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Research and development of novel advanced materials for next-generation collimators

The study of innovative collimators is essential to handle the high energy particle beams required to explore unknown territory in basic research. This calls for the development of novel advanced materials, as no existing metal-based or carbon-based material possesses the combination of physical, th...

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Detalles Bibliográficos
Autores principales: Bertarelli, A, Arnau Izquierdo, G, Carra, F, Dallocchio, A, Gil Costa, M, Mariani, N
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1428445
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author Bertarelli, A
Arnau Izquierdo, G
Carra, F
Dallocchio, A
Gil Costa, M
Mariani, N
author_facet Bertarelli, A
Arnau Izquierdo, G
Carra, F
Dallocchio, A
Gil Costa, M
Mariani, N
author_sort Bertarelli, A
collection CERN
description The study of innovative collimators is essential to handle the high energy particle beams required to explore unknown territory in basic research. This calls for the development of novel advanced materials, as no existing metal-based or carbon-based material possesses the combination of physical, thermal, electrical and mechanical properties, imposed by collimator extreme working conditions. A new family of materials, with promising features, has been identified: metal-diamond composites. These materials are to combine the outstanding thermal and physical properties of diamond with the electrical and mechanical properties of metals. The best candidates are Copper-Diamond (Cu-CD) and Molybdenum-Diamond (Mo-CD). In particular, Mo-CD may provide interesting properties as to mechanical strength, melting temperature, thermal shock resistance and, thanks to its balanced material density, energy absorption. The research program carried out on these materials at CERN and collaborating partners is presented, mainly focusing on the theoretical investigation, material characterization and manufacturing processes.
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spelling cern-14025522022-08-17T13:29:15Z http://cds.cern.ch/record/1428445 eng Bertarelli, A Arnau Izquierdo, G Carra, F Dallocchio, A Gil Costa, M Mariani, N Research and development of novel advanced materials for next-generation collimators Accelerators and Storage Rings 8: Collimators & materials for higher beam power beam The study of innovative collimators is essential to handle the high energy particle beams required to explore unknown territory in basic research. This calls for the development of novel advanced materials, as no existing metal-based or carbon-based material possesses the combination of physical, thermal, electrical and mechanical properties, imposed by collimator extreme working conditions. A new family of materials, with promising features, has been identified: metal-diamond composites. These materials are to combine the outstanding thermal and physical properties of diamond with the electrical and mechanical properties of metals. The best candidates are Copper-Diamond (Cu-CD) and Molybdenum-Diamond (Mo-CD). In particular, Mo-CD may provide interesting properties as to mechanical strength, melting temperature, thermal shock resistance and, thanks to its balanced material density, energy absorption. The research program carried out on these materials at CERN and collaborating partners is presented, mainly focusing on the theoretical investigation, material characterization and manufacturing processes. info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1428445 2011-11-29
spellingShingle Accelerators and Storage Rings
8: Collimators & materials for higher beam power beam
Bertarelli, A
Arnau Izquierdo, G
Carra, F
Dallocchio, A
Gil Costa, M
Mariani, N
Research and development of novel advanced materials for next-generation collimators
title Research and development of novel advanced materials for next-generation collimators
title_full Research and development of novel advanced materials for next-generation collimators
title_fullStr Research and development of novel advanced materials for next-generation collimators
title_full_unstemmed Research and development of novel advanced materials for next-generation collimators
title_short Research and development of novel advanced materials for next-generation collimators
title_sort research and development of novel advanced materials for next-generation collimators
topic Accelerators and Storage Rings
8: Collimators & materials for higher beam power beam
url http://cds.cern.ch/record/1428445
http://cds.cern.ch/record/1428445
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