DocumentCode
10149
Title
Strengthening Effect of “Yoroi-Coil Structure” Against Electromagnetic Force
Author
Watanabe, Toshio ; Nagaya, Shigeo ; Hirano, Naoki ; Awaji, S. ; Oguro, H. ; Tsuchiya, Y. ; Omura, T. ; Nimori, S. ; Shimizu, Tsuyoshi ; Ishiyama, Atsushi ; Xudong Wang
Author_Institution
Chubu Electr. Power Co., Inc., Nagoya, Japan
Volume
25
Issue
3
fYear
2015
fDate
Jun-15
Firstpage
1
Lastpage
4
Abstract
The strengthening of Yoroi-coil (Y-based oxide superconductor and reinforcing outer integrated coil) structure at stronger electromagnetic force was investigated using the Yoroicoil structured double-pancake coil with higher strength outer plates of carbon-fiber reinforced plastic (C-FRP) than those of glass-FRP. The coil achieved 1.14 kA transporting at 4.2 K in 14-T back-up magnetic field and the superconducting wire was burnt by thermal runaway after that. The calculated maximum hoop stress, based on the BJR (magnetic field × current density × coil radius) calculations, at the hoop stress test reached 2.0 GPa. This value was far exceeding the tensile strength of superconducting wire ranging from 1 to 1.3 GPa; however, the maximum strain of superconducting wire in the test coil was held about 0.5%. Yoroi-coil structure is useful for the applications, which need high magnetic field precision. The strengthening effect of C-FRP outer plates was observed at outer part of the coil, but it did not cover the whole coil body, so that arrangement of reinforcing outer plates could admit of some improvement.
Keywords
barium compounds; carbon fibre reinforced plastics; electromagnetic forces; hardening; high-temperature superconductors; superconducting coils; tensile strength; yttrium compounds; C; YBaCuO; Yoroi-coil structured double-pancake coil; back-up magnetic field; carbon-fiber reinforced plastic outer plates; coil body; current 1.14 kA; electromagnetic force; maximum hoop stress; maximum strain; reinforcing outer plate arrangement; strengthening effect; superconducting wire; temperature 4.2 K; tensile strength; thermal runaway; Coils; Conductors; Electromagnetic forces; Magnetic fields; Strain; Stress; Superconducting filaments and wires; Carbon-fiber reinforced plastic; Electromagnetic forces; Hoop stress; Yttrium based coated conductor; carbon-fiber reinforced plastic; electromagnetic forces; hoop stress; yttrium based coated conductor;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2014.2364675
Filename
6935072
Link To Document