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Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ

The Linac4 RFQ will accelerate the H- beam from the ion source to the energy of 3 MeV. The RFQ is composed of three sections of one meter each, assembled by means of ultra high vacuum flanges and adjustable centring rings. The complete 3-m long RFQ will be supported isostatically over 3 points like...

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Autores principales: Mathot, S, Bourquin, P, Briswalter, A, Callamand, Th, Carosone, J, Favre, N, Geisser, J M, Lombardi, A, Maire, V, Malabaila, M, Pugnat, D, Richerot, Ph, Riffaut, B, Rossi, C, Timmins, M, Vacca, A, Vandoni, G, Vretenar, M
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1277905
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author Mathot, S
Bourquin, P
Briswalter, A
Callamand, Th
Carosone, J
Favre, N
Geisser, J M
Lombardi, A
Maire, V
Malabaila, M
Pugnat, D
Richerot, Ph
Riffaut, B
Rossi, C
Timmins, M
Vacca, A
Vandoni, G
Vretenar, M
author_facet Mathot, S
Bourquin, P
Briswalter, A
Callamand, Th
Carosone, J
Favre, N
Geisser, J M
Lombardi, A
Maire, V
Malabaila, M
Pugnat, D
Richerot, Ph
Riffaut, B
Rossi, C
Timmins, M
Vacca, A
Vandoni, G
Vretenar, M
author_sort Mathot, S
collection CERN
description The Linac4 RFQ will accelerate the H- beam from the ion source to the energy of 3 MeV. The RFQ is composed of three sections of one meter each, assembled by means of ultra high vacuum flanges and adjustable centring rings. The complete 3-m long RFQ will be supported isostatically over 3 points like a simple beam in order to minimise the maximum deflection. The ridge line, used to feed the RF power into the RFQ, will be supported via springs and its position adjusted in such way that no strain is introduced into the RFQ at the moment of its connection. The mechanical design has been done at CERN where the modules are completely manufactured, heat treated and brazed also. In that way, all of the processes are carefully controlled and the influence, notably of the heat treatments, has been understood in a better way. Since 2002 several four vanes RFQ modules have been brazed at CERN for the TRASCO and IPHI projects. A two-step brazing procedure has been tested. This technique is actually used for the assembly of the CERN Linac4 RFQ. This paper describes the design, the mechanical procedures adopted for machining and assembly and the first results obtained.
id cern-1277905
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-12779052022-08-17T13:33:06Zhttp://cds.cern.ch/record/1277905engMathot, SBourquin, PBriswalter, ACallamand, ThCarosone, JFavre, NGeisser, J MLombardi, AMaire, VMalabaila, MPugnat, DRicherot, PhRiffaut, BRossi, CTimmins, MVacca, AVandoni, GVretenar, MMechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQAccelerators and Storage RingsThe Linac4 RFQ will accelerate the H- beam from the ion source to the energy of 3 MeV. The RFQ is composed of three sections of one meter each, assembled by means of ultra high vacuum flanges and adjustable centring rings. The complete 3-m long RFQ will be supported isostatically over 3 points like a simple beam in order to minimise the maximum deflection. The ridge line, used to feed the RF power into the RFQ, will be supported via springs and its position adjusted in such way that no strain is introduced into the RFQ at the moment of its connection. The mechanical design has been done at CERN where the modules are completely manufactured, heat treated and brazed also. In that way, all of the processes are carefully controlled and the influence, notably of the heat treatments, has been understood in a better way. Since 2002 several four vanes RFQ modules have been brazed at CERN for the TRASCO and IPHI projects. A two-step brazing procedure has been tested. This technique is actually used for the assembly of the CERN Linac4 RFQ. This paper describes the design, the mechanical procedures adopted for machining and assembly and the first results obtained.CERN-ATS-2010-145oai:cds.cern.ch:12779052010-04-30
spellingShingle Accelerators and Storage Rings
Mathot, S
Bourquin, P
Briswalter, A
Callamand, Th
Carosone, J
Favre, N
Geisser, J M
Lombardi, A
Maire, V
Malabaila, M
Pugnat, D
Richerot, Ph
Riffaut, B
Rossi, C
Timmins, M
Vacca, A
Vandoni, G
Vretenar, M
Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ
title Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ
title_full Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ
title_fullStr Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ
title_full_unstemmed Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ
title_short Mechanical Design, Brazing and Assembly Procedures of the LINAC4 RFQ
title_sort mechanical design, brazing and assembly procedures of the linac4 rfq
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1277905
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