DocumentCode
1097667
Title
Design and Construction of Test Coils for MICE Coupling Solenoid Magnet
Author
Wang, Li ; Pan, H. ; Xu, F.Y. ; Liu, X.K. ; Chen, A.B. ; Li, L.K. ; Guo, X.L. ; Wu, H. ; Green, M.A. ; Li, D.R. ; Strauss, B.P.
Author_Institution
Inst. of Cryogenics & Superconductive Technol., Harbin Inst. of Technol., Harbin, China
Volume
19
Issue
3
fYear
2009
fDate
6/1/2009 12:00:00 AM
Firstpage
1340
Lastpage
1343
Abstract
The superconducting coupling solenoid to be applied in the Muon Ionization Cooling Experiment (MICE) is made from copper matrix Nb-Ti conductors with inner radius of 750 mm, length of 285 mm and thickness of 102.5 mm at room temperature. The magnetic field up to 2.6 T at the magnet centerline is to keep the muons within the MICE RF cavities. Its self inductance is around 592 H and its magnet stored energy is about 13 MJ at a full current of 210 A for the worst operation case of the MICE channel. The stress induced inside the coil during cool down and charging is relatively high. Two test coils are to build and test in order to validate the design method and develop the fabrication technique required for the coupling coil winding, one is 350 mm inner diameter and full length same as the coupling coil, and the other is one-quarter length and 1.5 m diameter. The 1.5 m diameter coil will be charged to strain conditions that are greater than would be encountered in the coupling coil. This paper presents detailed design of the test coils as well as developed winding skills. The analyses on stress in coil assemblies, AC loss, and quench process are carried out.
Keywords
cooling; superconducting coils; superconducting magnets; testing; AC loss; MICE; RF cavities; coil winding; copper matrix Nb-Ti conductors; cryogenic test system; muon ionization cooling; quench process; size 1.5 m; size 102.5 mm; size 285 mm; size 350 mm; size 750 mm; strain conditions; superconducting coupling solenoid magnet; test coils; AC losses; MICE magnet; cool down test; quench; stress; winding system;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2009.2018056
Filename
5109553
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