1975IEEE Transactions on MagneticsRequires access

Superconducting magnet with tube-type cryostat for magnetically suspended train

Hiroshi Kimura, Hisao Ogata, Shintaro Sato, R. Saito, N. Tada

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Abstract

In order to develop a compact and light-weight superconducting vehicle magnet for a magnetically suspended high speed train, a superconducting magnet with a tube-type cryostat has been constructed and tested. The shape of the superconducting coil is a rectangle, which has a length of 1.5 m and a width of 0.6 m, and coaxial vessels of the cryostat cover the coil winding. The liquid helium vessel and the outer vacuum vessel of the cryostat have an outside diameter of 8 cm and 14 cm, respectively. The experimental results and the evaluation for the magnet are described.

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What this paper is about

In order to develop a compact and light-weight superconducting vehicle magnet for a magnetically suspended high speed train, a superconducting magnet with a tube-type cryostat has been constructed and tested. The shape of the superconducting coil is a rectangle, which has a length of 1.5 m and a width of 0.6 m, and coaxial vessels of the cryostat cover the coil winding. The liquid helium vessel and the outer vacuum vessel of the cryostat have an outside diameter of 8 cm and 14 cm, respectively. The experimental results and the evaluation for the magnet are described.

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Available abstract

In order to develop a compact and light-weight superconducting vehicle magnet for a magnetically suspended high speed train, a superconducting magnet with a tube-type cryostat has been constructed and tested. The shape of the superconducting coil is a rectangle, which has a length of 1.5 m and a width of 0.6 m, and coaxial vessels of the cryostat cover the coil winding. The liquid helium vessel and the outer vacuum vessel of the cryostat have an outside diameter of 8 cm and 14 cm, respectively. The experimental results and the evaluation for the magnet are described.

Key concepts: Cryostat, Magnet, Electromagnetic coil, Liquid helium, Superconducting magnet, Materials science, Coaxial, Nuclear magnetic resonance

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