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Wave-particle interactions in copper diamond

In the context of wave propagation in solids caused by particle-matter interactions, the composite structure of copper diamond is believed to have a significant impact on the material’s response. This limits the accuracy of isotropic homogeneous elastic and elastic-plastic models used in earlier stu...

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Detalles Bibliográficos
Autores principales: Portelli, Marcus, Pasquali, Michele, Carra, Federico, Bertarelli, Alessandro, Mollicone, Pierluigi, Sammut, Nicholas
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.26.084501
http://cds.cern.ch/record/2875195
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author Portelli, Marcus
Pasquali, Michele
Carra, Federico
Bertarelli, Alessandro
Mollicone, Pierluigi
Sammut, Nicholas
author_facet Portelli, Marcus
Pasquali, Michele
Carra, Federico
Bertarelli, Alessandro
Mollicone, Pierluigi
Sammut, Nicholas
author_sort Portelli, Marcus
collection CERN
description In the context of wave propagation in solids caused by particle-matter interactions, the composite structure of copper diamond is believed to have a significant impact on the material’s response. This limits the accuracy of isotropic homogeneous elastic and elastic-plastic models used in earlier studies modeling the material’s behavior under such conditions. This study aims to investigate the mesoscopic behavior of the copper diamond and discusses the advantages and limitations of modeling the internal composite structure of the material. The material response of CuCD was modeled in a 2D finite element simulation, considering internal wave propagation as a result of external impact and an internal thermal shock. Various homogeneous models were considered and compared with a mesoscopic model. The homogeneous models tested were found to be able to capture wave propagation effects in the material, and the inclusion of a hardening model allowed their performance to approach that of the mesoscale model considered, which is significantly more computationally demanding.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28751952023-10-10T22:59:46Zdoi:10.1103/PhysRevAccelBeams.26.084501http://cds.cern.ch/record/2875195engPortelli, MarcusPasquali, MicheleCarra, FedericoBertarelli, AlessandroMollicone, PierluigiSammut, NicholasWave-particle interactions in copper diamondAccelerators and Storage RingsIn the context of wave propagation in solids caused by particle-matter interactions, the composite structure of copper diamond is believed to have a significant impact on the material’s response. This limits the accuracy of isotropic homogeneous elastic and elastic-plastic models used in earlier studies modeling the material’s behavior under such conditions. This study aims to investigate the mesoscopic behavior of the copper diamond and discusses the advantages and limitations of modeling the internal composite structure of the material. The material response of CuCD was modeled in a 2D finite element simulation, considering internal wave propagation as a result of external impact and an internal thermal shock. Various homogeneous models were considered and compared with a mesoscopic model. The homogeneous models tested were found to be able to capture wave propagation effects in the material, and the inclusion of a hardening model allowed their performance to approach that of the mesoscale model considered, which is significantly more computationally demanding.oai:cds.cern.ch:28751952023
spellingShingle Accelerators and Storage Rings
Portelli, Marcus
Pasquali, Michele
Carra, Federico
Bertarelli, Alessandro
Mollicone, Pierluigi
Sammut, Nicholas
Wave-particle interactions in copper diamond
title Wave-particle interactions in copper diamond
title_full Wave-particle interactions in copper diamond
title_fullStr Wave-particle interactions in copper diamond
title_full_unstemmed Wave-particle interactions in copper diamond
title_short Wave-particle interactions in copper diamond
title_sort wave-particle interactions in copper diamond
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.26.084501
http://cds.cern.ch/record/2875195
work_keys_str_mv AT portellimarcus waveparticleinteractionsincopperdiamond
AT pasqualimichele waveparticleinteractionsincopperdiamond
AT carrafederico waveparticleinteractionsincopperdiamond
AT bertarellialessandro waveparticleinteractionsincopperdiamond
AT molliconepierluigi waveparticleinteractionsincopperdiamond
AT sammutnicholas waveparticleinteractionsincopperdiamond