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Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique

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Resumo:Carbon fibres are used widely as reinforcements for polymeric matrices in high-tech applications by virtue of their good mechanical, electrical and thermal properties. Vapour grown carbon fibres (VGCF) are a new type of fibres whose technological applications, namely reinforcements for thermoplastic matrix composites, are yet to be developed. Due to their potentially low cost and high production rates, VGCFs show promising new possibilities in this area. Recently, in industry worldwide, the potential of VGCFs in thermal and electrical applications such as solid-state batteries and electrostatic painting of high volume automotive plastic parts is increasingly being recognised. As a result, easy and non-destructive measurement of thermal and electrical properties of VGCF-based composites has become an important issue for use in industrial applications. In this study the optical beam deflection technique was used for the evaluation of the thermal diffusivity of vapour grown carbon fibres (VGCF) - polymer composites. It is shown that, for low diffusivities, simple approaches such as the “phase method'' or the ``zero crossing method'' are not valid and a multiparameter fitting to the amplitude values has to be used instead. The thermal diffusivity of the composites, measured along the direction of the fibre preferential orientation, increases with fibre content. This increase is not very marked, possibly due to poor adhesion between fibre and matrix.
Autores principais:Macedo, F. J.
Outros Autores:Ferreira, J. A.; Hattum, F. W. J. van; Bernardo, C. A.
Assunto:Photothermal Thermal diffusivity Beam deflection Vapour grown carbon fibres Composites
Ano:1999
País:Portugal
Tipo de documento:artigo
Tipo de acesso:acesso restrito
Instituição associada:Universidade do Minho
Idioma:inglês
Origem:RepositóriUM - Universidade do Minho
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author Macedo, F. J.
author2 Ferreira, J. A.
Hattum, F. W. J. van
Bernardo, C. A.
author2_role author
author
author
author_facet Macedo, F. J.
Ferreira, J. A.
Hattum, F. W. J. van
Bernardo, C. A.
author_role author
contributor_name_str_mv RepositóriUM - Universidade do Minho
country_str PT
creators_json_txt [{\"Person.name\":\"Macedo, F. J.\"},{\"Person.name\":\"Ferreira, J. A.\"},{\"Person.name\":\"Hattum, F. W. J. van\"},{\"Person.name\":\"Bernardo, C. A.\"}]
datacite.contributors.contributor.contributorName.fl_str_mv RepositóriUM - Universidade do Minho
datacite.creators.creator.creatorName.fl_str_mv Macedo, F. J.
Ferreira, J. A.
Hattum, F. W. J. van
Bernardo, C. A.
datacite.date.Accepted.fl_str_mv 1999-01-01T00:00:00Z
datacite.date.available.fl_str_mv 2003-11-10T18:38:26Z
datacite.date.embargoed.fl_str_mv 2003-11-10T18:38:26Z
datacite.rights.fl_str_mv http://purl.org/coar/access_right/c_16ec
datacite.subjects.subject.fl_str_mv Photothermal
Thermal diffusivity
Beam deflection
Vapour grown carbon fibres
Composites
datacite.titles.title.fl_str_mv Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
dc.contributor.none.fl_str_mv RepositóriUM - Universidade do Minho
dc.creator.none.fl_str_mv Macedo, F. J.
Ferreira, J. A.
Hattum, F. W. J. van
Bernardo, C. A.
dc.date.Accepted.fl_str_mv 1999-01-01T00:00:00Z
dc.date.available.fl_str_mv 2003-11-10T18:38:26Z
dc.date.embargoed.fl_str_mv 2003-11-10T18:38:26Z
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv https://hdl.handle.net/1822/247
dc.language.none.fl_str_mv eng
dc.publisher.none.fl_str_mv Elsevier
dc.rights.none.fl_str_mv http://purl.org/coar/access_right/c_16ec
dc.subject.none.fl_str_mv Photothermal
Thermal diffusivity
Beam deflection
Vapour grown carbon fibres
Composites
dc.title.fl_str_mv Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
dc.type.none.fl_str_mv http://purl.org/coar/resource_type/c_6501
description Carbon fibres are used widely as reinforcements for polymeric matrices in high-tech applications by virtue of their good mechanical, electrical and thermal properties. Vapour grown carbon fibres (VGCF) are a new type of fibres whose technological applications, namely reinforcements for thermoplastic matrix composites, are yet to be developed. Due to their potentially low cost and high production rates, VGCFs show promising new possibilities in this area. Recently, in industry worldwide, the potential of VGCFs in thermal and electrical applications such as solid-state batteries and electrostatic painting of high volume automotive plastic parts is increasingly being recognised. As a result, easy and non-destructive measurement of thermal and electrical properties of VGCF-based composites has become an important issue for use in industrial applications. In this study the optical beam deflection technique was used for the evaluation of the thermal diffusivity of vapour grown carbon fibres (VGCF) - polymer composites. It is shown that, for low diffusivities, simple approaches such as the “phase method'' or the ``zero crossing method'' are not valid and a multiparameter fitting to the amplitude values has to be used instead. The thermal diffusivity of the composites, measured along the direction of the fibre preferential orientation, increases with fibre content. This increase is not very marked, possibly due to poor adhesion between fibre and matrix.
