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Design and analysis of a 2-degree-of-freedom flexure-based micro-motion stage:

机译:2自由度基于挠曲的微运动平台的设计和分析:

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摘要

This article presents the mechanical design, dimensional optimization, finite element analysis, and experimentation of a 2-degree-of-freedom flexure-based micro-motion stage. The stage is composed of four parallel limbs with symmetrical configuration, and each limb is composed of two serially connected prismatic joints. The divided parts of flexure hinge thickness constituting the two prismatic joints are selected as two. Based on analytical models established in stiffness and dynamic analysis, the dimensional optimization is carried out to maximize the first resonance frequency. Finite element analysis is then adapted to verify the stiffness, workspace, and dynamic behavior. Finally, a prototype of the stage is manufactured and an experimental platform is set up. The experimental results show that the stage has a workspace range of 19.53?μm?×?19.07?μm with a frequency of 1987?Hz, and the cross-coupling ratio between two axes is less than 1%. For high-frequency cooperative tracking experiments, a proporti...
机译:本文介绍了基于2自由度挠曲的微运动平台的机械设计,尺寸优化,有限元分析和实验。舞台由具有对称配置的四个平行肢组成,每个肢由两个串联的棱柱形关节组成。将构成两个棱柱形接头的挠性铰链厚度的划分部分选择为两个。基于在刚度和动力学分析中建立的分析模型,进行尺寸优化以最大化第一共振频率。然后进行有限元分析以验证刚度,工作空间和动态行为。最后,制造了该阶段的原型并建立了实验平台。实验结果表明,该工作台的工作空间范围为19.53?mm××19.07?μm,频率为1987?Hz,两个轴之间的交叉耦合比小于1%。对于高频合作跟踪实验,按比例...

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