Thermal phenomenon of glass fibre composite under tensile static and fatigue loading

The aim of this study is to understand the thermal phenomenon of unidirectional Glass Fibre Reinforced Polymer (GFRP) composite under static and fatigue (tensile) loads. This study used a rectangular shaped GFRP composite and consisted of specimens with and without a circular notch. Under static tes...

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Main Authors: Jefri Bale, Emmanuel Valot, Olivier Polit, Claude Bathias, Martine Monin, Tresna Soemardi
Format: Article
Language:English
Published: Universiti Malaysia Pahang Publishing 2017-06-01
Series:Journal of Mechanical Engineering and Sciences
Subjects:
Online Access:https://journal.ump.edu.my/jmes/article/view/8245
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author Jefri Bale
Emmanuel Valot
Olivier Polit
Claude Bathias
Martine Monin
Tresna Soemardi
author_facet Jefri Bale
Emmanuel Valot
Olivier Polit
Claude Bathias
Martine Monin
Tresna Soemardi
author_sort Jefri Bale
collection DOAJ
description The aim of this study is to understand the thermal phenomenon of unidirectional Glass Fibre Reinforced Polymer (GFRP) composite under static and fatigue (tensile) loads. This study used a rectangular shaped GFRP composite and consisted of specimens with and without a circular notch. Under static test, the constant displacement rate was applied. Under fatigue test, frequency and amplitude of stress were explored to study the fatigue properties and damage evolution of the specimen. Thermography was used in real-time observation to obtain the temperature profile on the external surface of the specimens. This experimental method showed that the thermal phenomenon gave a good detection of the damage appearance of GFRP material under static loading. Moreover, thermal phenomenon gave a good correlation with the energy dissipation under fatigue loading. Thermal phenomenon successfully determined the high cycle fatigue strength of GFRP composite. This study concluded that thermal phenomenon observed by Infra-Red (IR) camera has successfully demonstrated the damage propagation and the strength behaviour of GFRP composite due to tensile loading in both static and fatigue conditions. The IR camera can then be used to determine the damage evolution and the strength prediction based on the thermal phenomenon on the external surface of the GFRP composite.
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spelling doaj.art-45cfaa8018194366b8000578432267bf2023-09-03T15:21:15ZengUniversiti Malaysia Pahang PublishingJournal of Mechanical Engineering and Sciences2289-46592231-83802017-06-011122755276910.15282/jmes.11.2.2017.16.0250Thermal phenomenon of glass fibre composite under tensile static and fatigue loadingJefri Bale0Emmanuel Valot1Olivier Polit2Claude Bathias3Martine Monin4Tresna Soemardi5Department of Mechanical Engineering, Universitas Nusa Cendana, 85001 Kupang, Indonesia Laboratoire Energétique Mécanique Electromagnétisme (LEME), Université Paris Ouest, Ville d'Avray, 92410, France Laboratoire Energétique Mécanique Electromagnétisme (LEME), Université Paris Ouest, Ville d'Avray, 92410, France Laboratoire Energétique Mécanique Electromagnétisme (LEME), Université Paris Ouest, Ville d'Avray, 92410, FranceDepartment of Material Characterization and Validation, PSA Peugeot Citroën, Garenne Colombes (La), 92250, FranceLaboratory of Mechanical & Biomechanical Design, Department of Mechanical Engineering, Universitas Indonesia, 16424 Depok, IndonesiaThe aim of this study is to understand the thermal phenomenon of unidirectional Glass Fibre Reinforced Polymer (GFRP) composite under static and fatigue (tensile) loads. This study used a rectangular shaped GFRP composite and consisted of specimens with and without a circular notch. Under static test, the constant displacement rate was applied. Under fatigue test, frequency and amplitude of stress were explored to study the fatigue properties and damage evolution of the specimen. Thermography was used in real-time observation to obtain the temperature profile on the external surface of the specimens. This experimental method showed that the thermal phenomenon gave a good detection of the damage appearance of GFRP material under static loading. Moreover, thermal phenomenon gave a good correlation with the energy dissipation under fatigue loading. Thermal phenomenon successfully determined the high cycle fatigue strength of GFRP composite. This study concluded that thermal phenomenon observed by Infra-Red (IR) camera has successfully demonstrated the damage propagation and the strength behaviour of GFRP composite due to tensile loading in both static and fatigue conditions. The IR camera can then be used to determine the damage evolution and the strength prediction based on the thermal phenomenon on the external surface of the GFRP composite.https://journal.ump.edu.my/jmes/article/view/8245thermographygfrptensilestatic loadingfatigue loading
spellingShingle Jefri Bale
Emmanuel Valot
Olivier Polit
Claude Bathias
Martine Monin
Tresna Soemardi
Thermal phenomenon of glass fibre composite under tensile static and fatigue loading
Journal of Mechanical Engineering and Sciences
thermography
gfrp
tensile
static loading
fatigue loading
title Thermal phenomenon of glass fibre composite under tensile static and fatigue loading
title_full Thermal phenomenon of glass fibre composite under tensile static and fatigue loading
title_fullStr Thermal phenomenon of glass fibre composite under tensile static and fatigue loading
title_full_unstemmed Thermal phenomenon of glass fibre composite under tensile static and fatigue loading
title_short Thermal phenomenon of glass fibre composite under tensile static and fatigue loading
title_sort thermal phenomenon of glass fibre composite under tensile static and fatigue loading
topic thermography
gfrp
tensile
static loading
fatigue loading
url https://journal.ump.edu.my/jmes/article/view/8245
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AT emmanuelvalot thermalphenomenonofglassfibrecompositeundertensilestaticandfatigueloading
AT olivierpolit thermalphenomenonofglassfibrecompositeundertensilestaticandfatigueloading
AT claudebathias thermalphenomenonofglassfibrecompositeundertensilestaticandfatigueloading
AT martinemonin thermalphenomenonofglassfibrecompositeundertensilestaticandfatigueloading
AT tresnasoemardi thermalphenomenonofglassfibrecompositeundertensilestaticandfatigueloading