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Radiation hardness of polysulphone and polycarbonate elements for LHC detectors

In the TRT Inner Detector being developed for ATLAS, elements made from plastic materials are widely used. In order to meet necessary requirements of the construction, these materials should have a high radiation hardness. This work presents a study of mechanical features of polysulphone and polycar...

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Detalles Bibliográficos
Autores principales: Hauviller, Claude, Almaeva, L S, Bychkov, V, Golikov, V V, Kekelidze, G D, Lobastov, S P, Luschikov, V I, Peshekhonov, V D
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/375810
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author Hauviller, Claude
Almaeva, L S
Bychkov, V
Golikov, V V
Kekelidze, G D
Lobastov, S P
Luschikov, V I
Peshekhonov, V D
author_facet Hauviller, Claude
Almaeva, L S
Bychkov, V
Golikov, V V
Kekelidze, G D
Lobastov, S P
Luschikov, V I
Peshekhonov, V D
author_sort Hauviller, Claude
collection CERN
description In the TRT Inner Detector being developed for ATLAS, elements made from plastic materials are widely used. In order to meet necessary requirements of the construction, these materials should have a high radiation hardness. This work presents a study of mechanical features of polysulphone and polycarbonate in dependence on the radiation dose. The results of measurements have shown a weak dependence of mechanical properties of polysulphone and polycarbonate on the absorbed dose up to the value of 1 MGy. So, the products from these materials could be used to construct detectors at LHC, at least on the mechanical point of view.
id cern-375810
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3758102019-09-30T06:29:59Zhttp://cds.cern.ch/record/375810engHauviller, ClaudeAlmaeva, L SBychkov, VGolikov, V VKekelidze, G DLobastov, S PLuschikov, V IPeshekhonov, V DRadiation hardness of polysulphone and polycarbonate elements for LHC detectorsDetectors and Experimental TechniquesIn the TRT Inner Detector being developed for ATLAS, elements made from plastic materials are widely used. In order to meet necessary requirements of the construction, these materials should have a high radiation hardness. This work presents a study of mechanical features of polysulphone and polycarbonate in dependence on the radiation dose. The results of measurements have shown a weak dependence of mechanical properties of polysulphone and polycarbonate on the absorbed dose up to the value of 1 MGy. So, the products from these materials could be used to construct detectors at LHC, at least on the mechanical point of view.ATL-INDET-98-218JINR-E14-98-245oai:cds.cern.ch:3758101998-08-21
spellingShingle Detectors and Experimental Techniques
Hauviller, Claude
Almaeva, L S
Bychkov, V
Golikov, V V
Kekelidze, G D
Lobastov, S P
Luschikov, V I
Peshekhonov, V D
Radiation hardness of polysulphone and polycarbonate elements for LHC detectors
title Radiation hardness of polysulphone and polycarbonate elements for LHC detectors
title_full Radiation hardness of polysulphone and polycarbonate elements for LHC detectors
title_fullStr Radiation hardness of polysulphone and polycarbonate elements for LHC detectors
title_full_unstemmed Radiation hardness of polysulphone and polycarbonate elements for LHC detectors
title_short Radiation hardness of polysulphone and polycarbonate elements for LHC detectors
title_sort radiation hardness of polysulphone and polycarbonate elements for lhc detectors
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/375810
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AT almaevals radiationhardnessofpolysulphoneandpolycarbonateelementsforlhcdetectors
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