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An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility

Predicting the consequences of highly energetic particle beams impacting protection devices as collimators or high power target stations is a fundamental issue in the design of state-of-the-art facilities for high-energy particle physics. These complex dynamic phenomena can be successfully simulated...

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Autores principales: Bertarelli, A, Berthomé, E, Boccone, V, Carra, F, Cerutti, F, Charitonidis, N, Charrondiere, C, Dallocchio, A, Fernandez Carmona, P, Francon, P, Gentini, L, Guinchard, M, Mariani, N, Masi, A, Marques dos Santos, S D, Moyret, P, Peroni, L, Redaelli, S, Scapin, M
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: Nucl. Instrum. Methods Phys. Res., A 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2013.05.007
http://cds.cern.ch/record/1556543
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author Bertarelli, A
Berthomé, E
Boccone, V
Carra, F
Cerutti, F
Charitonidis, N
Charrondiere, C
Dallocchio, A
Fernandez Carmona, P
Francon, P
Gentini, L
Guinchard, M
Mariani, N
Masi, A
Marques dos Santos, S D
Moyret, P
Peroni, L
Redaelli, S
Scapin, M
author_facet Bertarelli, A
Berthomé, E
Boccone, V
Carra, F
Cerutti, F
Charitonidis, N
Charrondiere, C
Dallocchio, A
Fernandez Carmona, P
Francon, P
Gentini, L
Guinchard, M
Mariani, N
Masi, A
Marques dos Santos, S D
Moyret, P
Peroni, L
Redaelli, S
Scapin, M
author_sort Bertarelli, A
collection CERN
description Predicting the consequences of highly energetic particle beams impacting protection devices as collimators or high power target stations is a fundamental issue in the design of state-of-the-art facilities for high-energy particle physics. These complex dynamic phenomena can be successfully simulated resorting to highly non-linear numerical tools (Hydrocodes). In order to produce accurate results, however, these codes require reliable material constitutive models that, at the extreme conditions induced by a destructive beam impact, are scarce and often inaccurate. In order to derive or validate such models a comprehensive, first-of-its-kind experiment has been recently carried out at CERN HiRadMat facility: performed tests entailed the controlled impact of intense and energetic proton pulses on a number of specimens made of six different materials. Experimental data were acquired relying on embedded instrumentation (strain gauges, temperature probes and vacuum sensors) and on remote-acquisition devices (laser Doppler vibrometer and high-speed camera). The method presented in this paper, combining experimental measurements with numerical simulations, may find applications to assess materials under very high strain rates and temperatures in domains well beyond particle physics (severe accidents in fusion and fission nuclear facilities, space debris impacts, fast and intense loadings on materials and structures etc.).
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spelling cern-15565432019-09-30T06:29:59Z doi:10.1016/j.nimb.2013.05.007 http://cds.cern.ch/record/1556543 eng Bertarelli, A Berthomé, E Boccone, V Carra, F Cerutti, F Charitonidis, N Charrondiere, C Dallocchio, A Fernandez Carmona, P Francon, P Gentini, L Guinchard, M Mariani, N Masi, A Marques dos Santos, S D Moyret, P Peroni, L Redaelli, S Scapin, M An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility Accelerators and Storage Rings 8: Collimators & materials for higher beam power beam Predicting the consequences of highly energetic particle beams impacting protection devices as collimators or high power target stations is a fundamental issue in the design of state-of-the-art facilities for high-energy particle physics. These complex dynamic phenomena can be successfully simulated resorting to highly non-linear numerical tools (Hydrocodes). In order to produce accurate results, however, these codes require reliable material constitutive models that, at the extreme conditions induced by a destructive beam impact, are scarce and often inaccurate. In order to derive or validate such models a comprehensive, first-of-its-kind experiment has been recently carried out at CERN HiRadMat facility: performed tests entailed the controlled impact of intense and energetic proton pulses on a number of specimens made of six different materials. Experimental data were acquired relying on embedded instrumentation (strain gauges, temperature probes and vacuum sensors) and on remote-acquisition devices (laser Doppler vibrometer and high-speed camera). The method presented in this paper, combining experimental measurements with numerical simulations, may find applications to assess materials under very high strain rates and temperatures in domains well beyond particle physics (severe accidents in fusion and fission nuclear facilities, space debris impacts, fast and intense loadings on materials and structures etc.). info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1556543 Nucl. Instrum. Methods Phys. Res., A Nucl. Instrum. Methods Phys. Res., A, (2013) pp. 88-99 2013-01-22
spellingShingle Accelerators and Storage Rings
8: Collimators & materials for higher beam power beam
Bertarelli, A
Berthomé, E
Boccone, V
Carra, F
Cerutti, F
Charitonidis, N
Charrondiere, C
Dallocchio, A
Fernandez Carmona, P
Francon, P
Gentini, L
Guinchard, M
Mariani, N
Masi, A
Marques dos Santos, S D
Moyret, P
Peroni, L
Redaelli, S
Scapin, M
An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility
title An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility
title_full An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility
title_fullStr An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility
title_full_unstemmed An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility
title_short An experiment to test advanced materials impacted by intense proton pulses at CERN HiRadMat facility
title_sort experiment to test advanced materials impacted by intense proton pulses at cern hiradmat facility
topic Accelerators and Storage Rings
8: Collimators & materials for higher beam power beam
url https://dx.doi.org/10.1016/j.nimb.2013.05.007
http://cds.cern.ch/record/1556543
http://cds.cern.ch/record/1556543
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