Experimental investigation of bond characteristics between CFRP and steel under tensile loads

Bond length; Bond strength (chemical); Bonding; Carbon; Carbon fiber reinforced plastics; Debonding; Fiber reinforced plastics; Bond characteristics; Carbon fiber reinforced polymer; Cold-formed steel; Damaged infrastructure; Experimental investigations; In-depth understanding; Strengthening methods...

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Main Authors: Kalavagunta S., Naganathan S., Bin Mustapha K.N., Rezaii A.S.
Other Authors: 55695387900
Format: Article
Published: Jordan University of Science and Technology 2023
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spelling my.uniten.dspace-229592023-05-29T14:13:43Z Experimental investigation of bond characteristics between CFRP and steel under tensile loads Kalavagunta S. Naganathan S. Bin Mustapha K.N. Rezaii A.S. 55695387900 30267872100 26032672000 54409246200 Bond length; Bond strength (chemical); Bonding; Carbon; Carbon fiber reinforced plastics; Debonding; Fiber reinforced plastics; Bond characteristics; Carbon fiber reinforced polymer; Cold-formed steel; Damaged infrastructure; Experimental investigations; In-depth understanding; Strengthening methods; Surface preparation technology; Strengthening (metal) Rehabilitation of damaged infrastructure has become a priority in recent years as an alternative to the daunting costs of rebuilding structures. Traditional strengthening methods have drawbacks, many of which can be overcome through the use of carbon fiber reinforced polymer CFRP. Considerable research has been directed to investigate the effectiveness of bond length and strength between CFRP and steel. Research results indicated that significant increase in strength due to CFRP strengthening can be obtained. Nevertheless, in-depth understanding of debonding failures along the steel-epoxy interface is still a challenging issue. This paper presents three different experimental models with new surface preparation to increase bond strength and control debonding failure between CFRP fabrics and steel. The experimental results indicated that debonding failure can be controlled to some extent with proposed surface preparation technology. � 2016 JUST. All Rights Reserved. Final 2023-05-29T06:13:43Z 2023-05-29T06:13:43Z 2016 Article 10.14525/JJCE.10.3.3607 2-s2.0-84976382033 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84976382033&doi=10.14525%2fJJCE.10.3.3607&partnerID=40&md5=208323e41f6cfeaec0c0829dd35747a2 https://irepository.uniten.edu.my/handle/123456789/22959 10 3 339 351 Jordan University of Science and Technology Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Bond length; Bond strength (chemical); Bonding; Carbon; Carbon fiber reinforced plastics; Debonding; Fiber reinforced plastics; Bond characteristics; Carbon fiber reinforced polymer; Cold-formed steel; Damaged infrastructure; Experimental investigations; In-depth understanding; Strengthening methods; Surface preparation technology; Strengthening (metal)
author2 55695387900
author_facet 55695387900
Kalavagunta S.
Naganathan S.
Bin Mustapha K.N.
Rezaii A.S.
format Article
author Kalavagunta S.
Naganathan S.
Bin Mustapha K.N.
Rezaii A.S.
spellingShingle Kalavagunta S.
Naganathan S.
Bin Mustapha K.N.
Rezaii A.S.
Experimental investigation of bond characteristics between CFRP and steel under tensile loads
author_sort Kalavagunta S.
title Experimental investigation of bond characteristics between CFRP and steel under tensile loads
title_short Experimental investigation of bond characteristics between CFRP and steel under tensile loads
title_full Experimental investigation of bond characteristics between CFRP and steel under tensile loads
title_fullStr Experimental investigation of bond characteristics between CFRP and steel under tensile loads
title_full_unstemmed Experimental investigation of bond characteristics between CFRP and steel under tensile loads
title_sort experimental investigation of bond characteristics between cfrp and steel under tensile loads
publisher Jordan University of Science and Technology
publishDate 2023
_version_ 1806428497150738432
score 13.222552