Force Analysis of Magnetic Levitation Micromotion Stage

Article Preview

Abstract:

This A new method of magnetic levitation micromotion of AC / DC hybrid driving is presented in this paper presents, and a new magnetic levitation micromotion stage has been designed, which can be realized that the motion stage translationally motions, respectively along the three directions x-axis, y-axis, z-axis, and rotates respectively around the three directions θxθyθz, namely, the micro-motion in the six-dimensional space of freedom, as well as the micro movement of the constant height. Force analysis has been carried out on the micromotion stage, and the relationship curve between the winding current and the air gap, as well as the force of the micromotion stage, has been drawn. Finally, the stability in the open-loop state and one-dimensional micro-movement of the magnetic levitation micromotion stage have been tested. According to the simulation result of the stability ,it shows that the stability of the magnetic levitation micromotion stage can be achieved at the equilibrium position, and according to the simulation result of the one-dimensional micro-movement ,it shows that the motion range whthin 50mm along the direction of x-axis can substantially coincide with the theoretical analysis. The feasibility of the design presented in this paper of the magnetic levitation micromotion stage can be validated by the simulation result of the stability and one-dimensional micro-movement.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 753-755)

Pages:

1562-1565

Citation:

Online since:

August 2013

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] K. Halbach, Design of Permanent Multipole Magnets with Oriented Rare Earth Cobalt Material', in Nuclear Instruments and Methods, Berkeley, USA, 1980, 169: 1-10.

DOI: 10.1016/0029-554x(80)90094-4

Google Scholar

[2] K. Halbach, Permanent Magnets for Production and Use of High Energy Beams, in Proceedings of the 8th International Workshop on Rare-earth Permanent Magnets, 1985, 123-136.

Google Scholar

[3] Y. Lei, E. J Gao, J.G. Chen and B. Y Chen, Field Analysis and Control of Angle of a Manetic Levitation Micromotion Stage, in 2012 International Conference on Energy and Environmental Protection, China.

Google Scholar

[4] Chen Benyong, Lei Yong, Wang Junru. Theoretical Analysis and Modeling of a Magnetic Levitation Micromotion Stage with Nanometer Resolution. 2006, 27(9): 1125-1128. In Chinese.

Google Scholar

[5] LI Qinglei, WANG Xiankui, WU Dan. Permanent magnet synchronous linear motor thrust and normal force FEM calculation [J]. Journal Of Tsinghua Universy (Science and Technology), 2004, 40(5):20-23. In Chinese.

Google Scholar

[6] Huang Xiaoqin. The Method of Maxwell stress tensor and Its Application [J]. College Physics, 1995, 14(10): 9-11. In Chinese.

Google Scholar