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Topology Optimization of Compliant Mechanisms Using Moving Morphable Components with Flexure Hinge Characteristic

机译:使用具有挠性铰链特性的可移动变形组件对柔性机构进行拓扑优化

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This paper presents a compliant mechanisms synthesis method using moving morphable components (MMC) topology optimization with a view of replacing de facto hinges by specific flexure hinge characteristic. The shape of a common used corner-filleted hinge is embed into the profile of quadratically varying thickness component. The geometric parameters of the hinge is treated as design variables, participate in the optimization process directly. To obtain relatively stable topological configurations in different spring stiffness, keynodes connectivity preservation is applied which can provide a forced connection between components and input, output and fixed ports. The validity of the method is demonstrated using numerical examples.
机译:本文提出了一种使用移动可变形组件(MMC)拓扑优化的顺应性机制综合方法,以期用特定的挠性铰链特性代替实际的铰链。常用的圆角圆角铰链的形状嵌入到二次方变化的厚度分量的轮廓中。铰链的几何参数被视为设计变量,直接参与优化过程。为了在不同的弹簧刚度下获得相对稳定的拓扑配置,关键节点的连接性保留得以应用,这可以在组件与输入,输出和固定端口之间提供强制连接。通过数值算例证明了该方法的有效性。

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