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Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC

For the HL-LHC project, a 90 mm NbTi cos(2θ) double aperture quadrupole magnet with an operating gradient of 120 T/m at 1.9 K has been designed as an option to replace the 70 mm aperture LHC quadrupole MQY. CEA in collaboration with CERN designed and manufactured a single aperture short model magnet...

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Detalles Bibliográficos
Autores principales: Simon, D, Perraud, S, Felice, H, Godon, R, Machado, R Correia, Gheller, J M, Bouziat, D, Stepanov, V, Madur, A, Segreti, M, Molinié, F, Hervieu, B, Antoni, P De, Guihard, Q, Relland, J, Perez, J C, Foussat, A, Petrone, C, Fiscarelli, L, Bonora, M, Todesco, E
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2022.3163076
http://cds.cern.ch/record/2859849
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author Simon, D
Perraud, S
Felice, H
Godon, R
Machado, R Correia
Gheller, J M
Bouziat, D
Stepanov, V
Madur, A
Segreti, M
Molinié, F
Hervieu, B
Antoni, P De
Guihard, Q
Relland, J
Perez, J C
Foussat, A
Petrone, C
Fiscarelli, L
Bonora, M
Todesco, E
author_facet Simon, D
Perraud, S
Felice, H
Godon, R
Machado, R Correia
Gheller, J M
Bouziat, D
Stepanov, V
Madur, A
Segreti, M
Molinié, F
Hervieu, B
Antoni, P De
Guihard, Q
Relland, J
Perez, J C
Foussat, A
Petrone, C
Fiscarelli, L
Bonora, M
Todesco, E
author_sort Simon, D
collection CERN
description For the HL-LHC project, a 90 mm NbTi cos(2θ) double aperture quadrupole magnet with an operating gradient of 120 T/m at 1.9 K has been designed as an option to replace the 70 mm aperture LHC quadrupole MQY. CEA in collaboration with CERN designed and manufactured a single aperture short model magnet with a magnetic length of 1.215 m at 1.9 K called MQYYM. The MQYYM cold test occurred at CEA at 4.2 K in a vertical cryogenic station. During the power test, the operating gradient at 1.9 K has been reached after two training quenches. All along the test, magnetic and mechanical measurements were done using respectively a rotating probe and strain gauges. This paper describes the performance of the MQYYM at 4.2 K and gives an analysis of the data acquired during the test, including training behavior, quench detection, protection and field quality measurements.
id cern-2859849
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28598492023-06-06T09:21:02Zdoi:10.1109/TASC.2022.3163076http://cds.cern.ch/record/2859849engSimon, DPerraud, SFelice, HGodon, RMachado, R CorreiaGheller, J MBouziat, DStepanov, VMadur, ASegreti, MMolinié, FHervieu, BAntoni, P DeGuihard, QRelland, JPerez, J CFoussat, APetrone, CFiscarelli, LBonora, MTodesco, ETest Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHCAccelerators and Storage RingsFor the HL-LHC project, a 90 mm NbTi cos(2θ) double aperture quadrupole magnet with an operating gradient of 120 T/m at 1.9 K has been designed as an option to replace the 70 mm aperture LHC quadrupole MQY. CEA in collaboration with CERN designed and manufactured a single aperture short model magnet with a magnetic length of 1.215 m at 1.9 K called MQYYM. The MQYYM cold test occurred at CEA at 4.2 K in a vertical cryogenic station. During the power test, the operating gradient at 1.9 K has been reached after two training quenches. All along the test, magnetic and mechanical measurements were done using respectively a rotating probe and strain gauges. This paper describes the performance of the MQYYM at 4.2 K and gives an analysis of the data acquired during the test, including training behavior, quench detection, protection and field quality measurements.oai:cds.cern.ch:28598492022
spellingShingle Accelerators and Storage Rings
Simon, D
Perraud, S
Felice, H
Godon, R
Machado, R Correia
Gheller, J M
Bouziat, D
Stepanov, V
Madur, A
Segreti, M
Molinié, F
Hervieu, B
Antoni, P De
Guihard, Q
Relland, J
Perez, J C
Foussat, A
Petrone, C
Fiscarelli, L
Bonora, M
Todesco, E
Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC
title Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC
title_full Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC
title_fullStr Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC
title_full_unstemmed Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC
title_short Test Results of the MQYYM: A 90 Mm NbTi Quadrupole Magnet Option for HL-LHC
title_sort test results of the mqyym: a 90 mm nbti quadrupole magnet option for hl-lhc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2022.3163076
http://cds.cern.ch/record/2859849
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