The Proposal of Magnetic Suspension using Laterally Control Flux-Path Mechanism
Abstract
:1. Introduction
2. Principles
2.1. The Flux-Interrupted Type
2.2. The Laterally Controlled Type
3. Magnetic Field Analysis
3.1. Analytical Model
3.2. Attractive Force Characteristics
4. Experiment
Experimental Apparatus
5. Design of Flux-Path Control Mechanism
6. Conclusions
Author Contributions
Conflicts of Interest
Appendix A
References
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Ishibashi, N.; Mizuno, T.; Ishino, Y.; Yamaguchi, D.; Hara, M.; Takasaki, M.; Yamada, K. The Proposal of Magnetic Suspension using Laterally Control Flux-Path Mechanism. Actuators 2017, 6, 11. https://doi.org/10.3390/act6010011
Ishibashi N, Mizuno T, Ishino Y, Yamaguchi D, Hara M, Takasaki M, Yamada K. The Proposal of Magnetic Suspension using Laterally Control Flux-Path Mechanism. Actuators. 2017; 6(1):11. https://doi.org/10.3390/act6010011
Chicago/Turabian StyleIshibashi, Naoki, Takeshi Mizuno, Yuji Ishino, Daisuke Yamaguchi, Masayuki Hara, Masaya Takasaki, and Kazuki Yamada. 2017. "The Proposal of Magnetic Suspension using Laterally Control Flux-Path Mechanism" Actuators 6, no. 1: 11. https://doi.org/10.3390/act6010011
APA StyleIshibashi, N., Mizuno, T., Ishino, Y., Yamaguchi, D., Hara, M., Takasaki, M., & Yamada, K. (2017). The Proposal of Magnetic Suspension using Laterally Control Flux-Path Mechanism. Actuators, 6(1), 11. https://doi.org/10.3390/act6010011