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Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique

This study investigates the flexural behaviour of reinforced concrete (RC) beams strengthened through the combined externally bonded and near-surface mounted (CEBNSM) technique. The externally bonded reinforcement (EBR) and near-surface mounted (NSM) techniques are popular strengthening solutions, a...

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Autores principales: Darain, Kh Mahfuz ud, Jumaat, Mohd Zamin, Shukri, Ahmad Azim, Obaydullah, M., Huda, Md. Nazmul, Hosen, Md. Akter, Hoque, Nusrat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432438/
https://www.ncbi.nlm.nih.gov/pubmed/30974542
http://dx.doi.org/10.3390/polym8070261
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author Darain, Kh Mahfuz ud
Jumaat, Mohd Zamin
Shukri, Ahmad Azim
Obaydullah, M.
Huda, Md. Nazmul
Hosen, Md. Akter
Hoque, Nusrat
author_facet Darain, Kh Mahfuz ud
Jumaat, Mohd Zamin
Shukri, Ahmad Azim
Obaydullah, M.
Huda, Md. Nazmul
Hosen, Md. Akter
Hoque, Nusrat
author_sort Darain, Kh Mahfuz ud
collection PubMed
description This study investigates the flexural behaviour of reinforced concrete (RC) beams strengthened through the combined externally bonded and near-surface mounted (CEBNSM) technique. The externally bonded reinforcement (EBR) and near-surface mounted (NSM) techniques are popular strengthening solutions, although these methods often demonstrate premature debonding failure. The proposed CEBNSM technique increases the bond area of the concrete–carbon fibre reinforced polymer (CFRP) interface, which can delay the debonding failure. This technique is appropriate when any structure has a narrow cross-sectional width or is in need of additional flexural capacity that an individual technique or material cannot attain. An experimental test matrix was designed with one control and five strengthened RC beams to verify the performance of the proposed technique. The strengthening materials were CFRP bar as NSM reinforcement combined with CFRP fabric as EBR material. The test variables were the diameter of the NSM bars (8 and 10 mm), the thickness of the CFRP fabrics (one and two layers) and the U-wrap anchorage. The strengthened beams showed enhancement of ultimate load capacity, stiffness, cracking behaviour, and strain compatibility. The ultimate capacity of the CEBNSM-strengthened beams increased from 71% to 105% compared to that of the control beam. A simulation method based on the moment-rotation approach was also presented to predict the behaviour of CEBNSM-strengthened RC beams.
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spelling pubmed-64324382019-04-02 Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique Darain, Kh Mahfuz ud Jumaat, Mohd Zamin Shukri, Ahmad Azim Obaydullah, M. Huda, Md. Nazmul Hosen, Md. Akter Hoque, Nusrat Polymers (Basel) Article This study investigates the flexural behaviour of reinforced concrete (RC) beams strengthened through the combined externally bonded and near-surface mounted (CEBNSM) technique. The externally bonded reinforcement (EBR) and near-surface mounted (NSM) techniques are popular strengthening solutions, although these methods often demonstrate premature debonding failure. The proposed CEBNSM technique increases the bond area of the concrete–carbon fibre reinforced polymer (CFRP) interface, which can delay the debonding failure. This technique is appropriate when any structure has a narrow cross-sectional width or is in need of additional flexural capacity that an individual technique or material cannot attain. An experimental test matrix was designed with one control and five strengthened RC beams to verify the performance of the proposed technique. The strengthening materials were CFRP bar as NSM reinforcement combined with CFRP fabric as EBR material. The test variables were the diameter of the NSM bars (8 and 10 mm), the thickness of the CFRP fabrics (one and two layers) and the U-wrap anchorage. The strengthened beams showed enhancement of ultimate load capacity, stiffness, cracking behaviour, and strain compatibility. The ultimate capacity of the CEBNSM-strengthened beams increased from 71% to 105% compared to that of the control beam. A simulation method based on the moment-rotation approach was also presented to predict the behaviour of CEBNSM-strengthened RC beams. MDPI 2016-07-19 /pmc/articles/PMC6432438/ /pubmed/30974542 http://dx.doi.org/10.3390/polym8070261 Text en © 2016 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Darain, Kh Mahfuz ud
Jumaat, Mohd Zamin
Shukri, Ahmad Azim
Obaydullah, M.
Huda, Md. Nazmul
Hosen, Md. Akter
Hoque, Nusrat
Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique
title Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique
title_full Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique
title_fullStr Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique
title_full_unstemmed Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique
title_short Strengthening of RC Beams Using Externally Bonded Reinforcement Combined with Near-Surface Mounted Technique
title_sort strengthening of rc beams using externally bonded reinforcement combined with near-surface mounted technique
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432438/
https://www.ncbi.nlm.nih.gov/pubmed/30974542
http://dx.doi.org/10.3390/polym8070261
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