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首页> 外文期刊>Acta Mechanica Solida Sinica >CONTINUUM TOPOLOGY OPTIMIZATION FOR MONOLITHIC COMPLIANT MECHANISMS OF MICRO-ACTUATORS
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CONTINUUM TOPOLOGY OPTIMIZATION FOR MONOLITHIC COMPLIANT MECHANISMS OF MICRO-ACTUATORS

机译:微致动器单分子顺应性机理的连续拓扑优化

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摘要

A multi-objective scheme for structural topology optimization of distributed compliant mechanisms of micro-actuators in MEMS condition is presented in this work, in which mechanical flexibility and structural stiffness are both considered as objective functions. The compliant micro-mechanism developed in this way can not only provide sufficient output work but also have sufficient rigidity to resist reaction forces and maintain its shape when holding the work-piece. A density filtering approach is also proposed to eliminate numerical instabilities such as checkerboards, mesh-dependency and one-node connected hinges occurring in resulting mechanisms. SIMP is used as the interpolation scheme to indicate the dependence of material modulus on element-regularized densities. The sequential convex programming method, such as the method of moving asymptotes (MMA), is used to solve the optimization problem. The validation of the presented methodologies is demonstrated by a typical numerical example.
机译:在这项工作中,提出了一种多目标方案,用于在MEMS条件下微致动器的分布式顺应机构的结构拓扑优化,其中机械柔韧性和结构刚度均被视为目标函数。以这种方式开发的顺应性微机构不仅可以提供足够的输出功,而且还具有足够的刚度以抵抗反作用力并在保持工件时保持其形状。还提出了一种密度过滤方法,以消除数值不稳定性,例如棋盘格,网格相关性和在结果机制中出现的单节点连接铰链。 SIMP用作插值方案,以指示材料模量对元素正则化密度的依赖性。顺序凸规划方法,例如移动渐近线(MMA)的方法,用于解决优化问题。一个典型的数值例子证明了所提出方法的有效性。

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