Creep investigation of GFRP RC Beams - Part B: a theoretical framework
This paper presents an analytical study about the viscoelastic time-dependent (creep) behavior of pultruded GFRP elements made of polyester and E-glass fibres. Experimental results reported in Part A are firstly used for material characterization by means of empirical and phenomenological formulatio...
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Mouloud Mammeri University of Tizi-Ouzou
2014-11-01
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doaj-1d12048347324afcab3073273d3ebb312020-11-24T21:08:05ZengMouloud Mammeri University of Tizi-OuzouJournal of Materials and Engineering Structures2170-127X2014-11-0113127136228Creep investigation of GFRP RC Beams - Part B: a theoretical frameworkmasmoudi abdelmonem0mongi benouezdou1mohamed beldi2André Weber3Tunis Manar universitytunis universitytunis universityResearch and Development Center, FRP Combar Schöck, Baden-BadenThis paper presents an analytical study about the viscoelastic time-dependent (creep) behavior of pultruded GFRP elements made of polyester and E-glass fibres. Experimental results reported in Part A are firstly used for material characterization by means of empirical and phenomenological formulations. The superposition principles by adopting the law of creep following the Eurocode 2 recommendations are also investigated. Analytical study was also conducted including creep under constant stress; successions of increasing stress superposition principle equivalent time and the return creep reloading. The results of this study revealed that Beams reinforced with GFRP are less marked with creep phenomenon. This investigation should guide the civil engineer/designer for a better understanding creep phenomenon in GFRP reinforced concrete members.http://revue.ummto.dz/index.php/JMES/article/view/305 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
masmoudi abdelmonem mongi benouezdou mohamed beldi André Weber |
spellingShingle |
masmoudi abdelmonem mongi benouezdou mohamed beldi André Weber Creep investigation of GFRP RC Beams - Part B: a theoretical framework Journal of Materials and Engineering Structures |
author_facet |
masmoudi abdelmonem mongi benouezdou mohamed beldi André Weber |
author_sort |
masmoudi abdelmonem |
title |
Creep investigation of GFRP RC Beams - Part B: a theoretical framework |
title_short |
Creep investigation of GFRP RC Beams - Part B: a theoretical framework |
title_full |
Creep investigation of GFRP RC Beams - Part B: a theoretical framework |
title_fullStr |
Creep investigation of GFRP RC Beams - Part B: a theoretical framework |
title_full_unstemmed |
Creep investigation of GFRP RC Beams - Part B: a theoretical framework |
title_sort |
creep investigation of gfrp rc beams - part b: a theoretical framework |
publisher |
Mouloud Mammeri University of Tizi-Ouzou |
series |
Journal of Materials and Engineering Structures |
issn |
2170-127X |
publishDate |
2014-11-01 |
description |
This paper presents an analytical study about the viscoelastic time-dependent (creep) behavior of pultruded GFRP elements made of polyester and E-glass fibres. Experimental results reported in Part A are firstly used for material characterization by means of empirical and phenomenological formulations.
The superposition principles by adopting the law of creep following the Eurocode 2 recommendations are also investigated. Analytical study was also conducted including creep under constant stress; successions of increasing stress superposition principle equivalent time and the return creep reloading. The results of this study revealed that Beams reinforced with GFRP are less marked with creep phenomenon. This investigation should guide the civil engineer/designer for a better understanding creep phenomenon in GFRP reinforced concrete members. |
url |
http://revue.ummto.dz/index.php/JMES/article/view/305 |
work_keys_str_mv |
AT masmoudiabdelmonem creepinvestigationofgfrprcbeamspartbatheoreticalframework AT mongibenouezdou creepinvestigationofgfrprcbeamspartbatheoreticalframework AT mohamedbeldi creepinvestigationofgfrprcbeamspartbatheoreticalframework AT andreweber creepinvestigationofgfrprcbeamspartbatheoreticalframework |
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1716760949964144640 |