惯性
厘米
压电
航程(航空)
循环(图论)
大地测量学
航空航天工程
声学
计算机科学
物理
工程类
地质学
经典力学
数学
组合数学
天文
作者
Zhengrong Guo,Hong-Sheng Tan,C. O. Chang,Ing‐Shouh Hwang,En‐Te Hwu,Hsien-Shun Liao
出处
期刊:Actuators
[Multidisciplinary Digital Publishing Institute]
日期:2025-05-28
卷期号:14 (6): 265-265
摘要
Friction–inertia piezoelectric actuators can perform long-range positioning with nanometer resolution. However, friction and inertia are not easy to control and can influence the actuator’s performance. The present study proposes a friction–inertia-type piezoelectric XY positioning platform with a simple structure, which uses magnets to provide stable normal force and friction. Sliders and rails were used to provide long travel ranges of 80 mm and 70 mm in the X and Y directions, respectively. Compact optical encoders were installed on the platform to enhance the positioning accuracy. With a three-phase positioning strategy involving both stepping and closed-loop methods, the system achieved a positioning accuracy of 3 µm (0.03%) and a repeatability of 325 nm (0.0033%) over a 10 mm long travel range. The positioning resolution was 4.7 nm, which was primarily limited by optical encoder noise under the closed-loop control mode. An astigmatic optical profilometer was used for the wide-range and high-resolution surface imaging of the XY positioning platform.
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