Flexural Performance of RC Beams Strengthened with Externally-Side Bonded Reinforcement (E-SBR) Technique Using CFRP Composites

Hosen, Md Akter, Althoey, Fadi, Jumaat, Mohd Zamin, Johnson Alengaram, U., & (2021) Flexural Performance of RC Beams Strengthened with Externally-Side Bonded Reinforcement (E-SBR) Technique Using CFRP Composites. Materials, 14(11), Article number: 2809.

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Description

Reinforced concrete (RC) structures necessitate strengthening for various reasons. These include ageing, deterioration of materials due to environmental effects, trivial initial design and construction, deficiency of maintenance, the advancement of design loads, and functional changes. RC structures strengthening with the carbon fiber reinforced polymer (CFRP) has been used extensively during the last few decades due to their advantages over steel reinforcement. This paper introduces an experimental approach for flexural strengthening of RC beams with Externally-Side Bonded Reinforcement (E-SBR) using CFRP fabrics. The experimental program comprises eight full-scale RC beams tested under a four-point flexural test up to failure. The parameters investigated include the main tensile steel reinforcing ratio and the width of CFRP fabrics. The experimental outcomes show that an increase in the tensile reinforcement ratio and width of the CFRP laminates enhanced the first cracking and ultimate load-bearing capacities of the strengthened beams up to 141 and 174%, respectively, compared to the control beam. The strengthened RC beams exhibited superior energy absorption capacity, stiffness, and ductile response. The comparison of the experimental and predicted values shows that these two are in good agreement.

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11 citations in Scopus
8 citations in Web of Science®
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ID Code: 211541
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Ramli Sulong, N. H.orcid.org/0000-0001-8209-313X
Additional Information: Funding Information: Funding: This research was funded by University of Malaya High Impact Research Grant (HIRG), grant number UM.C/HIR/MOHE/ENG/36”.
Measurements or Duration: 24 pages
Keywords: CFRP composites, Ductility, E-SBR, Energy absorption capability, Flexural strengthening, Stiffness
DOI: 10.3390/ma14112809
ISSN: 1996-1944
Pure ID: 87290737
Divisions: Current > Research Centres > Centre for Materials Science
Current > Research Centres > Centre for a Waste Free World
Current > QUT Faculties and Divisions > Faculty of Science
Current > QUT Faculties and Divisions > Faculty of Engineering
Current > Schools > School of Civil & Environmental Engineering
Funding Information: Funding: This research was funded by University of Malaya High Impact Research Grant (HIRG), grant number UM.C/HIR/MOHE/ENG/36”.
Copyright Owner: 2021 The Author(s)
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Deposited On: 06 Jul 2021 02:08
Last Modified: 03 Aug 2024 01:04