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Improvement of maglev model using high Tc superconductors and soft magnetic materials; Koon chodendotai to nanjiseitai wo kumiawaseta jiki fujo kiko no kairyo

Abstract

In this study, in a magnetic levitation system using pinning force of high temperature superconductors, for a propose of magnification of the stable contactless gap length and exclusion of mass regulation of a floater, a magnetic levitation model was improved. That is, the tangential component of an attractive force between a high temperature superconductor where magnetic flux was pinned and magnetic material is used for levitation and stable force in up and down directions, and restoring force generated due to pinned flux gathering was used for horizontal stabilization. For a floater made by using this principle, weight addition was necessary for letting the center of gravity down, however self-weight regulation of a floater is originally unnecessary. Thus, a magnetic levitation apparatus can be made without self-weight regulation of suspension and having a wide stable gap by using this levitation method. Since the floater was constructed under two rails, there are good points on easily dealing with the safety countermeasure in cases of which levitation would reduce or disappear. 4 refs., 7 figs.
Authors:
Tsutsui, Y; [1]  Higuchi, T; [2]  Kondo, N [3] 
  1. Yasukawa Electric Corp., Kitakyushu (Japan). Basic Research Lab.
  2. Kanagawa Academy of Science and Technology, Kawasaki (Japan)
  3. Univ. of Tokyo, Tokyo (Japan)
Publication Date:
Feb 25, 1995
Product Type:
Journal Article
Reference Number:
SCA: 426000; 320202; PA: NEDO-96:911792; EDB-96:136538; SN: 96001646691
Resource Relation:
Journal Name: Teion Kogaku (Cryogenic Engineering); Journal Volume: 31; Journal Issue: 2; Other Information: PBD: 25 Feb 1995
Subject:
42 ENGINEERING NOT INCLUDED IN OTHER CATEGORIES; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; HIGH-TC SUPERCONDUCTORS; USES; MAGNETIC MATERIALS; MAGNETIC FIELDS; LEVITATION; MODIFICATIONS; STABILITY; PERMANENT MAGNETS; MAGNETIC FLUX
OSTI ID:
283661
Country of Origin:
Japan
Language:
Japanese
Other Identifying Numbers:
Journal ID: TEKODS; ISSN 0389-2441; TRN: 96:911792
Submitting Site:
NEDO
Size:
pp. 61-65
Announcement Date:
Sep 23, 1996

Citation Formats

Tsutsui, Y, Higuchi, T, and Kondo, N. Improvement of maglev model using high Tc superconductors and soft magnetic materials; Koon chodendotai to nanjiseitai wo kumiawaseta jiki fujo kiko no kairyo. Japan: N. p., 1995. Web.
Tsutsui, Y, Higuchi, T, & Kondo, N. Improvement of maglev model using high Tc superconductors and soft magnetic materials; Koon chodendotai to nanjiseitai wo kumiawaseta jiki fujo kiko no kairyo. Japan.
Tsutsui, Y, Higuchi, T, and Kondo, N. 1995. "Improvement of maglev model using high Tc superconductors and soft magnetic materials; Koon chodendotai to nanjiseitai wo kumiawaseta jiki fujo kiko no kairyo." Japan.
@misc{etde_283661,
title = {Improvement of maglev model using high Tc superconductors and soft magnetic materials; Koon chodendotai to nanjiseitai wo kumiawaseta jiki fujo kiko no kairyo}
author = {Tsutsui, Y, Higuchi, T, and Kondo, N}
abstractNote = {In this study, in a magnetic levitation system using pinning force of high temperature superconductors, for a propose of magnification of the stable contactless gap length and exclusion of mass regulation of a floater, a magnetic levitation model was improved. That is, the tangential component of an attractive force between a high temperature superconductor where magnetic flux was pinned and magnetic material is used for levitation and stable force in up and down directions, and restoring force generated due to pinned flux gathering was used for horizontal stabilization. For a floater made by using this principle, weight addition was necessary for letting the center of gravity down, however self-weight regulation of a floater is originally unnecessary. Thus, a magnetic levitation apparatus can be made without self-weight regulation of suspension and having a wide stable gap by using this levitation method. Since the floater was constructed under two rails, there are good points on easily dealing with the safety countermeasure in cases of which levitation would reduce or disappear. 4 refs., 7 figs.}
journal = []
issue = {2}
volume = {31}
journal type = {AC}
place = {Japan}
year = {1995}
month = {Feb}
}