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Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K

In the scope of the High Field Magnets work package of the European FP7-EuCARD project, the structure of the future dipole magnet RMC and FRESCA2 has been tested at liquid nitrogen temperature replacing the actual Nb$_{3}$Sn-based coils by aluminium dummy coils. Such test aims at measuring during th...

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Detalles Bibliográficos
Autores principales: Bajas, H, Bajko, M, Benda, V, Bottura, L, Bourgeois, G, Charrondiere, M, Chiuchiolo, A, Ferracin, P, Guinchard, M, Garcia, J E Muñoz, Giloux, C, Juchno, M, Perez, J C, de Rijk, G, Viret, P, Ziemianski, D T
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.phpro.2015.06.096
http://cds.cern.ch/record/2145872
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author Bajas, H
Bajko, M
Benda, V
Bottura, L
Bourgeois, G
Charrondiere, M
Chiuchiolo, A
Ferracin, P
Guinchard, M
Garcia, J E Muñoz
Giloux, C
Juchno, M
Perez, J C
de Rijk, G
Viret, P
Ziemianski, D T
author_facet Bajas, H
Bajko, M
Benda, V
Bottura, L
Bourgeois, G
Charrondiere, M
Chiuchiolo, A
Ferracin, P
Guinchard, M
Garcia, J E Muñoz
Giloux, C
Juchno, M
Perez, J C
de Rijk, G
Viret, P
Ziemianski, D T
author_sort Bajas, H
collection CERN
description In the scope of the High Field Magnets work package of the European FP7-EuCARD project, the structure of the future dipole magnet RMC and FRESCA2 has been tested at liquid nitrogen temperature replacing the actual Nb$_{3}$Sn-based coils by aluminium dummy coils. Such test aims at measuring during the cooling the evolution of the mechanical stresses and the temperatures via compensated strain gauges and carbon-ceramic sensors placed at various locations on the structure (shell, rods, yokes, dummy coils). These measurements help assess the thermo-mechanical behaviour of the assembly for different applied pre-stresses and validate the finite element simulation of the magnet cooling before including the definitive brittle Nb$_{3}$Sn coils. For this purpose, a specific cool-down/warm-up nitrogen test station has been built up at CERN in order to control the required maximum temperature gradient in the magnet during both cooling and warming. In this paper, we present in detail the test facility, the instrumentation along with the automatic process control system. An analytical approach computing the expected temperature evolution during a thermal cycle is introduced and the temperature measurements related to the magnets cooling down to 77 K and warm up to room temperature are presented.
id oai-inspirehep.net-1384371
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling oai-inspirehep.net-13843712022-08-10T13:07:51Zdoi:10.1016/j.phpro.2015.06.096http://cds.cern.ch/record/2145872engBajas, HBajko, MBenda, VBottura, LBourgeois, GCharrondiere, MChiuchiolo, AFerracin, PGuinchard, MGarcia, J E MuñozGiloux, CJuchno, MPerez, J Cde Rijk, GViret, PZiemianski, D TTest Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 KAccelerators and Storage RingsIn the scope of the High Field Magnets work package of the European FP7-EuCARD project, the structure of the future dipole magnet RMC and FRESCA2 has been tested at liquid nitrogen temperature replacing the actual Nb$_{3}$Sn-based coils by aluminium dummy coils. Such test aims at measuring during the cooling the evolution of the mechanical stresses and the temperatures via compensated strain gauges and carbon-ceramic sensors placed at various locations on the structure (shell, rods, yokes, dummy coils). These measurements help assess the thermo-mechanical behaviour of the assembly for different applied pre-stresses and validate the finite element simulation of the magnet cooling before including the definitive brittle Nb$_{3}$Sn coils. For this purpose, a specific cool-down/warm-up nitrogen test station has been built up at CERN in order to control the required maximum temperature gradient in the magnet during both cooling and warming. In this paper, we present in detail the test facility, the instrumentation along with the automatic process control system. An analytical approach computing the expected temperature evolution during a thermal cycle is introduced and the temperature measurements related to the magnets cooling down to 77 K and warm up to room temperature are presented.oai:inspirehep.net:13843712015
spellingShingle Accelerators and Storage Rings
Bajas, H
Bajko, M
Benda, V
Bottura, L
Bourgeois, G
Charrondiere, M
Chiuchiolo, A
Ferracin, P
Guinchard, M
Garcia, J E Muñoz
Giloux, C
Juchno, M
Perez, J C
de Rijk, G
Viret, P
Ziemianski, D T
Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K
title Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K
title_full Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K
title_fullStr Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K
title_full_unstemmed Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K
title_short Test Set-Up for the Cooling of Heavy Magnets by Controlled Way Down to 77 K
title_sort test set-up for the cooling of heavy magnets by controlled way down to 77 k
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1016/j.phpro.2015.06.096
http://cds.cern.ch/record/2145872
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