Optimal design and fabrication of a piezoactuated flexure XYZ parallel micropositioning stage

Qingsong Xu, Yangmin Li
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引用次数: 12

Abstract

This paper presents the design and fabrication process of a new piezoelectrically actuated flexure-based XYZ compliant parallel-kinematics micropositioning stage with totally decoupled properties. The proposed XYZ stage consists of three limbs which are assembled in an orthogonal manner, and it has both input and output decoupling properties. Analytical models for kinematics, statics, and dynamics of the XYZ stage are established, which are validated by finite element analysis performed with ANSYS. Based on the derived models, architectural parameters of the stage are optimized and a prototype is developed for experimental studies. The results not only verify the effectiveness of the conducted optimum design but also confirm the well-decoupled performance of the XYZ stage, which will be used to execute micro-/nanomanipulation tasks.
压电驱动柔性XYZ并联微定位台的优化设计与制造
本文介绍了一种新型压电驱动全解耦XYZ柔性并联微定位平台的设计与制造过程。所提出的XYZ级由以正交方式组装的三个分支组成,并且具有输入和输出解耦特性。建立了XYZ工作台的运动学、静力学和动力学分析模型,并利用ANSYS进行了有限元分析。在此基础上,对舞台的结构参数进行了优化,并开发了样机进行了实验研究。结果不仅验证了所进行的优化设计的有效性,而且证实了XYZ平台的良好解耦性能,该平台将用于执行微/纳米操作任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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