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Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC

The high luminosity upgrade will enhance the discovery potential of the LHC in the next decade. Among other magnets and technologies currently under development, the MCBXF orbit correctors will be required to this end. In order to save space, they consist in two perpendicularly and coaxially arrange...

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Autores principales: García-Matos, Jesús Ángel, Abramian, Pablo, Calero, Jesus, García-Tabarés, Luis, Gómez, Pablo, Gutierrez, Jose L, Lopez, Daniel, Munilla, Javier, Toral, Fernando, Bourcey, Nicolas, Fessia, Paolo, Izquierdo Bermudez, Susana, Perez, Juan Carlos, Todesco, Ezio
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2017.2784806
http://cds.cern.ch/record/2306215
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author García-Matos, Jesús Ángel
Abramian, Pablo
Calero, Jesus
García-Tabarés, Luis
Gómez, Pablo
Gutierrez, Jose L
Lopez, Daniel
Munilla, Javier
Toral, Fernando
Bourcey, Nicolas
Fessia, Paolo
Izquierdo Bermudez, Susana
Perez, Juan Carlos
Todesco, Ezio
author_facet García-Matos, Jesús Ángel
Abramian, Pablo
Calero, Jesus
García-Tabarés, Luis
Gómez, Pablo
Gutierrez, Jose L
Lopez, Daniel
Munilla, Javier
Toral, Fernando
Bourcey, Nicolas
Fessia, Paolo
Izquierdo Bermudez, Susana
Perez, Juan Carlos
Todesco, Ezio
author_sort García-Matos, Jesús Ángel
collection CERN
description The high luminosity upgrade will enhance the discovery potential of the LHC in the next decade. Among other magnets and technologies currently under development, the MCBXF orbit correctors will be required to this end. In order to save space, they consist in two perpendicularly and coaxially arranged dipole coils under a large torque. Coils cannot be glued due to the high radiation dose expected, and mechanical clamping is mandatory. With the goal of turning the conceptual design into a tangible reality, this paper depicts the final magnetic design, with special attention to 3-D electromagnetic calculations and the different operation scenarios. It also includes more accurate mechanical FE models results, achieved by measuring the Young’s modulus of impregnated cable stacks. Besides assembly spring-back, cool-down, and enegization, simulations have been also carried out for the pressing process of both dipoles, analysing stress distribution, and displacements. Finally, a short mechanical model has been designed, fabricated, and tested. Its main purpose is to assess the feasibility of the proposed clamping structure, the reliability of the FE mechanical models and the design of an important part of the tooling required for the magnet fabrication.
id oai-inspirehep.net-1650744
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16507442022-08-17T12:59:29Zdoi:10.1109/TASC.2017.2784806http://cds.cern.ch/record/2306215engGarcía-Matos, Jesús ÁngelAbramian, PabloCalero, JesusGarcía-Tabarés, LuisGómez, PabloGutierrez, Jose LLopez, DanielMunilla, JavierToral, FernandoBourcey, NicolasFessia, PaoloIzquierdo Bermudez, SusanaPerez, Juan CarlosTodesco, EzioDetailed magnetic and mechanical design of the nested orbit correctors for HL-LHCAccelerators and Storage RingsThe high luminosity upgrade will enhance the discovery potential of the LHC in the next decade. Among other magnets and technologies currently under development, the MCBXF orbit correctors will be required to this end. In order to save space, they consist in two perpendicularly and coaxially arranged dipole coils under a large torque. Coils cannot be glued due to the high radiation dose expected, and mechanical clamping is mandatory. With the goal of turning the conceptual design into a tangible reality, this paper depicts the final magnetic design, with special attention to 3-D electromagnetic calculations and the different operation scenarios. It also includes more accurate mechanical FE models results, achieved by measuring the Young’s modulus of impregnated cable stacks. Besides assembly spring-back, cool-down, and enegization, simulations have been also carried out for the pressing process of both dipoles, analysing stress distribution, and displacements. Finally, a short mechanical model has been designed, fabricated, and tested. Its main purpose is to assess the feasibility of the proposed clamping structure, the reliability of the FE mechanical models and the design of an important part of the tooling required for the magnet fabrication.oai:inspirehep.net:16507442018
spellingShingle Accelerators and Storage Rings
García-Matos, Jesús Ángel
Abramian, Pablo
Calero, Jesus
García-Tabarés, Luis
Gómez, Pablo
Gutierrez, Jose L
Lopez, Daniel
Munilla, Javier
Toral, Fernando
Bourcey, Nicolas
Fessia, Paolo
Izquierdo Bermudez, Susana
Perez, Juan Carlos
Todesco, Ezio
Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC
title Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC
title_full Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC
title_fullStr Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC
title_full_unstemmed Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC
title_short Detailed magnetic and mechanical design of the nested orbit correctors for HL-LHC
title_sort detailed magnetic and mechanical design of the nested orbit correctors for hl-lhc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2017.2784806
http://cds.cern.ch/record/2306215
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