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eu_rights_str_mv restrictedAccess
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fulltext.url.fl_str_mv https://repositorium.uminho.pt/bitstreams/c628df4e-7b9e-4431-840d-126b63003d6e/download
id rum_1eac3d0c8e5efa67f341a924345540fa
identifier.url.fl_str_mv https://hdl.handle.net/1822/247
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institution Universidade do Minho
instname_str Universidade do Minho
language eng
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oai_identifier_str oai:repositorium.uminho.pt:1822/247
organization_str_mv urn:organizationAcronym:repositorium
person_str_mv Macedo, F. J.
Ferreira, J. A.
Hattum, F. W. J. van
Bernardo, C. A.
publishDate 1999
publisher.none.fl_str_mv Elsevier
reponame_str RepositóriUM - Universidade do Minho
repository_id_str urn:repositoryAcronym:rum
service_str_mv urn:repositoryAcronym:rum
spelling engElsevierengCarbon fibres are used widely as reinforcements for polymeric matrices in high-tech applications by virtue of their good mechanical, electrical and thermal properties. Vapour grown carbon fibres (VGCF) are a new type of fibres whose technological applications, namely reinforcements for thermoplastic matrix composites, are yet to be developed. Due to their potentially low cost and high production rates, VGCFs show promising new possibilities in this area. Recently, in industry worldwide, the potential of VGCFs in thermal and electrical applications such as solid-state batteries and electrostatic painting of high volume automotive plastic parts is increasingly being recognised. As a result, easy and non-destructive measurement of thermal and electrical properties of VGCF-based composites has become an important issue for use in industrial applications. In this study the optical beam deflection technique was used for the evaluation of the thermal diffusivity of vapour grown carbon fibres (VGCF) - polymer composites. It is shown that, for low diffusivities, simple approaches such as the “phase method'' or the ``zero crossing method'' are not valid and a multiparameter fitting to the amplitude values has to be used instead. The thermal diffusivity of the composites, measured along the direction of the fibre preferential orientation, increases with fibre content. This increase is not very marked, possibly due to poor adhesion between fibre and matrix.application/pdfengThermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection techniqueMacedo, F. J.Ferreira, J. A.Hattum, F. W. J. vanBernardo, C. A.HostingInstitutionOrganizationalRepositóriUM - Universidade do Minhoe-mailmailto:repositorium@usdb.uminho.ptrepositorium@usdb.uminho.ptCITATION"Journal of Materials Processing Technology". 92-93 (1999) 151-155.ISSNIsPartOf0924-0136DOIIsPartOf10.1016/S0924-0136(99)00125-92003-11-10T18:38:26Z19991999-01-01T00:00:00ZHandlehttps://hdl.handle.net/1822/247http://purl.org/coar/access_right/c_16ecrestricted accessPhotothermalThermal diffusivityBeam deflectionVapour grown carbon fibresComposites204213 bytesliteraturehttp://purl.org/coar/resource_type/c_6501journal articlehttp://purl.org/coar/access_right/c_16ecapplication/pdffulltexthttps://repositorium.uminho.pt/bitstreams/c628df4e-7b9e-4431-840d-126b63003d6e/download
spellingShingle Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
Macedo, F. J.
Photothermal
Thermal diffusivity
Beam deflection
Vapour grown carbon fibres
Composites
status SINGLETON
subject.fl_str_mv Photothermal
Thermal diffusivity
Beam deflection
Vapour grown carbon fibres
Composites
title Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
title_full Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
title_fullStr Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
title_full_unstemmed Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
title_short Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
title_sort Thermal diffusivity measurements of vapour grown carbon fibre composites, using the optical beam deflection technique
topic Photothermal
Thermal diffusivity
Beam deflection
Vapour grown carbon fibres
Composites
topic_facet Photothermal
Thermal diffusivity
Beam deflection
Vapour grown carbon fibres
Composites
url https://hdl.handle.net/1822/247
visible 1