DocumentCode
1067373
Title
Test results from the LQXB quadrupole production program at Fermilab for the LHC interaction regions
Author
Bossert, R. ; Carson, J. ; Chichili, D.R. ; Feher, S. ; Kerby, J. ; Lamm, M.J. ; Nobrega, A. ; Nicol, T. ; Ogitsu, T. ; Orris, D. ; Page, T. ; Peterson, T. ; Rabehl, R. ; Robotham, W. ; Scanlan, R. ; Schlabach, P. ; Sylvester, C. ; Strait, J. ; Tartaglia,
Author_Institution
FNAL Fermi Nat. Accelerator Lab., Batavia, IL, USA
Volume
14
Issue
2
fYear
2004
fDate
6/1/2004 12:00:00 AM
Firstpage
187
Lastpage
190
Abstract
As part of the US-LHC Accelerator Project, Fermilab is producing fully cryostated assemblies that will be installed as the Q1, Q2 and Q3 optical elements for the LHC Inner Triplets. The main quadrupole magnets in the Q1 (LQXA) and Q3 (LQXC) assemblies are MQXA elements designed and fabricated by KEK and Toshiba, while those in the Q2 (LQXB) assemblies are MQXB quadrupoles designed and fabricated by Fermilab. The cryostat assemblies for all magnets are designed by Fermilab, and final assembly of the optical elements occurs at Fermilab. This paper describes the production test results for the second LQXB cryostat assembly.
Keywords
accelerator magnets; cryostats; magnetic cooling; production facilities; production testing; proton accelerators; storage rings; superconducting magnets; synchrotrons; Fermilab; KEK; LHC Inner Triplets; LHC interaction regions; LQXB cryostat assembly; LQXB quadrupole production program; Large Hadron Collider; MQXA element; MQXB quadrupoles; Q1 optical element; Q2 optical element; Q3 optical element; Toshiba; US-LHC Accelerator Project; low-β quadrupole; quadrupole magnets; superconducting magnets; Coils; Fingers; Laboratories; Large Hadron Collider; Lead; Magnets; Optical design; Production; Robotic assembly; Testing; Interaction region; LHC; low-$beta$ quadrupole; superconducting magnet;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2004.829042
Filename
1324767
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