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LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K
Over the last five years, the model MQXC quadruple, a 120 mm aperture, 120 T/m, 1.8 m long, Nb-Ti version of the LHC insertion upgrade (due in 2021), has been developed at CERN. The magnet incorporates several novel concepts to extract high levels of heat flux and provide high quality field harmonic...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2014
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1109/TASC.2013.2284962 http://cds.cern.ch/record/1662583 |
_version_ | 1780935187696189440 |
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author | Kirby, G A Auchmann, B Bajko, M Datskov, V I Durante, M Fessia, P Feuvrier, J Guinchard, M Giloux, C Granieri, P P Manil, P Perez, J C Ravaioli, E Rifflet, J M Russenschuck, S Sahner, T Segreti, M Todesco, E Willering, G |
author_facet | Kirby, G A Auchmann, B Bajko, M Datskov, V I Durante, M Fessia, P Feuvrier, J Guinchard, M Giloux, C Granieri, P P Manil, P Perez, J C Ravaioli, E Rifflet, J M Russenschuck, S Sahner, T Segreti, M Todesco, E Willering, G |
author_sort | Kirby, G A |
collection | CERN |
description | Over the last five years, the model MQXC quadruple, a 120 mm aperture, 120 T/m, 1.8 m long, Nb-Ti version of the LHC insertion upgrade (due in 2021), has been developed at CERN. The magnet incorporates several novel concepts to extract high levels of heat flux and provide high quality field harmonics throughout the full operating current range. Existing LHC-dipole cable with new, open cable and ground insulation was used. Two, nominally identical 1.8 m long magnets were built and tested at 1.8 K at the CERN SM18 test facility. This paper compares in detail the two magnet tests and presents: quench performance, internal stresses, heat extraction simulating radiation loading in the superconducting coils, and quench protection measurements. The first set of tests highlighted the conflict between high magnet cooling capability and quench protection. The second magnet had additional instrumentation to investigate further this phenomenon. Finally we present test results from a new type of superconducting magnet protection system. |
id | cern-1662583 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2014 |
record_format | invenio |
spelling | cern-16625832019-09-30T06:29:59Zdoi:10.1109/TASC.2013.2284962http://cds.cern.ch/record/1662583engKirby, G AAuchmann, BBajko, MDatskov, V IDurante, MFessia, PFeuvrier, JGuinchard, MGiloux, CGranieri, P PManil, PPerez, J CRavaioli, ERifflet, J MRussenschuck, SSahner, TSegreti, MTodesco, EWillering, GLHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8KAccelerators and Storage RingsOver the last five years, the model MQXC quadruple, a 120 mm aperture, 120 T/m, 1.8 m long, Nb-Ti version of the LHC insertion upgrade (due in 2021), has been developed at CERN. The magnet incorporates several novel concepts to extract high levels of heat flux and provide high quality field harmonics throughout the full operating current range. Existing LHC-dipole cable with new, open cable and ground insulation was used. Two, nominally identical 1.8 m long magnets were built and tested at 1.8 K at the CERN SM18 test facility. This paper compares in detail the two magnet tests and presents: quench performance, internal stresses, heat extraction simulating radiation loading in the superconducting coils, and quench protection measurements. The first set of tests highlighted the conflict between high magnet cooling capability and quench protection. The second magnet had additional instrumentation to investigate further this phenomenon. Finally we present test results from a new type of superconducting magnet protection system.CERN-ACC-2014-0032oai:cds.cern.ch:16625832014-02-19 |
spellingShingle | Accelerators and Storage Rings Kirby, G A Auchmann, B Bajko, M Datskov, V I Durante, M Fessia, P Feuvrier, J Guinchard, M Giloux, C Granieri, P P Manil, P Perez, J C Ravaioli, E Rifflet, J M Russenschuck, S Sahner, T Segreti, M Todesco, E Willering, G LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K |
title | LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K |
title_full | LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K |
title_fullStr | LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K |
title_full_unstemmed | LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K |
title_short | LHC IR Upgrade Nb-Ti, 120mm Aperture Model Quadrupole Test Results at 1.8K |
title_sort | lhc ir upgrade nb-ti, 120mm aperture model quadrupole test results at 1.8k |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.1109/TASC.2013.2284962 http://cds.cern.ch/record/1662583 |
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