Basic study on edge supported electromagnetic levitation system for flexible steel plate

Author:

Oda Yoshiho1,Kida Masahiro1,Suzuki Toshiki1,Narita Takayoshi2,Kato Hideaki2,Moriyama Hiroyuki2

Affiliation:

1. Course of Mechanical Engineering, Tokai University, , Japan

2. Department of Prime Mover Engineering, Tokai University, , Japan

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference11 articles.

1. Development of a wind-tunnel for spinning body using magnetic suspension;Mizuno;Transactions of the JSME,2017

2. Characteristic of cogging force to a non-magnetic thin plate created by an AC Ampere Type Linear Maglev Conveyance System;Matsushima;Journal of JSAEM,2013

3. Magnetic suspension using variable flux path control mechanism with permanent magnet (simultaneous suspension experiment of two iron balls);Sun;Transactions of the JSME Series C,2012

4. Achievement of stable magnetic levitation of a 0.18 mm thick steel plate and verification of levitation stability against various disturbances;Suzuki;Journal of JSAEM,2017

5. Dynamic performance evaluation of 5-DOF magnetic levitation and guidance device by using Equivalent Magnetic Circuit Model;Kim;IEEE Transactions on Magnetics,2013

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