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特邀综述文章:高速柔性引导纳米定位:机械设计与控制问题

Invited review article: high-speed flexure-guided nanopositioning: mechanical design and control issues.

作者信息

Yong Y K, Moheimani S O R, Kenton B J, Leang K K

机构信息

School of Electrical Engineering and Computer Science, The University of Newcastle, Callaghan, NSW 2308, Australia.

出版信息

Rev Sci Instrum. 2012 Dec;83(12):121101. doi: 10.1063/1.4765048.

Abstract

Recent interest in high-speed scanning probe microscopy for high-throughput applications including video-rate atomic force microscopy and probe-based nanofabrication has sparked attention on the development of high-bandwidth flexure-guided nanopositioning systems (nanopositioners). Such nanopositioners are designed to move samples with sub-nanometer resolution with positioning bandwidth in the kilohertz range. State-of-the-art designs incorporate uniquely designed flexure mechanisms driven by compact and stiff piezoelectric actuators. This paper surveys key advances in mechanical design and control of dynamic effects and nonlinearities, in the context of high-speed nanopositioning. Future challenges and research topics are also discussed.

摘要

近期,人们对用于包括视频速率原子力显微镜和基于探针的纳米制造等高通量应用的高速扫描探针显微镜产生了兴趣,这引发了对高带宽挠曲引导纳米定位系统(纳米定位器)开发的关注。此类纳米定位器旨在以亚纳米分辨率移动样品,定位带宽在千赫兹范围内。最先进的设计采用了由紧凑且刚性的压电致动器驱动的独特设计的挠曲机构。本文在高速纳米定位的背景下,综述了机械设计以及动态效应和非线性控制方面的关键进展。还讨论了未来的挑战和研究课题。

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