DocumentCode :
837007
Title :
Electrical characterization of S/C conductor for the CMS solenoid
Author :
Fabbricatore, Pasquale ; Greco, Michela ; Musenich, Riccardo ; Farinon, Stefania ; Kircher, François ; Curè, Benoit
Author_Institution :
Inst. Nazionale di Fisica Nucl.e, Genova, Italy
Volume :
15
Issue :
2
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
1275
Lastpage :
1278
Abstract :
The Compact Muon Solenoid (CMS) is one of the general-purpose detectors to be provided for the LHC project at CERN. The design field of the CMS superconducting magnet is 4 T, the magnetic length is 12.5 m and the free bore is 6 m. The coil is wound from 20 high purity aluminum-stabilized NbTi conductors with a total length of 45 km. The main peculiarity of the CMS magnet among other existing thin detector solenoids is its sandwich-type aluminum-stabilized superconductor. This special feature was chosen in order to have a mechanically self-supporting winding structure. We measured the critical current of all the 21 finished conductors in fields up to 6 T using the Ma.Ri.S.A. test facility at INFN-Genova. We compare these results with the critical current of single strands measured by CEA-Saclay, extracted from the conductor after the co-extrusion. A comparison among the measurements provides information about the possible critical current degradation and assures an accurate quality control of the conductor production. We also qualified the method used for making the joints between the layers within a single module and between the five modules and the bus bars. Measurements on both round and straight TIG-welded samples were carried out, in Genova and at CEA-Saclay, respectively.
Keywords :
critical currents; muon detection; niobium alloys; position sensitive particle detectors; superconducting magnets; test facilities; titanium alloys; 12.5 m; 4 T; 45 Km; 6 m; CEA-Saclay; CMS magnet; CMS solenoid; INFN-Genova; LHC/CERN; Ma.Ri.S.A. test facility; NbTi; S/C conductor; aluminum-stabilized superconductor; compact muon solenoid; conductor production; critical current; detector magnets; electrical characterization; general-purpose detectors; quality control; self-supporting winding structure; superconducting magnet; thin detector solenoids; Collision mitigation; Conductors; Critical current; Current measurement; Detectors; Magnetic field measurement; Mesons; Solenoids; Superconducting coils; Superconducting magnets; Al stabilized conductors; LHC project; critical current; detector magnets;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.849566
Filename :
1439875
Link To Document :
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