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Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes

Within the LHC magnet program, a series of six, final design, full-scale superconducting dipole prototypes are presently being built in industry and tested at CERN. The main features of these magnets are: two-in-one structure, 56 mm aperture, six-block two layer coils wound from 15.1 mm wide graded...

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Detalles Bibliográficos
Autores principales: Bottura, L, Pugnat, P, Siemko, A, Vlogaert, J, Wyss, C
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/483490
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author Bottura, L
Pugnat, P
Siemko, A
Vlogaert, J
Wyss, C
author_facet Bottura, L
Pugnat, P
Siemko, A
Vlogaert, J
Wyss, C
author_sort Bottura, L
collection CERN
description Within the LHC magnet program, a series of six, final design, full-scale superconducting dipole prototypes are presently being built in industry and tested at CERN. The main features of these magnets are: two-in-one structure, 56 mm aperture, six-block two layer coils wound from 15.1 mm wide graded NbTi cables, and all-polyimide insulation. This paper reviews the main test results of magnets tested to day at 4.2 K and 1.8 K. The results of the quench training, conductor performance, magnet protection, sensitivity to ramp rate and field quality are presented and discussed in terms of the design parameters and the aims of the full scale dipole prototype program.
id cern-483490
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4834902023-05-31T13:20:36Zhttp://cds.cern.ch/record/483490engBottura, LPugnat, PSiemko, AVlogaert, JWyss, CPerformance of the LHC Final Design, Full-Scale Superconducting Dipole PrototypesAccelerators and Storage RingsWithin the LHC magnet program, a series of six, final design, full-scale superconducting dipole prototypes are presently being built in industry and tested at CERN. The main features of these magnets are: two-in-one structure, 56 mm aperture, six-block two layer coils wound from 15.1 mm wide graded NbTi cables, and all-polyimide insulation. This paper reviews the main test results of magnets tested to day at 4.2 K and 1.8 K. The results of the quench training, conductor performance, magnet protection, sensitivity to ramp rate and field quality are presented and discussed in terms of the design parameters and the aims of the full scale dipole prototype program.LHC-Project-Report-452CERN-LHC-Project-Report-452oai:cds.cern.ch:4834902000-12-22
spellingShingle Accelerators and Storage Rings
Bottura, L
Pugnat, P
Siemko, A
Vlogaert, J
Wyss, C
Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes
title Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes
title_full Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes
title_fullStr Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes
title_full_unstemmed Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes
title_short Performance of the LHC Final Design, Full-Scale Superconducting Dipole Prototypes
title_sort performance of the lhc final design, full-scale superconducting dipole prototypes
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/483490
work_keys_str_mv AT bottural performanceofthelhcfinaldesignfullscalesuperconductingdipoleprototypes
AT pugnatp performanceofthelhcfinaldesignfullscalesuperconductingdipoleprototypes
AT siemkoa performanceofthelhcfinaldesignfullscalesuperconductingdipoleprototypes
AT vlogaertj performanceofthelhcfinaldesignfullscalesuperconductingdipoleprototypes
AT wyssc performanceofthelhcfinaldesignfullscalesuperconductingdipoleprototypes