Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/12175
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dc.contributor.authorMahini, Seyed Saeeden
dc.contributor.authorRonagh, H Ren
dc.date.accessioned2013-02-27T17:35:00Z-
dc.date.issued2010-
dc.identifier.citationComposite Structures, 92(6), p. 1325-1332en
dc.identifier.issn1879-1085en
dc.identifier.issn0263-8223en
dc.identifier.urihttps://hdl.handle.net/1959.11/12175-
dc.description.abstractIt is generally accepted that beam-column joints are critical elements of reinforced concrete (RC) buildings subjected to lateral loads, and that they may require specific design treatment following the accepted design philosophy of the strong-column-weak-beam. In earthquake-prone regions, the joints must be designed to allow the dissipation of large amounts of energy into the neighbouring elements without a significant loss of strength and ductility. The frames are often designed carefully based on the strong-column-weak-beam concept and their joints detailed accordingly. Sometimes, though, the detailing is inadequate (example, RC joints designed to earlier codes have insufficient lateral resistance). Web-bonded FRP (fibre reinforced plastic) is one of the few possible strengthening methods that can be used when an inadequately detailed joint is damaged causing severe degradation of the joint's structural strength. In this paper, the results of some tests on FRP strengthened specimens are presented. The results show that the method is effective and capable of restoring or even upgrading the strength of the system. In addition, using the basic principles of equilibrium and compatibility, an analytical model is presented that simplifies the analysis and design of this strengthening scheme. Based on the model, a range of design graphs are presented for selection of the type and the amount of FRP required upgrading an existing joint to a specified moment capacity and curvature ductility.en
dc.languageenen
dc.publisherElsevier Ltden
dc.relation.ispartofComposite Structuresen
dc.titleStrength and ductility of FRP web-bonded RC beams for the assessment of retrofitted beam-column jointsen
dc.typeJournal Articleen
dc.identifier.doi10.1016/j.compstruct.2009.09.006en
dc.subject.keywordsInfrastructure Engineering and Asset Managementen
dc.subject.keywordsEarthquake Engineeringen
dc.subject.keywordsStructural Engineeringen
local.contributor.firstnameSeyed Saeeden
local.contributor.firstnameH Ren
local.subject.for2008090504 Earthquake Engineeringen
local.subject.for2008090505 Infrastructure Engineering and Asset Managementen
local.subject.for2008090506 Structural Engineeringen
local.subject.seo2008870203 Industrial Construction Designen
local.subject.seo2008870204 Residential Construction Designen
local.profile.schoolSchool of Environmental and Rural Scienceen
local.profile.emailsmahini@une.edu.auen
local.output.categoryC1en
local.record.placeauen
local.record.institutionUniversity of New Englanden
local.identifier.epublicationsrecordune-20130124-145946en
local.publisher.placeUnited Kingdomen
local.format.startpage1325en
local.format.endpage1332en
local.peerreviewedYesen
local.identifier.volume92en
local.identifier.issue6en
local.contributor.lastnameMahinien
local.contributor.lastnameRonaghen
dc.identifier.staffune-id:smahinien
local.profile.roleauthoren
local.profile.roleauthoren
local.identifier.unepublicationidune:12381en
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
local.title.maintitleStrength and ductility of FRP web-bonded RC beams for the assessment of retrofitted beam-column jointsen
local.relation.fundingsourcenote/IPRS UQIPRSen
local.output.categorydescriptionC1 Refereed Article in a Scholarly Journalen
local.search.authorMahini, Seyed Saeeden
local.search.authorRonagh, H Ren
local.uneassociationNoen
local.year.published2010en
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