Verification of pull-up force and electromagnetic spring to an aluminum ring using ac electromagnets

Author:

Ohji Takahisa1,Kusano Satoshi2,Inoue Tatsuhiro1,Amei Kenji1,Kiyota Kyohei3

Affiliation:

1. , University of Toyama, , Japan

2. Chubu Electric Power Co., Inc., , Japan

3. Electrical and Electronic Engineering, Tokyo Institute of Technology, , Japan

Abstract

Magnetic levitation (maglev) systems for nonmagnetic conductive metals generally generate only repulsive force between the stator and the levitated body. To overturn the conventional common sense, we have fabricated a new maglev device that can generate “attractive force” between the stator consisting of plural ac electromagnets and a nonmagnetic conductive metal ring. In this paper, we elucidate the electromagnetic phenomenon that appropriately arranged seven ac electromagnets continuously pulls up an aluminum (Al) ring, which has 120 mm outer diameter and 5 mm square cross-section, by using finite element analysis. The analysis results reveal the existence of an equilibrium gap where the electromagnetic pulling force balances with the weight of the Al ring without active control. Besides, the equilibrium gap was measured when different weights were added to Al ring to verify the validity of analysis results. The measured results show that the maglev device has a positive stiffness (i.e., electromagnetic spring) of 50 N/m.

Publisher

IOS Press

Subject

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

Reference5 articles.

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4. On the nature of the molecular forces which regulate the constitution of the luminferous ether;Earnshaw;Trans. Cambridge. Philos. Soc.,1842

5. Pull-up operation of an aluminum ring by utilizing ac ampere type magnetic levitation method;Ohji;Int. J. Appl. Electromag. Mech.,2018

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