4.6 Article

An Overview on Electrodynamic Bearings

期刊

IEEE ACCESS
卷 10, 期 -, 页码 57437-57451

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/ACCESS.2022.3176632

关键词

Analytical models; Stability analysis; Magnetic levitation; Damping; Magnetic flux; Rotors; Force; Eddy current; electrodynamics bearing; force; stiffness; damping; rotordynamics

资金

  1. Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal

向作者/读者索取更多资源

This article reviews the research on electrodynamic passive magnetic bearings (EDB) and provides an in-depth examination of EDB modeling, analysis, and development. The article highlights different types of EDB configurations, improvements in technology, advancements in mathematical modeling, finite element techniques, and experiments used to determine bearing characteristics with high accuracy. The article also reviews critical developments in rotordynamic analysis for high-speed application and discusses advances in the application of EDB.
In electrodynamics, the levitation ensues when there is a relative motion between a stator and a conductor owing to which high eddy currents are induced. The repulsive forces generated by eddy currents are large enough to carry the moving body passively without violating Earnshaw's criterion. Electrodynamic bearings (EDB) use this technique to levitate the rotor in axial or radial degrees of freedom. The present article reviews the literature on electrodynamic passive magnetic bearings to provide an in-depth examination of EDB modeling, analysis, and development. Different types of EDB configurations are highlighted, along with improvements in their technology. In addition, essential advancements in mathematical modeling, finite element techniques, and experiments used to determine the bearing characteristics in terms of accuracy are highlighted. Furthermore, critical developments in rotordynamic analysis in terms of high-speed application have been reviewed. Finally, advances in the application of EDB are discussed.

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