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Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets

New polyimide cable insulation schemes improving the cooling of Nb-Ti superconducting coils were recently developed to face the severe heat loads at which the next generation of superconducting accelerator magnets will work. In order to qualify the new insulation, a test campaign was realized to ass...

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Detalles Bibliográficos
Autores principales: Fessia, P, Granieri, P, Luzieux, S, Tommasini, D, Gerardin, A, Guinchard, M, Regis, F, Sgobba, S, Zaghloul, A
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1283531
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author Fessia, P
Granieri, P
Luzieux, S
Tommasini, D
Gerardin, A
Guinchard, M
Regis, F
Sgobba, S
Zaghloul, A
author_facet Fessia, P
Granieri, P
Luzieux, S
Tommasini, D
Gerardin, A
Guinchard, M
Regis, F
Sgobba, S
Zaghloul, A
author_sort Fessia, P
collection CERN
description New polyimide cable insulation schemes improving the cooling of Nb-Ti superconducting coils were recently developed to face the severe heat loads at which the next generation of superconducting accelerator magnets will work. In order to qualify the new insulation, a test campaign was realized to assess both its electrical and mechanical features with respect to the standard LHC insulation. The electrical tests assessed the dielectric strength and inter-turn leakage current to be satisfactory. The mechanical tests investigated the insulation thickness under load and the stress relaxation at ambient temperature, thus providing essential information for the magnetic and mechanical design of the final focusing magnets for the LHC upgrade phase I.
id cern-1283531
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-12835312019-09-30T06:29:59Zhttp://cds.cern.ch/record/1283531engFessia, PGranieri, PLuzieux, STommasini, DGerardin, AGuinchard, MRegis, FSgobba, SZaghloul, AElectrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting MagnetsAccelerators and Storage RingsNew polyimide cable insulation schemes improving the cooling of Nb-Ti superconducting coils were recently developed to face the severe heat loads at which the next generation of superconducting accelerator magnets will work. In order to qualify the new insulation, a test campaign was realized to assess both its electrical and mechanical features with respect to the standard LHC insulation. The electrical tests assessed the dielectric strength and inter-turn leakage current to be satisfactory. The mechanical tests investigated the insulation thickness under load and the stress relaxation at ambient temperature, thus providing essential information for the magnetic and mechanical design of the final focusing magnets for the LHC upgrade phase I.sLHC-PROJECT-Report-0046CERN-sLHC-PROJECT-Report-0046oai:cds.cern.ch:12835312010-07-01
spellingShingle Accelerators and Storage Rings
Fessia, P
Granieri, P
Luzieux, S
Tommasini, D
Gerardin, A
Guinchard, M
Regis, F
Sgobba, S
Zaghloul, A
Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets
title Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets
title_full Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets
title_fullStr Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets
title_full_unstemmed Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets
title_short Electrical and Mechanical Performance of an Enhanced Cable Insulation Scheme for Superconducting Magnets
title_sort electrical and mechanical performance of an enhanced cable insulation scheme for superconducting magnets
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1283531
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