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Design, Fabrication, and Testing of a New Compact Piezo-Driven Flexure Stage for Vertical Micro/Nanopositioning

机译:用于垂直微型/纳米定位的新型紧凑压电驱动弯曲级的设计,制造和测试

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This paper presents the design of a new compact one-degree-of-freedom (1-DOF) compliant stage driven by a piezoelectric actuator (PEA) for microanopositioning in the vertical direction. An orthogonal compound bridge-type amplifier is introduced to amplify the displacement of the PEA. It significantly reduces the height of the stage and leads to a compact design. By analytical modeling of the mechanism, the design variables are determined, which are then optimized via the multiobjective genetic algorithm based on the finite-element analysis. Simulation results show that the 1-DOF stage is able to provide the maximum displacement of 181.18 mu m in theory, which is more than 12 x the input displacement of PEA. Payload test results indicate that the stage can support a maximum load of about 80 N. Comparison study reveals that the presented vertical positioning stage offers a more compact structure than existing ones. A prototype is fabricated for experimental studies, and the deviation between the experimental and simulation results is discussed in detail. Moreover, closed-loop performance test exhibits a resolution of 10 nm for the developed vertical positioning stage.Note to Practitioners-The motivation of this paper is to devise a compact flexure-based stage, which can be mounted on the top of an XY stage for constructing a hybrid type of XYZ stage dedicated to microanopositioning applications. Such a design scheme provides a more flexible solution than serial- and parallel-kinematic designs. In order to fulfill the design requirement and to improve the compactness and output directionality of the stage, a series of design processes is conducted. The design parameters are optimized and the optimal design leads to the stage dimension of 58 mm x 20 mm x 15.5 mm (length x width x height), which offers a motion range of 97.32 mu m as verified by the experimental study. In consideration of the motion range and physical size, the proposed stage offers a more compact structure than available designs. Experimental results demonstrate the fine performance of the developed prototype stage for vertical microanopositioning.
机译:本文介绍了由压电致动器(豌豆)驱动的新紧凑型自由度(1-DOF)的阶段,用于在垂直方向上微/纳络。引入正交化合物桥式放大器以扩增豌豆的位移。它显着降低了舞台的高度并导致了紧凑的设计。通过机制的分析建模,确定设计变量,然后基于有限元分析通过多目标遗传算法进行优化。仿真结果表明,1-DOF阶段能够在理论上提供181.18亩m的最大位移,这是豌豆的输入位移超过12×。有效载荷测试结果表明,阶段可以支持大约80 n的最大负载。比较研究表明,所示的垂直定位级提供比现有的更紧凑的结构。制造了用于实验研究的原型,并详细讨论了实验和模拟结果之间的偏差。此外,闭环性能测试表现出10nm的分辨率,用于开发的垂直定位阶段。注意到从业者 - 本文的动机是设计紧凑的弯曲阶段,可以安装在XY阶段的顶部用于构建专用于微型/纳米定位应用的混合型XYZ阶段。这种设计方案提供比串行和并联运动设计更灵活的解决方案。为了满足设计要求并提高舞台的紧凑性和输出方向性,进行了一系列设计过程。设计参数经过优化,最佳设计导致58mm×20mm×15.5mm(长度x宽度x高)的阶段尺寸,其提供97.32 mu m的运动范围,如实验研究验证。考虑到运动范围和物理尺寸,所提出的阶段提供比可用设计更紧凑的结构。实验结果表明,垂直微/纳络型开发的原型阶段的精细性能。

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