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Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01

The 3.7 m long quadrupole magnet LQS01 represents a major step of the US LHC Accelerator Research Program (LARP) towards the development of long Nb$_3$Sn accelerator quadrupole magnets for a LHC Luminosity upgrade. The magnet support structure is a scale up of the 1 m long Technology Quadrupole TQS...

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Detalles Bibliográficos
Autores principales: Ferracin, P, Ambrosio, G, Anerella, M, Bingham, B, Bossert, R, Caspi, S, Cheng, D W, Felice, H, Hafalia, A R, Hannaford, C R, Nobrega, F, Prestemon, S, Sabbi, G -L, Schmalzle, J, Trillaud, F, Wanderer, P, Zlobin, A V
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2009.2019544
http://cds.cern.ch/record/2631731
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author Ferracin, P
Ambrosio, G
Anerella, M
Bingham, B
Bossert, R
Caspi, S
Cheng, D W
Felice, H
Hafalia, A R
Hannaford, C R
Nobrega, F
Prestemon, S
Sabbi, G -L
Schmalzle, J
Trillaud, F
Wanderer, P
Zlobin, A V
author_facet Ferracin, P
Ambrosio, G
Anerella, M
Bingham, B
Bossert, R
Caspi, S
Cheng, D W
Felice, H
Hafalia, A R
Hannaford, C R
Nobrega, F
Prestemon, S
Sabbi, G -L
Schmalzle, J
Trillaud, F
Wanderer, P
Zlobin, A V
author_sort Ferracin, P
collection CERN
description The 3.7 m long quadrupole magnet LQS01 represents a major step of the US LHC Accelerator Research Program (LARP) towards the development of long Nb$_3$Sn accelerator quadrupole magnets for a LHC Luminosity upgrade. The magnet support structure is a scale up of the 1 m long Technology Quadrupole TQS design with some modifications suggested by TQS model test results. It includes an aluminum shell pre-tensioned over iron yokes using pressurized bladders and locking keys (bladder and key technology). The axial support is provided by two stainless steel end plates compressed against the coil ends by four stainless steel rods. The structure, instrumented with strain gauges, has been fabricated and assembled around four aluminum ldquodummy coilsrdquo to determine pre-load homogeneity and mechanical characteristics during cool-down. After presenting the main magnetic and mechanical parameters of LQS01, we report in this paper on the design, assembly, and test of the support structure, with a comparison between strain gauges data and 3D finite element model results.
id oai-inspirehep.net-1665965
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling oai-inspirehep.net-16659652019-09-30T06:29:59Zdoi:10.1109/TASC.2009.2019544http://cds.cern.ch/record/2631731engFerracin, PAmbrosio, GAnerella, MBingham, BBossert, RCaspi, SCheng, D WFelice, HHafalia, A RHannaford, C RNobrega, FPrestemon, SSabbi, G -LSchmalzle, JTrillaud, FWanderer, PZlobin, A VFabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01Accelerators and Storage RingsThe 3.7 m long quadrupole magnet LQS01 represents a major step of the US LHC Accelerator Research Program (LARP) towards the development of long Nb$_3$Sn accelerator quadrupole magnets for a LHC Luminosity upgrade. The magnet support structure is a scale up of the 1 m long Technology Quadrupole TQS design with some modifications suggested by TQS model test results. It includes an aluminum shell pre-tensioned over iron yokes using pressurized bladders and locking keys (bladder and key technology). The axial support is provided by two stainless steel end plates compressed against the coil ends by four stainless steel rods. The structure, instrumented with strain gauges, has been fabricated and assembled around four aluminum ldquodummy coilsrdquo to determine pre-load homogeneity and mechanical characteristics during cool-down. After presenting the main magnetic and mechanical parameters of LQS01, we report in this paper on the design, assembly, and test of the support structure, with a comparison between strain gauges data and 3D finite element model results.oai:inspirehep.net:16659652009
spellingShingle Accelerators and Storage Rings
Ferracin, P
Ambrosio, G
Anerella, M
Bingham, B
Bossert, R
Caspi, S
Cheng, D W
Felice, H
Hafalia, A R
Hannaford, C R
Nobrega, F
Prestemon, S
Sabbi, G -L
Schmalzle, J
Trillaud, F
Wanderer, P
Zlobin, A V
Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01
title Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01
title_full Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01
title_fullStr Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01
title_full_unstemmed Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01
title_short Fabrication and Test of a 3.7 m Long Support Structure for the LARP ${\hbox{Nb}}_{3}{\hbox{Sn}}$ Quadrupole Magnet LQS01
title_sort fabrication and test of a 3.7 m long support structure for the larp ${\hbox{nb}}_{3}{\hbox{sn}}$ quadrupole magnet lqs01
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2009.2019544
http://cds.cern.ch/record/2631731
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