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The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators

The increase of the stored beam energy in future particle accelerators, such as the HL-LHC and the FCC, calls for a radical upgrade in the design, materials and instrumentation of Beam Intercepting Devices (BID), such as collimators Following successful tests in 2015 that validated new composite mat...

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Detalles Bibliográficos
Autores principales: Carra, F, Bertarelli, A, Berthomé, E, Fichera, C, Furness, T, Guinchard, M, Mettler, L K, Portelli, M, Redaelli, S, Sacristan de Frutos, O
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/874/1/012001
https://dx.doi.org/10.18429/JACoW-IPAC2017-MOPAB005
http://cds.cern.ch/record/2275958
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author Carra, F
Bertarelli, A
Berthomé, E
Fichera, C
Furness, T
Guinchard, M
Mettler, L K
Portelli, M
Redaelli, S
Sacristan de Frutos, O
author_facet Carra, F
Bertarelli, A
Berthomé, E
Fichera, C
Furness, T
Guinchard, M
Mettler, L K
Portelli, M
Redaelli, S
Sacristan de Frutos, O
author_sort Carra, F
collection CERN
description The increase of the stored beam energy in future particle accelerators, such as the HL-LHC and the FCC, calls for a radical upgrade in the design, materials and instrumentation of Beam Intercepting Devices (BID), such as collimators Following successful tests in 2015 that validated new composite materials and a novel jaw design conceived for the HL-LHC collimators, a new HiRadMat experiment, named “HRMT36-MultiMat”, is scheduled for autumn 2017. Its objective is to determine the behaviour under high intensity proton beams of a broad range of materials relevant for collimators and beam intercepting devices, thin-film coatings and advanced equipment. The test bench features 16 separate target stations, each hosting various specimens, allowing the exploration of complex phenomena such as dynamic strength, internal damping, nonlinearities due to anisotropic inelasticity and inhomogeneity, effects of energy deposition and radiation on coatings. This paper details the main technical solutions and engineering calculations for the design of the test bench and of the specimens, the candidate target materials and the instrumentation system.
id oai-inspirehep.net-1611144
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16111442022-08-17T13:32:13Zdoi:10.1088/1742-6596/874/1/012001doi:10.18429/JACoW-IPAC2017-MOPAB005http://cds.cern.ch/record/2275958engCarra, FBertarelli, ABerthomé, EFichera, CFurness, TGuinchard, MMettler, L KPortelli, MRedaelli, SSacristan de Frutos, OThe “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimatorsAccelerators and Storage RingsThe increase of the stored beam energy in future particle accelerators, such as the HL-LHC and the FCC, calls for a radical upgrade in the design, materials and instrumentation of Beam Intercepting Devices (BID), such as collimators Following successful tests in 2015 that validated new composite materials and a novel jaw design conceived for the HL-LHC collimators, a new HiRadMat experiment, named “HRMT36-MultiMat”, is scheduled for autumn 2017. Its objective is to determine the behaviour under high intensity proton beams of a broad range of materials relevant for collimators and beam intercepting devices, thin-film coatings and advanced equipment. The test bench features 16 separate target stations, each hosting various specimens, allowing the exploration of complex phenomena such as dynamic strength, internal damping, nonlinearities due to anisotropic inelasticity and inhomogeneity, effects of energy deposition and radiation on coatings. This paper details the main technical solutions and engineering calculations for the design of the test bench and of the specimens, the candidate target materials and the instrumentation system.ARIES-2007-002CERN-ACC-2017-333oai:inspirehep.net:16111442017
spellingShingle Accelerators and Storage Rings
Carra, F
Bertarelli, A
Berthomé, E
Fichera, C
Furness, T
Guinchard, M
Mettler, L K
Portelli, M
Redaelli, S
Sacristan de Frutos, O
The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators
title The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators
title_full The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators
title_fullStr The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators
title_full_unstemmed The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators
title_short The “Multimat” experiment at CERN HiRadMat facility: advanced testing of novel materials and instrumentation for HL-LHC collimators
title_sort “multimat” experiment at cern hiradmat facility: advanced testing of novel materials and instrumentation for hl-lhc collimators
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1742-6596/874/1/012001
https://dx.doi.org/10.18429/JACoW-IPAC2017-MOPAB005
http://cds.cern.ch/record/2275958
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