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Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC

The next generation particle accelerators will need to increase by an order of magnitude the center-of-mass energy: a viable solution is a 100 TeV circular collider, temporarily called Future Circular Collider (FCC). To achieve this goal, a new generation of double aperture superconducting magnets,...

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Autores principales: Pampaloni, Alessandra, Bellomo, Giovanni, Burioli, Sergio, De Matteis, Ernesto, Fabbricatore, Pasquale, Farinon, Stefania, Lackner, Friedrich, Levi, Filippo, Mariotto, Samuele, Musenich, Riccardo, Prioli, Marco, Sorbi, Massimo, Statera, Marco, Tommasini, Davide, Valente, R U
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2021.3061334
http://cds.cern.ch/record/2770775
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author Pampaloni, Alessandra
Bellomo, Giovanni
Burioli, Sergio
De Matteis, Ernesto
Fabbricatore, Pasquale
Farinon, Stefania
Lackner, Friedrich
Levi, Filippo
Mariotto, Samuele
Musenich, Riccardo
Prioli, Marco
Sorbi, Massimo
Statera, Marco
Tommasini, Davide
Valente, R U
author_facet Pampaloni, Alessandra
Bellomo, Giovanni
Burioli, Sergio
De Matteis, Ernesto
Fabbricatore, Pasquale
Farinon, Stefania
Lackner, Friedrich
Levi, Filippo
Mariotto, Samuele
Musenich, Riccardo
Prioli, Marco
Sorbi, Massimo
Statera, Marco
Tommasini, Davide
Valente, R U
author_sort Pampaloni, Alessandra
collection CERN
description The next generation particle accelerators will need to increase by an order of magnitude the center-of-mass energy: a viable solution is a 100 TeV circular collider, temporarily called Future Circular Collider (FCC). To achieve this goal, a new generation of double aperture superconducting magnets, capable of generating a high quality, stable 16 T magnetic field in a 50 mm bore is being developed. In order to achieve this challenging task, the CERN's plan includes several intermediate steps in the development of accelerator-grade Nb3Sn magnets. The first constructive phase will be a 1.5 m long, single aperture cos-theta dipole, with a target central magnetic field of 12 T and an ultimate field of 14 T. In this contribution, the preliminary 2D design of this short model, named Falcon Dipole (Future Accelerator post-Lhc Cos $\theta$Optimized Nb$_3$Sn Dipole) will be presented in detail. It features a 2-layers design, with Nb3Sn state-of-art conductor in order to generate the required field. A solution for the mechanical design will also be presented: the necessary pre-stress will be given by a shell-based concept using bladders and keys. This technique avoids giving all the pre-load with just the collaring and it allows to obtain about half of the pre-stress during the assembly of the magnet at room temperature, and full pre-stress in second instance thanks to the cool down. The FalconD project aims at gaining experience on the technology involved to reach fields above 11 T with Nb3Sn coils.
id oai-inspirehep.net-1860696
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling oai-inspirehep.net-18606962021-05-31T15:07:39Zdoi:10.1109/TASC.2021.3061334http://cds.cern.ch/record/2770775engPampaloni, AlessandraBellomo, GiovanniBurioli, SergioDe Matteis, ErnestoFabbricatore, PasqualeFarinon, StefaniaLackner, FriedrichLevi, FilippoMariotto, SamueleMusenich, RiccardoPrioli, MarcoSorbi, MassimoStatera, MarcoTommasini, DavideValente, R UPreliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCCAccelerators and Storage RingsThe next generation particle accelerators will need to increase by an order of magnitude the center-of-mass energy: a viable solution is a 100 TeV circular collider, temporarily called Future Circular Collider (FCC). To achieve this goal, a new generation of double aperture superconducting magnets, capable of generating a high quality, stable 16 T magnetic field in a 50 mm bore is being developed. In order to achieve this challenging task, the CERN's plan includes several intermediate steps in the development of accelerator-grade Nb3Sn magnets. The first constructive phase will be a 1.5 m long, single aperture cos-theta dipole, with a target central magnetic field of 12 T and an ultimate field of 14 T. In this contribution, the preliminary 2D design of this short model, named Falcon Dipole (Future Accelerator post-Lhc Cos $\theta$Optimized Nb$_3$Sn Dipole) will be presented in detail. It features a 2-layers design, with Nb3Sn state-of-art conductor in order to generate the required field. A solution for the mechanical design will also be presented: the necessary pre-stress will be given by a shell-based concept using bladders and keys. This technique avoids giving all the pre-load with just the collaring and it allows to obtain about half of the pre-stress during the assembly of the magnet at room temperature, and full pre-stress in second instance thanks to the cool down. The FalconD project aims at gaining experience on the technology involved to reach fields above 11 T with Nb3Sn coils.oai:inspirehep.net:18606962021
spellingShingle Accelerators and Storage Rings
Pampaloni, Alessandra
Bellomo, Giovanni
Burioli, Sergio
De Matteis, Ernesto
Fabbricatore, Pasquale
Farinon, Stefania
Lackner, Friedrich
Levi, Filippo
Mariotto, Samuele
Musenich, Riccardo
Prioli, Marco
Sorbi, Massimo
Statera, Marco
Tommasini, Davide
Valente, R U
Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC
title Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC
title_full Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC
title_fullStr Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC
title_full_unstemmed Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC
title_short Preliminary Design of the NB$_3$Sn $cos$ $\theta$ Short Model for the FCC
title_sort preliminary design of the nb$_3$sn $cos$ $\theta$ short model for the fcc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2021.3061334
http://cds.cern.ch/record/2770775
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