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Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC
The cold powering test of the first two prototypes of the MQXFB quadrupoles (MQXFBP1, now disassembled, and MQXFBP2), the Nb3Sn inner triplet magnets to be installed in the HL-LHC, has validated many features of the design, such as field quality and quench protection, but has found performance limit...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2853516 |
_version_ | 1780977217872855040 |
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author | Izquierdo Bermudez, Susana Ambrosio, Giorgio Apollinari, Giorgio Ballarino, Amalia Barth, Christian Crouvizier, Mickael Denis Duarte Ramos, Delio Devred, Arnaud Feher, Sandor Felice, Helene Ferracin, Paolo Ferradas Troitino, Jose Guinchard, Michael Lusa, Nicholas Mangiarotti, Franco Milanese, Attilio Moros, Alice Prin, Herve Russenschuck, Stephan Sgobba, Stefano Todesco, Ezio Willering, Gerard |
author_facet | Izquierdo Bermudez, Susana Ambrosio, Giorgio Apollinari, Giorgio Ballarino, Amalia Barth, Christian Crouvizier, Mickael Denis Duarte Ramos, Delio Devred, Arnaud Feher, Sandor Felice, Helene Ferracin, Paolo Ferradas Troitino, Jose Guinchard, Michael Lusa, Nicholas Mangiarotti, Franco Milanese, Attilio Moros, Alice Prin, Herve Russenschuck, Stephan Sgobba, Stefano Todesco, Ezio Willering, Gerard |
author_sort | Izquierdo Bermudez, Susana |
collection | CERN |
description | The cold powering test of the first two prototypes of the MQXFB quadrupoles (MQXFBP1, now disassembled, and MQXFBP2), the Nb3Sn inner triplet magnets to be installed in the HL-LHC, has validated many features of the design, such as field quality and quench protection, but has found performance limitations. In fact, both magnets showed a similar phenomenology, characterized by reproducible quenches in the straight part inner layer pole turn, with absence of training and limiting the performance at 93% (MQXFBP1) and 98% (MQXFBP2) of the nominal current at 1.9 K, required for HL-LHC operation at 7 TeV. Microstructural inspections of the quenching section of the limiting coil in MQXFBP1 have identified fractured Nb3Sn sub-elements in strands located at one specific position of the inner layer pole turn, allowing to determine the precise origin of the performance limitation. In this paper we outline the strategy that has been defined to address the possible sources of performance limitation, namely coil manufacturing, magnet assembly and integration in the cold mass. |
id | cern-2853516 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28535162023-03-28T10:05:29Zhttp://cds.cern.ch/record/2853516engIzquierdo Bermudez, SusanaAmbrosio, GiorgioApollinari, GiorgioBallarino, AmaliaBarth, ChristianCrouvizier, Mickael DenisDuarte Ramos, DelioDevred, ArnaudFeher, SandorFelice, HeleneFerracin, PaoloFerradas Troitino, JoseGuinchard, MichaelLusa, NicholasMangiarotti, FrancoMilanese, AttilioMoros, AlicePrin, HerveRussenschuck, StephanSgobba, StefanoTodesco, EzioWillering, GerardStatus of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHCParticle Physics - TheoryThe cold powering test of the first two prototypes of the MQXFB quadrupoles (MQXFBP1, now disassembled, and MQXFBP2), the Nb3Sn inner triplet magnets to be installed in the HL-LHC, has validated many features of the design, such as field quality and quench protection, but has found performance limitations. In fact, both magnets showed a similar phenomenology, characterized by reproducible quenches in the straight part inner layer pole turn, with absence of training and limiting the performance at 93% (MQXFBP1) and 98% (MQXFBP2) of the nominal current at 1.9 K, required for HL-LHC operation at 7 TeV. Microstructural inspections of the quenching section of the limiting coil in MQXFBP1 have identified fractured Nb3Sn sub-elements in strands located at one specific position of the inner layer pole turn, allowing to determine the precise origin of the performance limitation. In this paper we outline the strategy that has been defined to address the possible sources of performance limitation, namely coil manufacturing, magnet assembly and integration in the cold mass.FERMILAB-PUB-22-860-TDoai:cds.cern.ch:28535162022 |
spellingShingle | Particle Physics - Theory Izquierdo Bermudez, Susana Ambrosio, Giorgio Apollinari, Giorgio Ballarino, Amalia Barth, Christian Crouvizier, Mickael Denis Duarte Ramos, Delio Devred, Arnaud Feher, Sandor Felice, Helene Ferracin, Paolo Ferradas Troitino, Jose Guinchard, Michael Lusa, Nicholas Mangiarotti, Franco Milanese, Attilio Moros, Alice Prin, Herve Russenschuck, Stephan Sgobba, Stefano Todesco, Ezio Willering, Gerard Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC |
title | Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC |
title_full | Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC |
title_fullStr | Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC |
title_full_unstemmed | Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC |
title_short | Status of the MQXFB Nb$_3$Sn quadrupoles for the HL-LHC |
title_sort | status of the mqxfb nb$_3$sn quadrupoles for the hl-lhc |
topic | Particle Physics - Theory |
url | http://cds.cern.ch/record/2853516 |
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