DocumentCode :
3602159
Title :
Millimeters-Stroke Nanopositioning Actuator With High Positioning and Thermal Stability
Author :
Tat Joo Teo ; Viet Phuong Bui ; Guilin Yang ; I-Ming Chen
Author_Institution :
Mechatron. Group, Singapore Inst. of Manuf. Technol., Singapore, Singapore
Volume :
20
Issue :
6
fYear :
2015
Firstpage :
2813
Lastpage :
2823
Abstract :
This paper presented the design and modeling of a novel nanopositioning actuator that delivers millimeters stroke with high positioning and thermal stability. This actuator comprises a unique electromagnetic driving module (EDM) articulated from a segmented dual-magnet (DM) configuration, and flexurebased supporting bearings realized via a flexible membrane concept. In this paper, the fundamental insights on how to design and model the proposed segmented DM configuration are presented in detail. The remainder of this paper focuses on the thermal modeling of the unique EDM and the stiffness modeling of the unconventional flexure-based bearings. Subsequently, all theoretical models are evaluated through experimental investigations conducted via a developed prototype. The prototype also achieved an average positioning stability of ±10 nm with a thermal stability of ±0.1°C throughout a traveling range of 2 mm (±1 mm). Such actuator is useful for applications where direct feedback on the end effector is impossible.
Keywords :
bending; control system synthesis; elastic constants; end effectors; feedback; machine bearings; nanoactuators; nanopositioning; thermal stability; EDM; average positioning stability; direct feedback; electromagnetic driving module; end effector; flexible membrane concept; flexure-based bearings; flexure-based supporting bearings; millimeter-stroke nanopositioning actuator; nanopositioning actuator design; nanopositioning actuator modeling; segmented DM configuration; segmented dual-magnet configuration; stiffness modeling; thermal stability; traveling range; Actuators; Force; Magnetic circuits; Magnetic levitation; Magnetization; Stators; Thermal stability; Flexure modeling; integral equation (IE); nanopositioning; permanent magnet (PM) circuits; thermal modeling;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2015.2417776
Filename :
7102739
Link To Document :
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