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dc.contributor.authorAhmad, M. E.-
dc.contributor.authorAhmad, N.-
dc.contributor.authorPervez, S.-
dc.contributor.authorIqbal, A.-
dc.contributor.authorKhan, A. Z.-
dc.contributor.authorRahim, M. E.-
dc.contributor.authorHassan, W.-
dc.contributor.authorUmer, K.-
dc.contributor.authorKhan, K.-
dc.date.accessioned2020-06-11T13:33:24Z-
dc.date.available2020-06-11T13:33:24Z-
dc.date.issued2019-
dc.identifier.issn1687-8086-
dc.identifier.issn1687-8094 (eISSN)-
dc.identifier.otherBBKH1500-
dc.identifier.urihttp://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/19467-
dc.descriptionHindawi Advances in Civil Engineering Volume 2019, Article ID 6572465, 15 pages https://doi.org/10.1155/2019/6572465vi
dc.description.abstractImproper execution of modern code-designed structures in many developing countries have resulted in significant deficient building stock; low strength of concrete, reduced reinforcement, inappropriate detailing of beam-column members, and lack of lateral ties in joint panels. Observations based on earthquake-induced damages and experimental studies conducted on such buildings have revealed significant vulnerability of beam-column joints of bare moment-resisting frame structures. Shake table tests were conducted on selected three 1:4 reduced-scale three-story reinforced concrete (RC) moment-resisting frames, including one bare RC frame and two masonry-infilled RC frames, having relatively lower bay width-to-height ratio. The models were tested under multilevels of seismic excitations using natural acceleration time history of 1994 Northridge and also free vibrationtests,toacquirethemodels’dynamiccharacteristics,i.e.,frequenciesandelasticviscousdamping,andseismicresponse parameters,i.e.,roofdisplacement,interstorydriftandinterstoryshear,andseismicresponsecurves,inordertounderstandthe role of masonry infill in the selected frames under moderate seismic actions. The inclusion of masonry infill avoided joint shear hinging of the frame.Additionally, theinfill provided energy dissipation to thestructure through masonry sliding overmultiple cracks. This enabled the structure to control seismic displacement demand and resist relatively higher ground motions, yet limiting structural damages.vi
dc.language.isoenvi
dc.publisherHindawi Limited,vi
dc.subjectSeismic Performance Evaluationvi
dc.subjectModern Barevi
dc.subjectMasonry-Infilled RC SMRF Structuresvi
dc.subjectCivil Engineeringvi
dc.titleSeismic Performance Evaluation of Modern Bare and Masonry-Infilled RC SMRF Structuresvi
dc.typeOthervi
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