R&D of on-board metal-insulation REBCO superconducting magnet for electrodynamic suspension system

Author:

Liu ShixianORCID,Wang Lei,Chen Yong,Wang Luzhong,Zhou BenzheORCID,Hu XinningORCID,Cheng JunshengORCID,Wang QiuliangORCID

Abstract

Abstract Metal-insulation (MI) REBCO high-temperature superconducting (HTS) magnet has the advantages of short charging delay, low contact losses, and self-protection abilities, which shows important application prospects in many fields. Recently, Institute of Electrical Engineering, Chinese Academy of Sciences developed a prototype on-board MI HTS coil used for electrodynamic suspension (EDS) system working with an acceleration of beyond 8 g. To design a reliable engineering on-board magnet, specific Ic angle dependence data of short sample under different fields were fully considered to estimate the operating margin and losses accurately of the on-board magnet. A semi-analytical method, combination of the dynamic circuit method and finite element method, was used to analyze the dynamic electromagnetic force distribution inside the on-board magnet under motion state, in which the effect of the propulsion coils and the figure-eight-shaped coils were taken into considerations. Finally, a full-size MI double pancake racetrack coil was fabricated and tested in a liquid nitrogen bath. The test results meet the design requirements and verify the feasibility of the design, which provides an important reference for the experiment of on-board EDS with high acceleration in the future.

Funder

National Natural Science Foundation of China

Research Fund for the AEDT

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Metals and Alloys,Condensed Matter Physics,Ceramics and Composites

Reference26 articles.

1. Metal-as-insulation HTS coils;Lécrevisse;Supercond. Sci. Technol.,2022

2. Current status of and challenges for no-insulation HTS winding technique;Hahn;Cryog. Supercond. Soc. Japan,2018

3. Magnetic levitation upgrade to the Holloman high speed test track;Hsu;IEEE Trans. Appl. Supercond.,2009

4. JR tokai’s L0 maglev train sets world speed record;Neumann;Supercond. Week,2015

5. Experimental production of a real-scale REBCO magnet aimed at its application to maglev;Mizuno;IEEE Trans. Appl. Supercond.,2017

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