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Manufacturing experience for the LHC inner triplet quadrupole cables

The design for the U.S. LHC Inner Triplet Quadrupole magnet requires a 37 strand (inner layer) and a 46 strand (outer layer) cable. This represents the largest number of strands attempted to date for a production quantity of Rutherford-type cable. The cable parameters were optimized during the produ...

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Detalles Bibliográficos
Autores principales: Scanlan, R M, Higley, H C, Bossert, R, Kerby, J S, Ghosh, A K, Boivin, M, Roy, T
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2002.1018617
http://cds.cern.ch/record/590827
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author Scanlan, R M
Higley, H C
Bossert, R
Kerby, J S
Ghosh, A K
Boivin, M
Roy, T
author_facet Scanlan, R M
Higley, H C
Bossert, R
Kerby, J S
Ghosh, A K
Boivin, M
Roy, T
author_sort Scanlan, R M
collection CERN
description The design for the U.S. LHC Inner Triplet Quadrupole magnet requires a 37 strand (inner layer) and a 46 strand (outer layer) cable. This represents the largest number of strands attempted to date for a production quantity of Rutherford-type cable. The cable parameters were optimized during the production of a series of short prototype magnets produced at FNAL. These optimization studies focused on critical current degradation, dimensional control, coil winding, and interstrand resistance. After the R&D phase was complete, the technology was transferred to NEEW and a new cabling machine was installed to produce these cables. At present, about 60 unit lengths, out of 90 required for the entire production series of magnets, have been completed for each type of cable. The manufacturing experience with these challenging cables will be reported. Finally, the implications for even larger cables, with more strands, will be discussed. (8 refs).
id cern-590827
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5908272019-09-30T06:29:59Zdoi:10.1109/TASC.2002.1018617http://cds.cern.ch/record/590827engScanlan, R MHigley, H CBossert, RKerby, J SGhosh, A KBoivin, MRoy, TManufacturing experience for the LHC inner triplet quadrupole cablesEngineeringAccelerators and Storage RingsThe design for the U.S. LHC Inner Triplet Quadrupole magnet requires a 37 strand (inner layer) and a 46 strand (outer layer) cable. This represents the largest number of strands attempted to date for a production quantity of Rutherford-type cable. The cable parameters were optimized during the production of a series of short prototype magnets produced at FNAL. These optimization studies focused on critical current degradation, dimensional control, coil winding, and interstrand resistance. After the R&D phase was complete, the technology was transferred to NEEW and a new cabling machine was installed to produce these cables. At present, about 60 unit lengths, out of 90 required for the entire production series of magnets, have been completed for each type of cable. The manufacturing experience with these challenging cables will be reported. Finally, the implications for even larger cables, with more strands, will be discussed. (8 refs).oai:cds.cern.ch:5908272002
spellingShingle Engineering
Accelerators and Storage Rings
Scanlan, R M
Higley, H C
Bossert, R
Kerby, J S
Ghosh, A K
Boivin, M
Roy, T
Manufacturing experience for the LHC inner triplet quadrupole cables
title Manufacturing experience for the LHC inner triplet quadrupole cables
title_full Manufacturing experience for the LHC inner triplet quadrupole cables
title_fullStr Manufacturing experience for the LHC inner triplet quadrupole cables
title_full_unstemmed Manufacturing experience for the LHC inner triplet quadrupole cables
title_short Manufacturing experience for the LHC inner triplet quadrupole cables
title_sort manufacturing experience for the lhc inner triplet quadrupole cables
topic Engineering
Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2002.1018617
http://cds.cern.ch/record/590827
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