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Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC
For the HL-LHC project, a 90 mm double aperture NbTi quadrupole magnet is being developed as an option to replace the 70 mm aperture LHC quadrupole MQY. This cos2θ magnet has an operating gradient of 120 T/m at 1.9 K and a magnetic length of 3.67 m. A single aperture short model magnet with a magnet...
Autores principales: | , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2020
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Acceso en línea: | https://dx.doi.org/10.1109/TASC.2020.2966459 http://cds.cern.ch/record/2744553 |
_version_ | 1780968701073293312 |
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author | Simon, Damien Felice, Helene Perraud, Simon Rifflet, Jean-Michel Rochepault, Etienne Segreti, Michel Ollier, Randy Minier, Gilles Graffin, Patrick Perez, Juan C Foussat, Arnaud Troitiño, S Ferradás Naini, S Emami Guinchard, Michael Todesco, Ezio |
author_facet | Simon, Damien Felice, Helene Perraud, Simon Rifflet, Jean-Michel Rochepault, Etienne Segreti, Michel Ollier, Randy Minier, Gilles Graffin, Patrick Perez, Juan C Foussat, Arnaud Troitiño, S Ferradás Naini, S Emami Guinchard, Michael Todesco, Ezio |
author_sort | Simon, Damien |
collection | CERN |
description | For the HL-LHC project, a 90 mm double aperture NbTi quadrupole magnet is being developed as an option to replace the 70 mm aperture LHC quadrupole MQY. This cos2θ magnet has an operating gradient of 120 T/m at 1.9 K and a magnetic length of 3.67 m. A single aperture short model magnet with a magnetic length of 1.2 m has been designed at CEA and is being manufactured in collaboration with CERN. The magnet support structure is relying on self-supporting collars. We present here the mechanical analysis along with the assembly of the short model magnet from coil fabrication and mechanical characterization to collaring and yoking. |
id | oai-inspirehep.net-1825882 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2020 |
record_format | invenio |
spelling | oai-inspirehep.net-18258822022-08-17T12:59:47Zdoi:10.1109/TASC.2020.2966459http://cds.cern.ch/record/2744553engSimon, DamienFelice, HelenePerraud, SimonRifflet, Jean-MichelRochepault, EtienneSegreti, MichelOllier, RandyMinier, GillesGraffin, PatrickPerez, Juan CFoussat, ArnaudTroitiño, S FerradásNaini, S EmamiGuinchard, MichaelTodesco, EzioMechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHCFor the HL-LHC project, a 90 mm double aperture NbTi quadrupole magnet is being developed as an option to replace the 70 mm aperture LHC quadrupole MQY. This cos2θ magnet has an operating gradient of 120 T/m at 1.9 K and a magnetic length of 3.67 m. A single aperture short model magnet with a magnetic length of 1.2 m has been designed at CEA and is being manufactured in collaboration with CERN. The magnet support structure is relying on self-supporting collars. We present here the mechanical analysis along with the assembly of the short model magnet from coil fabrication and mechanical characterization to collaring and yoking.oai:inspirehep.net:18258822020 |
spellingShingle | Simon, Damien Felice, Helene Perraud, Simon Rifflet, Jean-Michel Rochepault, Etienne Segreti, Michel Ollier, Randy Minier, Gilles Graffin, Patrick Perez, Juan C Foussat, Arnaud Troitiño, S Ferradás Naini, S Emami Guinchard, Michael Todesco, Ezio Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC |
title | Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC |
title_full | Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC |
title_fullStr | Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC |
title_full_unstemmed | Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC |
title_short | Mechanical Analysis and Assembly of MQYYM: A 90 mm NbTi Quadrupole Magnet Option for HL-LHC |
title_sort | mechanical analysis and assembly of mqyym: a 90 mm nbti quadrupole magnet option for hl-lhc |
url | https://dx.doi.org/10.1109/TASC.2020.2966459 http://cds.cern.ch/record/2744553 |
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