DocumentCode :
1761602
Title :
Experimental Set-Up for Evaluation of Electro-Magnetic Characteristics of High-Tc Superconductors Cooled by Liquid Hydrogen
Author :
Shirai, Yasuyuki ; Hikawa, K. ; Shiotsu, M. ; Tatsumoto, H. ; Hata, Koji ; Kobayashi, Hideo ; Nonaka, S. ; Naruo, Y. ; Inatani, Y.
Author_Institution :
Dept. of Energy Sci. & Technol., Kyoto Univ., Kyoto, Japan
Volume :
23
Issue :
3
fYear :
2013
fDate :
41426
Firstpage :
9500404
Lastpage :
9500404
Abstract :
Liquid hydrogen (LH2) has excellent properties as a coolant, such as large latent heat, low viscosity coefficient, etc. Not only MgB2 but also other high-Tc superconductors are expected to have excellent properties when cooled by LH2. It is necessary for a stability design of a high-Tc superconductor cooled by LH2 to make an electro-magnetic characteristic clear. However, due to the handling difficulties of LH2, there are only few papers on the properties of LH2-cooled superconductors, especially under the external magnetic field. In this paper, an experimental set-up is described, which was designed and fabricated for the evaluation of the electro-magnetic characteristics of high-Tc superconductors cooled by LH2. The LH2 cryostat of 309 mm inner diameter was set co-axially with vacuum layer in the LHe cryostat in which the LHe-cooled superconducting magnet for external magnetic field (up to 7 T) was set. The LH2 cryostat has three power leads for feeding up to 500 A to the test high-Tc superconductors.
Keywords :
cooling; cryostats; high-temperature superconductors; superconducting magnets; viscosity; LH2-cooled superconductors; LHe-cooled superconducting magnet; cryostat; electro-magnetic characteristics; high-Tc superconductors; latent heat; liquid hydrogen; stability design; vacuum layer; viscosity coefficient; Cooling; Hydrogen; Magnetic fields; Magnetic liquids; Magnetic noise; Magnetic shielding; Superconducting magnets; Heat transfer; high-Tc superconductor; liquid hydrogen; magnetic field;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2012.2234820
Filename :
6387291
Link To Document :
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