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COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.

Different pyrolytic graphite materials were produced varying the annealing parameters such as temperature, pressure and time. These variations should alter the product properties in a systematic way. The coefficient of in-plane thermal conductivity, C_KT, the coefficient of electrical conductivity,...

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Detalles Bibliográficos
Autores principales: Antonov, AA, Grigorieva, I G, Kotosonov, A S, Sazonov, GG, Shilo, D V, Kholodenko, A G, Riadovikov, VN, Moser, H G
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:http://cds.cern.ch/record/684209
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author Antonov, AA
Grigorieva, I G
Kotosonov, A S
Sazonov, GG
Shilo, D V
Kholodenko, A G
Riadovikov, VN
Moser, H G
author_facet Antonov, AA
Grigorieva, I G
Kotosonov, A S
Sazonov, GG
Shilo, D V
Kholodenko, A G
Riadovikov, VN
Moser, H G
author_sort Antonov, AA
collection CERN
description Different pyrolytic graphite materials were produced varying the annealing parameters such as temperature, pressure and time. These variations should alter the product properties in a systematic way. The coefficient of in-plane thermal conductivity, C_KT, the coefficient of electrical conductivity, $\sigma$ and the pull strength S of these samples were measured. Results for the different materials and correlations are reported
id cern-684209
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
record_format invenio
spelling cern-6842092019-09-30T06:29:59Zhttp://cds.cern.ch/record/684209engAntonov, AAGrigorieva, I GKotosonov, A SSazonov, GGShilo, D VKholodenko, A GRiadovikov, VNMoser, H GCOMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.Detectors and Experimental TechniquesDifferent pyrolytic graphite materials were produced varying the annealing parameters such as temperature, pressure and time. These variations should alter the product properties in a systematic way. The coefficient of in-plane thermal conductivity, C_KT, the coefficient of electrical conductivity, $\sigma$ and the pull strength S of these samples were measured. Results for the different materials and correlations are reportedATL-INDET-2002-003oai:cds.cern.ch:6842092001-05-21
spellingShingle Detectors and Experimental Techniques
Antonov, AA
Grigorieva, I G
Kotosonov, A S
Sazonov, GG
Shilo, D V
Kholodenko, A G
Riadovikov, VN
Moser, H G
COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.
title COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.
title_full COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.
title_fullStr COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.
title_full_unstemmed COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.
title_short COMPARISON OF THE IN-PLANE THERMAL AND ELECTRICAL CONDUCTIVITIES AND TRANSVERSE PULL STRENGTHS OF VARIOUS PYROLYTIC GRAPHITE MATERIALS.
title_sort comparison of the in-plane thermal and electrical conductivities and transverse pull strengths of various pyrolytic graphite materials.
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/684209
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