Lee Hak-Jun, Kim Hyun-Chang, Kim Hyo-Young, Gweon Dae-Gab
Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South Korea.
Rev Sci Instrum. 2013 Nov;84(11):115103. doi: 10.1063/1.4827087.
This paper presents the development of a new compact three-axis compliant stage employing piezoelectric actuators and a new flexure structure. A proposed stage works out-of-plane (Z, θx, θy) direction. The stage consists of 4 amplification flexures mounted piezoelectric actuators. New structure of flexure reduces height and enhances dynamic performance of stage. To certify excellent performance of the stage, comparison accomplished between conventional amplification flexure and new compact bridge type flexure. Modeling and optimal design of new type nano positioning stage performed. The optimal design is executed on the geometric parameters of the proposed flexure structure using Sequential Quadratic Programming. Experiments are carried out to verify the static and dynamic performance of the stage. The proposed out-of-plane nano-positioning stage has a Z-directional motion range 190 μm and a θx, θy-directional motion range ±2 mrad. The resolution of the stage is 4 nm, 40 nrad, and 40 nrad in the Z-, θx-, and θy-directional motions, respectively. The size of stage is 150 × 150 × 30 mm(3).
本文介绍了一种采用压电致动器和新型挠曲结构的新型紧凑型三轴柔顺平台的研发情况。所提出的平台在平面外(Z、θx、θy)方向工作。该平台由安装有压电致动器的4个放大挠曲组成。新型挠曲结构降低了高度并提高了平台的动态性能。为验证该平台的卓越性能,对传统放大挠曲和新型紧凑型桥式挠曲进行了比较。对新型纳米定位平台进行了建模和优化设计。使用序列二次规划法对所提出的挠曲结构的几何参数进行了优化设计。开展实验以验证该平台的静态和动态性能。所提出的平面外纳米定位平台在Z方向的运动范围为190μm,在θx、θy方向的运动范围为±2mrad。该平台在Z、θx、θy方向运动的分辨率分别为4nm、40nrad和40nrad。平台尺寸为150×150×30mm³。