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3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole

F2D2, the FCC Flared-ends Dipole Demonstrator, is a 15 T single-aperture short model being developed within a collaboration between CEA Paris-Saclay and CERN. The design phase is ongoing at CEA; the magnet will be fabricated at CEA and then tested at CERN. The 2D magnetic and mechanical designs have...

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Autores principales: Rochepault, Etienne, Calvelli, Valerio, Durante, Maria, Felice, Helene, Mallon, Philip, Manil, Pierre, Millot, Jean-Francois, Minier, Gilles, Izquierdo Bermudez, Susana
Lenguaje:eng
Publicado: 2020
Acceso en línea:https://dx.doi.org/10.1109/TASC.2020.2969612
http://cds.cern.ch/record/2744555
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author Rochepault, Etienne
Calvelli, Valerio
Durante, Maria
Felice, Helene
Mallon, Philip
Manil, Pierre
Millot, Jean-Francois
Minier, Gilles
Izquierdo Bermudez, Susana
author_facet Rochepault, Etienne
Calvelli, Valerio
Durante, Maria
Felice, Helene
Mallon, Philip
Manil, Pierre
Millot, Jean-Francois
Minier, Gilles
Izquierdo Bermudez, Susana
author_sort Rochepault, Etienne
collection CERN
description F2D2, the FCC Flared-ends Dipole Demonstrator, is a 15 T single-aperture short model being developed within a collaboration between CEA Paris-Saclay and CERN. The design phase is ongoing at CEA; the magnet will be fabricated at CEA and then tested at CERN. The 2D magnetic and mechanical designs have been optimized previously and allowed defining the operating points and the required structural components. This paper reports on the preliminary design phase, focused on 3D mechanical optimizations of coils and structure. F2D2 will be the first Nb3Sn block-coil magnet using two cable grades. The cables will be spliced outside of the magnet, which represents one of the most complex design feature, and requires a special focus on the magnet ends. To do so, the design of the magnet has been performed using a CAD (Computer Aided Design) and both magnetic and mechanical 3D FEM (Finite-Elements Models). The CAD defines precisely the complex coil-ends shape that allows positioning the layer jumps and routing the cable exits. The FEM are used to optimize the longitudinal pre-load system in order to contain the large Lorentz forces during operation. The magnet is pre-loaded transversally with bladders and keys and with an external Al shell; and longitudinally with Al tie-rods and end-plates. The pre-load levels are computed to operate the magnet under sufficient compression, while minimizing the stress in the coil and avoid degradation.
id oai-inspirehep.net-1825884
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18258842020-11-15T20:18:16Zdoi:10.1109/TASC.2020.2969612http://cds.cern.ch/record/2744555engRochepault, EtienneCalvelli, ValerioDurante, MariaFelice, HeleneMallon, PhilipManil, PierreMillot, Jean-FrancoisMinier, GillesIzquierdo Bermudez, Susana3D Conceptual Design of F2D2, the FCC Block-Coil Short Model DipoleF2D2, the FCC Flared-ends Dipole Demonstrator, is a 15 T single-aperture short model being developed within a collaboration between CEA Paris-Saclay and CERN. The design phase is ongoing at CEA; the magnet will be fabricated at CEA and then tested at CERN. The 2D magnetic and mechanical designs have been optimized previously and allowed defining the operating points and the required structural components. This paper reports on the preliminary design phase, focused on 3D mechanical optimizations of coils and structure. F2D2 will be the first Nb3Sn block-coil magnet using two cable grades. The cables will be spliced outside of the magnet, which represents one of the most complex design feature, and requires a special focus on the magnet ends. To do so, the design of the magnet has been performed using a CAD (Computer Aided Design) and both magnetic and mechanical 3D FEM (Finite-Elements Models). The CAD defines precisely the complex coil-ends shape that allows positioning the layer jumps and routing the cable exits. The FEM are used to optimize the longitudinal pre-load system in order to contain the large Lorentz forces during operation. The magnet is pre-loaded transversally with bladders and keys and with an external Al shell; and longitudinally with Al tie-rods and end-plates. The pre-load levels are computed to operate the magnet under sufficient compression, while minimizing the stress in the coil and avoid degradation.oai:inspirehep.net:18258842020
spellingShingle Rochepault, Etienne
Calvelli, Valerio
Durante, Maria
Felice, Helene
Mallon, Philip
Manil, Pierre
Millot, Jean-Francois
Minier, Gilles
Izquierdo Bermudez, Susana
3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole
title 3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole
title_full 3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole
title_fullStr 3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole
title_full_unstemmed 3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole
title_short 3D Conceptual Design of F2D2, the FCC Block-Coil Short Model Dipole
title_sort 3d conceptual design of f2d2, the fcc block-coil short model dipole
url https://dx.doi.org/10.1109/TASC.2020.2969612
http://cds.cern.ch/record/2744555
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