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Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T

The Nb$_3$Sn block coil dipole magnet FRESCA2 was developed within the framework of a collaboration between CEA Saclay and CERN, in the continuity of the European project EuCARD and EuCARD2. With an aperture of 100 mm and a target bore field of 13 T at 10.6 kA, the magnet is required for a new FRESC...

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Autores principales: Willering, Gerard, Arnestad, Havard, Bajko, Marta, Bajas, Hugo, Bortot, Lorenzo, Bottura, Luca, Bourcey, Nicolas, Duda, Michal, Ferracin, Paolo, Feuvrier, Jerome, Grosclaude, Philippe, Mangiarotti, Franco, Araujo, Douglas Martins, Perez, Juan Carlos, Petrone, Carlo, Rochepault, Etienne, de Rijk, Gijs, Turi, Daniel, Durante, Maria, Manil, Pierre, Rondeaux, Francoise, Rifflet, Jean-Michel
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2019.2907280
http://cds.cern.ch/record/2688651
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author Willering, Gerard
Arnestad, Havard
Bajko, Marta
Bajas, Hugo
Bortot, Lorenzo
Bottura, Luca
Bourcey, Nicolas
Duda, Michal
Ferracin, Paolo
Feuvrier, Jerome
Grosclaude, Philippe
Mangiarotti, Franco
Araujo, Douglas Martins
Perez, Juan Carlos
Petrone, Carlo
Rochepault, Etienne
de Rijk, Gijs
Turi, Daniel
Durante, Maria
Manil, Pierre
Rondeaux, Francoise
Rifflet, Jean-Michel
author_facet Willering, Gerard
Arnestad, Havard
Bajko, Marta
Bajas, Hugo
Bortot, Lorenzo
Bottura, Luca
Bourcey, Nicolas
Duda, Michal
Ferracin, Paolo
Feuvrier, Jerome
Grosclaude, Philippe
Mangiarotti, Franco
Araujo, Douglas Martins
Perez, Juan Carlos
Petrone, Carlo
Rochepault, Etienne
de Rijk, Gijs
Turi, Daniel
Durante, Maria
Manil, Pierre
Rondeaux, Francoise
Rifflet, Jean-Michel
author_sort Willering, Gerard
collection CERN
description The Nb$_3$Sn block coil dipole magnet FRESCA2 was developed within the framework of a collaboration between CEA Saclay and CERN, in the continuity of the European project EuCARD and EuCARD2. With an aperture of 100 mm and a target bore field of 13 T at 10.6 kA, the magnet is required for a new FRESCA2 cable test facility at CERN. In 2017, the magnet was pre-loaded to retain the forces while the magnet was powered to achieve 13.3 T in the magnet bore. Results of these tests were published. In 2018, the loading of the magnet has been increased for powering to higher current. In this paper, the updated results of the cold powering tests are discussed in terms of training, memory, and stable operation. The loading of the magnet and the mechanical measurements during cooldown are shown and compared to the earlier loading steps. The protection of the magnet is further reviewed and measured results are compared to the model simulations.
id oai-inspirehep.net-1746838
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17468382019-09-30T06:29:59Zdoi:10.1109/TASC.2019.2907280http://cds.cern.ch/record/2688651engWillering, GerardArnestad, HavardBajko, MartaBajas, HugoBortot, LorenzoBottura, LucaBourcey, NicolasDuda, MichalFerracin, PaoloFeuvrier, JeromeGrosclaude, PhilippeMangiarotti, FrancoAraujo, Douglas MartinsPerez, Juan CarlosPetrone, CarloRochepault, Etiennede Rijk, GijsTuri, DanielDurante, MariaManil, PierreRondeaux, FrancoiseRifflet, Jean-MichelTests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 TAccelerators and Storage RingsThe Nb$_3$Sn block coil dipole magnet FRESCA2 was developed within the framework of a collaboration between CEA Saclay and CERN, in the continuity of the European project EuCARD and EuCARD2. With an aperture of 100 mm and a target bore field of 13 T at 10.6 kA, the magnet is required for a new FRESCA2 cable test facility at CERN. In 2017, the magnet was pre-loaded to retain the forces while the magnet was powered to achieve 13.3 T in the magnet bore. Results of these tests were published. In 2018, the loading of the magnet has been increased for powering to higher current. In this paper, the updated results of the cold powering tests are discussed in terms of training, memory, and stable operation. The loading of the magnet and the mechanical measurements during cooldown are shown and compared to the earlier loading steps. The protection of the magnet is further reviewed and measured results are compared to the model simulations.oai:inspirehep.net:17468382019
spellingShingle Accelerators and Storage Rings
Willering, Gerard
Arnestad, Havard
Bajko, Marta
Bajas, Hugo
Bortot, Lorenzo
Bottura, Luca
Bourcey, Nicolas
Duda, Michal
Ferracin, Paolo
Feuvrier, Jerome
Grosclaude, Philippe
Mangiarotti, Franco
Araujo, Douglas Martins
Perez, Juan Carlos
Petrone, Carlo
Rochepault, Etienne
de Rijk, Gijs
Turi, Daniel
Durante, Maria
Manil, Pierre
Rondeaux, Francoise
Rifflet, Jean-Michel
Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T
title Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T
title_full Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T
title_fullStr Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T
title_full_unstemmed Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T
title_short Tests of the FRESCA2 100 mm bore Nb$_3$Sn block-coil magnet to a record field of 14.6 T
title_sort tests of the fresca2 100 mm bore nb$_3$sn block-coil magnet to a record field of 14.6 t
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2019.2907280
http://cds.cern.ch/record/2688651
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