DocumentCode
43680
Title
Cold Test Results of the LARP HQ
Quadrupole Magnet at 1.9 K
Author
Bajas, H. ; Ambrosio, Giorgio ; Anerella, Michael ; Bajko, M. ; Bossert, R. ; Caspi, S. ; Chiuchiolo, A. ; Chlachidze, G. ; Dietderich, Daniel ; Dunkel, O. ; Felice, H. ; Ferracin, P. ; Feuvrier, J. ; Fiscarelli, L. ; Ghosh, A. ; Giloux, C. ; Godeke, A. ;
Author_Institution
CERN, Geneva, Switzerland
Volume
23
Issue
3
fYear
2013
fDate
Jun-13
Firstpage
4002606
Lastpage
4002606
Abstract
The high gradient quadrupole magnet is a 120-mm-aperture, 1-m-long Nb3Sn quadrupole developed by the LHC Accelerator Research Program collaboration in support of the High-Luminosity LHC project. Several tests were performed at Lawrence Berkeley National Laboratory in 2010-2011 achieving a maximum gradient of 170 T/m at 4.4 K. As a next step in the program, the latest model (HQ01e) was sent to CERN for testing at 1.9 K. As part of this test campaign, the magnet training has been done up to a maximum current of 16.2 kA corresponding to 85% of the short sample limit. The ramp rate dependence of the quench current is also identified. The efficiency of the quench heaters is then studied at 4.2 K and at 1.9 K. The analyses of the magnet resistance evolution during fast current discharge showed evidence of quench whereas high energy quenches have been successfully achieved and sustained with no dump resistor.
Keywords
niobium compounds; particle accelerator accessories; superconducting magnets; AD 2010 to 2011; High Luminosity LHC project; LARP HQ quadrupole magnet; LHC Accelerator Research Program collaboration; Lawrence Berkeley National Laboratory; cold test; current 16.2 kA; high gradient quadrupole magnet; quench current; ramp rate dependence; size 1 m; size 120 mm; temperature 1.9 K; temperature 4.2 K; temperature 4.4 K; Coils; Current measurement; Delay; Heating; Resistance; Resistors; Training; $hbox{Nb}_{3}hbox{Sn}$ quadrupole; High gradient quadrupole (HQ); LHC Accelerator Research Program (LARP); magnet protection;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2013.2245281
Filename
6450057
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