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Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4
For the High Luminosity Upgrade of the CERN Large Hadron Collider, lower $\beta$* quadrupole magnets based on advanced Nb3Sn conductors will be installed on each side of the ATLAS and CMS experiment insertion zones. As part of the technological developments needed to achieve the required field gradi...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
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2019
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2677218 |
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author | Mangiarotti, Franco J Bajas, Hugues Ambrosio, Giorgio Bajko, Marta Bordini, Bernardo Bourcey, Nicolas Duda, Michal Desbiolles, Vincent Feuvrier, Jerome Fleiter, Jerome Izquierdo Bermudez, Susana Chiuchiolo, Antonella Devred, Arnaud Ferracin, Paolo Fiscarelli, Lucio Mentink, Matthias Nobrega, Alfred Pepitone, Kevin Ravaioli, Emmanuele Schmalzle, Jesse Todesco, Ezio Perez, Juan Carlos Vallone, Giorgio Willering, Gerard Yu, Miao |
author_facet | Mangiarotti, Franco J Bajas, Hugues Ambrosio, Giorgio Bajko, Marta Bordini, Bernardo Bourcey, Nicolas Duda, Michal Desbiolles, Vincent Feuvrier, Jerome Fleiter, Jerome Izquierdo Bermudez, Susana Chiuchiolo, Antonella Devred, Arnaud Ferracin, Paolo Fiscarelli, Lucio Mentink, Matthias Nobrega, Alfred Pepitone, Kevin Ravaioli, Emmanuele Schmalzle, Jesse Todesco, Ezio Perez, Juan Carlos Vallone, Giorgio Willering, Gerard Yu, Miao |
author_sort | Mangiarotti, Franco J |
collection | CERN |
description | For the High Luminosity Upgrade of the CERN Large Hadron Collider, lower $\beta$* quadrupole magnets based on advanced Nb3Sn conductors will be installed on each side of the ATLAS and CMS experiment insertion zones. As part of the technological developments needed to achieve the required field gradient of 132.6 T/m within a 150-mm aperture, short length model magnets, named MQXFS, are tested both at the CERN SM18 and FERMI Lab test facilities. The model magnets rely on two types of Nb3Sn conductors (RRP and PIT) and on an innovative bladders and keys design to provide mechanical support against the Lorentz forces. In 2016 and 2017, the powering tests of the first two models MQXFS3 (RRP) and MQXFS5 (PIT) proved that nominal performance (16.5 kA) could be reached with excellent memory of the quench current after thermal cycle. However both magnets showed a slow training behavior with clear observations of voltage disturbances before the quench. Besides MQXFS5 only could reach ultimate current (17.9 kA) whereas erratic behavior was observed on MQXFS3 due to conductor local degradation at the head of one of the coil. In 2018, this limiting coil was changed and the applied azimuthal pre-stress increased. If ultimate current could then be reached, no stable current could be maintained due to identified defect on the outer layer of the new coil. Finally the outcome of the test of the new model MQXFS4, featuring the final RRP conductors that will be used for the series production and variation on the inner layer quench heater designs are here reported in details. |
id | oai-inspirehep.net-1722688 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | oai-inspirehep.net-17226882020-08-28T12:59:48Zhttp://cds.cern.ch/record/2677218engMangiarotti, Franco JBajas, HuguesAmbrosio, GiorgioBajko, MartaBordini, BernardoBourcey, NicolasDuda, MichalDesbiolles, VincentFeuvrier, JeromeFleiter, JeromeIzquierdo Bermudez, SusanaChiuchiolo, AntonellaDevred, ArnaudFerracin, PaoloFiscarelli, LucioMentink, MatthiasNobrega, AlfredPepitone, KevinRavaioli, EmmanueleSchmalzle, JesseTodesco, EzioPerez, Juan CarlosVallone, GiorgioWillering, GerardYu, MiaoTest Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4Accelerators and Storage RingsFor the High Luminosity Upgrade of the CERN Large Hadron Collider, lower $\beta$* quadrupole magnets based on advanced Nb3Sn conductors will be installed on each side of the ATLAS and CMS experiment insertion zones. As part of the technological developments needed to achieve the required field gradient of 132.6 T/m within a 150-mm aperture, short length model magnets, named MQXFS, are tested both at the CERN SM18 and FERMI Lab test facilities. The model magnets rely on two types of Nb3Sn conductors (RRP and PIT) and on an innovative bladders and keys design to provide mechanical support against the Lorentz forces. In 2016 and 2017, the powering tests of the first two models MQXFS3 (RRP) and MQXFS5 (PIT) proved that nominal performance (16.5 kA) could be reached with excellent memory of the quench current after thermal cycle. However both magnets showed a slow training behavior with clear observations of voltage disturbances before the quench. Besides MQXFS5 only could reach ultimate current (17.9 kA) whereas erratic behavior was observed on MQXFS3 due to conductor local degradation at the head of one of the coil. In 2018, this limiting coil was changed and the applied azimuthal pre-stress increased. If ultimate current could then be reached, no stable current could be maintained due to identified defect on the outer layer of the new coil. Finally the outcome of the test of the new model MQXFS4, featuring the final RRP conductors that will be used for the series production and variation on the inner layer quench heater designs are here reported in details.FERMILAB-PUB-19-055-TDoai:inspirehep.net:17226882019 |
spellingShingle | Accelerators and Storage Rings Mangiarotti, Franco J Bajas, Hugues Ambrosio, Giorgio Bajko, Marta Bordini, Bernardo Bourcey, Nicolas Duda, Michal Desbiolles, Vincent Feuvrier, Jerome Fleiter, Jerome Izquierdo Bermudez, Susana Chiuchiolo, Antonella Devred, Arnaud Ferracin, Paolo Fiscarelli, Lucio Mentink, Matthias Nobrega, Alfred Pepitone, Kevin Ravaioli, Emmanuele Schmalzle, Jesse Todesco, Ezio Perez, Juan Carlos Vallone, Giorgio Willering, Gerard Yu, Miao Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4 |
title | Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4 |
title_full | Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4 |
title_fullStr | Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4 |
title_full_unstemmed | Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4 |
title_short | Test Results of the CERN HL-LHC low-$\beta$ Quadrupole Short Models MQXFS3c and MQXFS4 |
title_sort | test results of the cern hl-lhc low-$\beta$ quadrupole short models mqxfs3c and mqxfs4 |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/2677218 |
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