Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates

Tropical climate combines with saltwater exposure may influence the structural performance and durability of FRP-epoxy-concrete system over long period of time. FRP being non-corrodible material has been proven to be efficient materials in rehabilitation jobs compared to steel. Reinforced concrete s...

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Published in:Jurnal Teknologi (Sciences and Engineering)
Main Author: Mohd Hashim M.H.; Mohd Sam A.R.; Warid Hussin M.; Mohd Arshad M.F.
Format: Article
Language:English
Published: Penerbit UTM Press 2013
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84877620792&doi=10.11113%2fjt.v61.1765&partnerID=40&md5=2c330cf871f0e8822fb105c7a4ed89f6
id 2-s2.0-84877620792
spelling 2-s2.0-84877620792
Mohd Hashim M.H.; Mohd Sam A.R.; Warid Hussin M.; Mohd Arshad M.F.
Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
2013
Jurnal Teknologi (Sciences and Engineering)
61
3
10.11113/jt.v61.1765
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84877620792&doi=10.11113%2fjt.v61.1765&partnerID=40&md5=2c330cf871f0e8822fb105c7a4ed89f6
Tropical climate combines with saltwater exposure may influence the structural performance and durability of FRP-epoxy-concrete system over long period of time. FRP being non-corrodible material has been proven to be efficient materials in rehabilitation jobs compared to steel. Reinforced concrete structures may be required to be strengthened at a later age of their service life to overcome additional loading capacity and deterioration due to environmental effect. The main objective of the current paper is to study flexural behavior of an externally bonded reinforced concrete beams using carbon FRP plate and fabrics due to exposure to natural tropical climate. The research studies the ability of reinforced concrete beams externally bonded with CFRP plate and fabrics to resist numerous environmental conditions such as tropical weather, normal laboratory environment and saltwater solution. The bonded beams are subjected experimental evaluation by performing four points load test until failure to observe the failure loads, deflection, strain, cracking behavior and the patterns of failure. Strengthening of reinforced concrete beams using CFRP plate and fabrics demonstrated significant improvement in the flexural capacity of the beams by 30% and 16%, respectively compare to control specimen without strengthening. © 2013 Penerbit UTM Press. All rights reserved.
Penerbit UTM Press
1279696
English
Article

author Mohd Hashim M.H.; Mohd Sam A.R.; Warid Hussin M.; Mohd Arshad M.F.
spellingShingle Mohd Hashim M.H.; Mohd Sam A.R.; Warid Hussin M.; Mohd Arshad M.F.
Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
author_facet Mohd Hashim M.H.; Mohd Sam A.R.; Warid Hussin M.; Mohd Arshad M.F.
author_sort Mohd Hashim M.H.; Mohd Sam A.R.; Warid Hussin M.; Mohd Arshad M.F.
title Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
title_short Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
title_full Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
title_fullStr Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
title_full_unstemmed Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
title_sort Structural performance and ductility of fiber reinforced polymer concrete bonding system under tropical climates
publishDate 2013
container_title Jurnal Teknologi (Sciences and Engineering)
container_volume 61
container_issue 3
doi_str_mv 10.11113/jt.v61.1765
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84877620792&doi=10.11113%2fjt.v61.1765&partnerID=40&md5=2c330cf871f0e8822fb105c7a4ed89f6
description Tropical climate combines with saltwater exposure may influence the structural performance and durability of FRP-epoxy-concrete system over long period of time. FRP being non-corrodible material has been proven to be efficient materials in rehabilitation jobs compared to steel. Reinforced concrete structures may be required to be strengthened at a later age of their service life to overcome additional loading capacity and deterioration due to environmental effect. The main objective of the current paper is to study flexural behavior of an externally bonded reinforced concrete beams using carbon FRP plate and fabrics due to exposure to natural tropical climate. The research studies the ability of reinforced concrete beams externally bonded with CFRP plate and fabrics to resist numerous environmental conditions such as tropical weather, normal laboratory environment and saltwater solution. The bonded beams are subjected experimental evaluation by performing four points load test until failure to observe the failure loads, deflection, strain, cracking behavior and the patterns of failure. Strengthening of reinforced concrete beams using CFRP plate and fabrics demonstrated significant improvement in the flexural capacity of the beams by 30% and 16%, respectively compare to control specimen without strengthening. © 2013 Penerbit UTM Press. All rights reserved.
publisher Penerbit UTM Press
issn 1279696
language English
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