Performance of a MQXF Nb3Sn Quadrupole Magnet Under Different Stress Level

被引:5
作者
Bermudez, Susana Izquierdo [1 ]
Ambrosio, Giorgio [2 ]
Bordini, Bernardo [1 ]
Bourcey, Nicolas [1 ]
Devred, Arnaud [1 ]
Ferracin, Paolo [3 ]
Troitino, Jose Ferradas [1 ]
Troitino, Salvador Ferradas [1 ]
Fiscarelli, Lucio [1 ]
Fleiter, Jerome [1 ]
Guinchard, Michael [1 ]
Mangiarotti, Franco [1 ]
Perez, Juan Carlos [1 ]
Takala, Eelis [1 ]
Todesco, Ezio [1 ]
机构
[1] CERN, CH-1211 Geneva 23, Switzerland
[2] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA
[3] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA
关键词
Magnetomechanical effects; Superconducting magnets; Strain measurement; Large Hadron Collider; Conductors; Stress; Load modeling; High luminosity LHC; Nb3Sn magnets; PROGRAM;
D O I
10.1109/TASC.2022.3167369
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In a dipole or in a quadrupole accelerator magnet, the displacement of the coil turns induced by the electromagnetic forces can cause quenches limiting the magnet performance. For this reason, an azimuthal preload is applied to avoid azimuthal movements of the coil up to the required operational current. However, several tests showed that accelerator magnets can operate with a partial preload, i.e., that coil unloading during the ramp does not prevent reaching higher currents. This issue is particularly relevant for Nb3Sn magnets, where the loads applied to the Nb3Sn filaments can reach the degradation limits of critical current. In order to investigate the impact of coil preload on the quench performance, the MQXFS6 short model quadrupole for the High Luminosity Upgrade was tested under an azimuthal pre-load at 80% of the short sample current, reaching 93% of short sample current at 1.9 K. The preload was then released to 60%, still showing ability to operate in the range of 80--85% of short sample current as required by HL-LHC project. With this lower preload, the ability of going above 90% of short sample was lost, and a significant training appeared above 85%. When the preload was restored to the original 80% value, the magnet reached with few quenches 95% of short sample (13.4 T peak field). Magnetic measurements confirm the larger movement of the coil in the case with lower preload, and agree with finite element simulations.
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页数:6
相关论文
共 20 条
[1]   Status of the short dipole model program for the LHC [J].
Artoos, K ;
Bottura, L ;
Fessia, P ;
Perini, D ;
Sanfilippo, S ;
Siegel, N ;
Siemko, A ;
Tommasini, D ;
Vanenkov, I ;
Walckiers, L ;
Wyss, C .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2000, 10 (01) :49-52
[2]   Mechanical analysis of the Nb3Sn 11 T dipole short models for the High Luminosity Large Hadron Collider [J].
Bermudez, S. Izquierdo ;
Nilsson, E. ;
Bottura, L. ;
Bourcey, N. ;
Devred, A. ;
Ferracin, P. ;
Troitino, S. Ferradas ;
Fiscarelli, L. ;
Guinchard, M. ;
Loffler, C. ;
Mazet, J. ;
Perez, J. C. ;
Prin, H. ;
Savary, F. ;
Tavares, S. Sequeira ;
Vallone, G. ;
Willering, G. .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2019, 32 (08)
[3]   The Bundle-Barrier PIT Wire Developed for the HiLumi LHC Project [J].
Bordini, Bernardo ;
Ballarino, Amalia ;
Macchini, Matteo ;
Richter, David ;
Sailer, Bernd ;
Thoener, Manfred ;
Schlenga, Klaus .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2017, 27 (04) :1-6
[4]  
Bruning O. S., 2004, CERN2004003
[5]   The use of pressurized bladders for stress control of superconducting magnets [J].
Caspi, S ;
Gourlay, S ;
Hafalia, R ;
Lietzke, A ;
ONeill, J ;
Taylor, C ;
Jackson, A .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2001, 11 (01) :2272-2275
[6]  
DEVRED A, 1992, AIP CONF PROC, V249, P1309, DOI 10.1063/1.41955
[7]   Magnetic and mechanical analysis of the HQ model quadrupole designs for LARP [J].
Felice, Helene ;
Caspi, Shlomo ;
Ferracin, Paolo ;
Kashikhin, Vadim ;
Novitski, Igor ;
Sabbi, GianLuca ;
Zlobin, Alexander .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2008, 18 (02) :281-284
[8]   Assembly and Pre-Loading Specifications for the Series Production of the Nb3Sn MQXFA Quadrupole Magnets for the HL-LHC [J].
Ferracin, P. ;
Ambrosio, G. ;
Cheng, D. W. ;
Troitino, J. Ferradas ;
Fajardo, L. Garcia ;
Bermudez, S. Izquierdo ;
Prestemon, S. ;
Ray, K. L. ;
Solis, M. J. ;
Todesco, E. ;
Vallone, G. .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2022, 32 (06)
[9]   Development of MQXF: The Nb3Sn Low-β Quadrupole for the HiLumi LHC [J].
Ferracin, P. ;
Ambrosio, G. ;
Anerella, M. ;
Ballarino, A. ;
Bajas, H. ;
Bajko, M. ;
Bordini, B. ;
Bossert, R. ;
Cheng, D. W. ;
Dietderich, D. R. ;
Chlachidze, G. ;
Cooley, L. ;
Felice, H. ;
Ghosh, A. ;
Hafalia, R. ;
Holik, E. ;
Bermudez, S. Izquierdo ;
Fessia, P. ;
Grosclaude, P. ;
Guinchard, M. ;
Juchno, M. ;
Krave, S. ;
Lackner, F. ;
Marchevsky, M. ;
Marinozzi, V. ;
Nobrega, F. ;
Oberli, L. ;
Pan, H. ;
Perez, J. C. ;
Prin, H. ;
Rysti, J. ;
Rochepault, E. ;
Sabbi, G. ;
Salmi, T. ;
Schmalzle, J. ;
Sorbi, M. ;
Tavares, S. Sequeira ;
Todesco, E. ;
Wanderer, P. ;
Wang, X. ;
Yu, M. .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2016, 26 (04)
[10]   The HL-LHC Low-β Quadrupole Magnet MQXF: From Short Models to Long Prototypes [J].
Ferracin, Paolo ;
Ambrosio, Giorgio ;
Anerella, Michael ;
Bajas, Hugues ;
Bajko, Marta ;
Bordini, Bernardo ;
Bossert, Rodger ;
Bourcey, Nicolas ;
Cheng, Daniel W. ;
Chlachidze, Guram ;
Cooley, Lance D. ;
Troitino, Salvador Ferradas ;
Fiscarelli, Lucio ;
Fleiter, Jerome ;
Guinchard, Michael ;
Bermudez, Susana Izquierdo ;
Krave, Steven ;
Lackner, Friedrich ;
Mangiarotti, Franco ;
Marchevsky, Maxim ;
Marinozzi, Vittorio ;
Muratore, Joseph ;
Nobrega, Alfred ;
Pan, Heng ;
Perez, Juan Carlos ;
Pong, Ian ;
Prestemon, Soren ;
Prin, Herve ;
Ravaioli, Emmanuele ;
Sabbi, Gian Luca ;
Schmalzle, Jesse ;
Tavares, Sandra Sequeira ;
Stoynev, Stoyan ;
Todesco, Emilov ;
Vallone, Giorgio ;
Wanderer, Peter ;
Wang, Xiaorong ;
Yu, Miao .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2019, 29 (05)