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Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC

Racetrack model coils (RMC) have been built at CERN during the past decade, as an R&D; tool to qualify conductors and technologies developed for high field superconducting accelerator magnets (Perez et al. , 2016). RMC, assembled in a dipole magnet configuration, proved to be an efficient instr...

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Autores principales: Perez, J C, Bajko, M, Bourcey, N, Bordini, B, Bottura, L, Troitiño, S Ferradás, Gautheron, E, Guinchard, M, Bermudez, S Izquierdo, Mangearotti, F, Petrone, C, Tommasini, D, Willering, G
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2022.3163064
http://cds.cern.ch/record/2859809
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author Perez, J C
Bajko, M
Bourcey, N
Bordini, B
Bottura, L
Troitiño, S Ferradás
Gautheron, E
Guinchard, M
Bermudez, S Izquierdo
Mangearotti, F
Petrone, C
Tommasini, D
Willering, G
author_facet Perez, J C
Bajko, M
Bourcey, N
Bordini, B
Bottura, L
Troitiño, S Ferradás
Gautheron, E
Guinchard, M
Bermudez, S Izquierdo
Mangearotti, F
Petrone, C
Tommasini, D
Willering, G
author_sort Perez, J C
collection CERN
description Racetrack model coils (RMC) have been built at CERN during the past decade, as an R&D; tool to qualify conductors and technologies developed for high field superconducting accelerator magnets (Perez et al. , 2016). RMC, assembled in a dipole magnet configuration, proved to be an efficient instrument reducing cost and feed-back time while developing new magnets. In a similar way, as for the High-Luminosity Large Hadron Collider (HL-LHC) project, CERN has designed the enhanced RMC (eRMC) made of two flat coils using 40 (1 mm diameter) Nb 3 Sn strand cable produced with Rod Restack Process (RRP) technology. This conductor geometry, originally designed and produced to build the block coil dipole magnet FRESCA2 (Rochepault et al. , 2019), was chosen to reduce the production time and shorten the road towards the feasibility demonstration to reach 16–18 T magnetic fields in a dipolar configuration. Like previous model coils built at CERN (Short model coils (SMC) & RMC), eRMC1a has been built using the “bladders and keys” type mechanical structure. This paper describes the main construction steps and the powering test results. At 1.9 K the magnet produced 16.5 T peak field in the conductor, the highest ever for a dipole magnet of this configuration.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28598092023-06-06T09:20:55Zdoi:10.1109/TASC.2022.3163064http://cds.cern.ch/record/2859809engPerez, J CBajko, MBourcey, NBordini, BBottura, LTroitiño, S FerradásGautheron, EGuinchard, MBermudez, S IzquierdoMangearotti, FPetrone, CTommasini, DWillering, GConstruction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCCAccelerators and Storage RingsRacetrack model coils (RMC) have been built at CERN during the past decade, as an R&D; tool to qualify conductors and technologies developed for high field superconducting accelerator magnets (Perez et al. , 2016). RMC, assembled in a dipole magnet configuration, proved to be an efficient instrument reducing cost and feed-back time while developing new magnets. In a similar way, as for the High-Luminosity Large Hadron Collider (HL-LHC) project, CERN has designed the enhanced RMC (eRMC) made of two flat coils using 40 (1 mm diameter) Nb 3 Sn strand cable produced with Rod Restack Process (RRP) technology. This conductor geometry, originally designed and produced to build the block coil dipole magnet FRESCA2 (Rochepault et al. , 2019), was chosen to reduce the production time and shorten the road towards the feasibility demonstration to reach 16–18 T magnetic fields in a dipolar configuration. Like previous model coils built at CERN (Short model coils (SMC) & RMC), eRMC1a has been built using the “bladders and keys” type mechanical structure. This paper describes the main construction steps and the powering test results. At 1.9 K the magnet produced 16.5 T peak field in the conductor, the highest ever for a dipole magnet of this configuration.oai:cds.cern.ch:28598092022
spellingShingle Accelerators and Storage Rings
Perez, J C
Bajko, M
Bourcey, N
Bordini, B
Bottura, L
Troitiño, S Ferradás
Gautheron, E
Guinchard, M
Bermudez, S Izquierdo
Mangearotti, F
Petrone, C
Tommasini, D
Willering, G
Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC
title Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC
title_full Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC
title_fullStr Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC
title_full_unstemmed Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC
title_short Construction and Test of the Enhanced Racetrack Model Coil, First CERN R&D; Magnet for the FCC
title_sort construction and test of the enhanced racetrack model coil, first cern r&d; magnet for the fcc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2022.3163064
http://cds.cern.ch/record/2859809
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