Development and performance evaluation of a fine stage for compensating 6-DOF motion errors of an ultra-precision linear stage

Citations

SCOPUS

4

초록

In ultra-precision processes, such as aerospace parts and precision mold machining, the accuracy of a feed drive system should be secured to achieve sufficient form accuracy. Dual-Servo stages, which compensate for multi-DOF motion errors, are being developed depending on the applied processes. This paper deals with the fine stage of a dual-servo stage to compensate for 6-DOF motion errors of a linear stage. The proposed fine stage measured 6-DOF errors of the linear stage motion with capacitive sensors, a reference mirror, and an optical encoder. It compensated for the errors using the flexure hinge mechanism with piezo actuators. The error equations and the inverse kinematics were derived to calculate the 6- DOF errors and displacements of piezo actuators for 6-DOF motions, respectively. Performance evaluation was implemented to verify feasibility of the developed fine stage of the fabricated dual-servo stage. Through the step response test of the fine stage, compensation resolutions for the translational and the rotational motion were confirmed to be less than 10 nm and 1/3 arcsec, respectively. The 6-DOF motion errors in the verification test were reduced by 73% on average. © The Korean Society for Precision Engineering.

키워드

6-DOF motion errors; Capacitive sensor; Dual-servo stage; Error compensation; Flexure hinge; Piezoelectric actuator
제목
Development and performance evaluation of a fine stage for compensating 6-DOF motion errors of an ultra-precision linear stage
저자
Lee, Hoon-hee; Lee, In-seok; Lee, Kwang-il; Yang, Seunghan
DOI
10.7736/JKSPE.020.083
발행일
2021
유형
Article
저널명
한국정밀공학회지
권
38
호
2
페이지
123 ~ 129