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dc.creatorEscalante, Mario Raúl
dc.creatorRougier, Viviana Carolina
dc.date.accessioned2016-06-02T14:30:51Z
dc.date.available2016-06-02T14:30:51Z
dc.date.issued2015-11-22
dc.identifier.citationCILAMCE XXXVI Ibero-Latin American Congress on Computational Methods in Engineering (2015)
dc.identifier.urihttp://hdl.handle.net/20.500.12272/410
dc.description.abstractMasonry structures shear failure is generally preceded by a massive cracking development in the mortar joints. For this reason, the mortar joints limit the final strength. Mechanical properties degradation and structural safety loss make the rehabilitation or reinforcement necessary. The reinforcement technique with fiber reinforcement polymers has experimentally proved to be very effective. However, in the present, analytical and numerical capacity to quantify this retrofitting system efficiency is still subject of research. In order to improve these intervention techniques it is necessary to have more experimental data and a numerical tool to simulate their behavior. Although the in-plane mechanical behaviour of unreinforced masonry and masonry retrofitted with fiber reinforced polymer (FRP) laminates has been studied by several authors, the analytical modelling of mechanical behaviour of masonry remains an open problem, due to its natural variability and inhomogeneity. A coupled damaged-plasticity model in which bricks and mortar are separately modelled (micro approach) is considered to carried out a parametric study of in plane shear behavior of unreinforced and FRP retrofitted scaled masonry walls. Composite materials are simulated as an elastic orthotropic material. Parametric study results are compared with experimental data obtained from unreinforced and FRP reinforced panels subjected to shear loads.es_ES
dc.formatapplication/pdf
dc.language.isoenges_ES
dc.language.isoenges_ES
dc.rightsinfo:eu-repo/semantics/openAccesses_ES
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/us/*
dc.subjectMasonryes_ES
dc.subjectFiber Reinforced Polymerses_ES
dc.subjectRetrofittinges_ES
dc.subjectShear strengthes_ES
dc.titleShear behaviour of FRP retrofitted masonry with uncertainties in the material properties: parametric studyes_ES
dc.typeinfo:eu-repo/semantics/conferenceObjectes_ES
dc.rights.holderEscalante, Mario Raúl ; Rougier, Viviana Carolinaes_ES
dc.description.affiliationFil: Escalante, Mario Raúl. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Civil. Grupo de Investigación de Mecánica Computacional y de Estructuras; Argentina.es_ES
dc.description.affiliationFil: Rougier, Viviana Carolina. Universidad Tecnológica Nacional. Facultad Regional Concepción del Uruguay. Departamento Civil. Grupo de Investigación de Mecánica Computacional y de Estructuras; Argentina.es_ES
dc.description.peerreviewedPeer Reviewedes_ES
dc.type.versioninfo:eu-repo/semantics/publishedVersiones_ES
dc.type.snrddocunento de conferenciaes_ES
dc.relation.referencesAlcaino, P. and Santa Mar´ıa, H., 2008 . Experimental response of externally retrofitted masonry walls subjected to shear loading. Journal of Composites for Contruction, vol. 12, n. 5, pp. 489–498.es_ES
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dc.relation.referencesChuang, S., Zhuge, Y., Wong, T. and Peters, L., 2003 . Seismic retrofitting of unreinforced masonry walls by frp strips. In: Pacific conference on earthquake engineering, vol.es_ES
dc.relation.referencesEhsani, M., Saadatmanesh, H. and Al-Saidy, A., 1997 . Shear behavior of urm retrofitted with frp overlays. J Comp Constr, vol. 1, n. 1, pp. 17–25.es_ES
dc.relation.referencesElGawady, M., 2004 . Seismic retrofit of urm walls with fiber composites. Ph.D thesis, ISIMAC, EPFL, Switzerland, vol. .es_ES
dc.relation.referencesElGawady, M., Lestuzzi, P. and Badoux, M., 2005 . In-plane seismic response of urm walls upgraded with frp. J. Comp. Constr, vol. 9, n. 6, pp. 524–535.es_ES
dc.relation.referencesGabor, A., Ferrier, E., Jacquelin, E. and Hamelin, P., 2006 . Analysis and modelling of the inplane shear behaviour of hollow brick masonry panels. Constr Build Mat, vol. 20, pp. 308–321.es_ES
dc.relation.referencesGallegos, H., 1993 . Albañilería Estructural. Diseño y Cálculo de Muros. Pontificia Universidad Católica del Perú.es_ES
dc.relation.referencesLuccioni, B., 2006 . Constitutive model for fiber reinforced composite laminates. Journal of Applied Mechanics, vol. 73, n. 6, pp. 901–910.es_ES
dc.rights.useNo Comercial con fines académicos.es_ES


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