首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Static model for flexure-based compliant mechanism driven by piezo stacks
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Static model for flexure-based compliant mechanism driven by piezo stacks

机译:压电堆栈驱动的基于挠曲的柔顺机构的静态模型

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摘要

Flexure-based compliant mechanisms have been used in ultra-precision stages, stages for nano-imprint machines, AFM scanners, and MEMS structures, etc. In this paper, a mathematical static model for flexure-based compliant mechanism driven by piezo stacks is derived. The force vector generated from piezo stacks was linearized in terms of displacement and applied voltage vectors. Then, the piezo force vector was substituted into the static model of a compliant mechanism. Finally, the force and the displacement vectors of input bodies, and the block force and the displacement vectors of output bodies were derived. The derived mathematical model was verified by FEM analyses and experiments. The derived mathematical model can well describe the static performance of a flexure-based compliant mechanism driven by piezo stacks. [PUBLICATION ABSTRACT]
机译:基于挠曲的柔顺机构已用于超精密级,纳米压印机,AFM扫描仪和MEMS结构等的阶段。在本文中,推导了由压电堆栈驱动的基于挠曲的柔顺机构的数学静态模型。 。由压电叠层产生的力矢量根据位移和施加的电压矢量线性化。然后,将压电力矢量代入顺应机构的静态模型中。最后,推导了输入物体的力和位移矢量,以及输出物体的阻滞力和位移矢量。通过有限元分析和实验验证了导出的数学模型。推导的数学模型可以很好地描述压电叠层驱动的基于挠曲的柔性机构的静态性能。 [出版物摘要]

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