a specified design domain. This paper presents the micro/nano angular-table compliant mechanism. The topology optimization is applied for designing two-dimensional micro/nano angular-table compliant mechanism. The final optimal topology configuration of the micro/nano-angular table is shown and discussed.
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