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Status Report on the LHC Main Magnet Production

The LHC ring will contain 1232 main dipole and 382 main quadrupole twin aperture magnets. All main magnets are superconducting and employ NbTi/Cu Rutherford type cables operated at 1.9 K. The dipole production has reached the equivalent of almost three octants of cold masses and nearly four octants...

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Detalles Bibliográficos
Autores principales: de Rijk, G, Bajko, M, Cornelis, M, Durante, M, Fessia, P, Miles, J, Modena, M, Molinari, G, Rinn, J, Savary, F, Schirm, K, Simon, F, Tommasini, D, Tortschanoff, Theodor, Vlogaert, J
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2005.849500
http://cds.cern.ch/record/833202
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author de Rijk, G
Bajko, M
Cornelis, M
Durante, M
Fessia, P
Miles, J
Modena, M
Molinari, G
Rinn, J
Savary, F
Schirm, K
Simon, F
Tommasini, D
Tortschanoff, Theodor
Vlogaert, J
author_facet de Rijk, G
Bajko, M
Cornelis, M
Durante, M
Fessia, P
Miles, J
Modena, M
Molinari, G
Rinn, J
Savary, F
Schirm, K
Simon, F
Tommasini, D
Tortschanoff, Theodor
Vlogaert, J
author_sort de Rijk, G
collection CERN
description The LHC ring will contain 1232 main dipole and 382 main quadrupole twin aperture magnets. All main magnets are superconducting and employ NbTi/Cu Rutherford type cables operated at 1.9 K. The dipole production has reached the equivalent of almost three octants of cold masses and nearly four octants of collared coils. The quadrupole production has reached 75 cold masses and over 150 bare magnets. The ramping up of large scale magnet production has posed several challenges which will be discussed, like: the coil size uniformity, coil pre-stress control, cold mass welding technique and the geometrical shape issues. The magnetic measurement results at warm will be presented together with their usage for the quality control in the production. The common features and differences of the three dipole producers will be discussed. Finally the latest version of the production schedule will be presented.
id cern-833202
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2005
record_format invenio
spelling cern-8332022023-05-31T13:24:05Zdoi:10.1109/TASC.2005.849500http://cds.cern.ch/record/833202engde Rijk, GBajko, MCornelis, MDurante, MFessia, PMiles, JModena, MMolinari, GRinn, JSavary, FSchirm, KSimon, FTommasini, DTortschanoff, TheodorVlogaert, JStatus Report on the LHC Main Magnet ProductionAccelerators and Storage RingsThe LHC ring will contain 1232 main dipole and 382 main quadrupole twin aperture magnets. All main magnets are superconducting and employ NbTi/Cu Rutherford type cables operated at 1.9 K. The dipole production has reached the equivalent of almost three octants of cold masses and nearly four octants of collared coils. The quadrupole production has reached 75 cold masses and over 150 bare magnets. The ramping up of large scale magnet production has posed several challenges which will be discussed, like: the coil size uniformity, coil pre-stress control, cold mass welding technique and the geometrical shape issues. The magnetic measurement results at warm will be presented together with their usage for the quality control in the production. The common features and differences of the three dipole producers will be discussed. Finally the latest version of the production schedule will be presented.LHC-Project-Report-805CERN-LHC-Project-Report-805oai:cds.cern.ch:8332022005-03-24
spellingShingle Accelerators and Storage Rings
de Rijk, G
Bajko, M
Cornelis, M
Durante, M
Fessia, P
Miles, J
Modena, M
Molinari, G
Rinn, J
Savary, F
Schirm, K
Simon, F
Tommasini, D
Tortschanoff, Theodor
Vlogaert, J
Status Report on the LHC Main Magnet Production
title Status Report on the LHC Main Magnet Production
title_full Status Report on the LHC Main Magnet Production
title_fullStr Status Report on the LHC Main Magnet Production
title_full_unstemmed Status Report on the LHC Main Magnet Production
title_short Status Report on the LHC Main Magnet Production
title_sort status report on the lhc main magnet production
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2005.849500
http://cds.cern.ch/record/833202
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