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dc.contributor.authorSousa Júnior, João Batista Marques de-
dc.contributor.authorParente Junior, Evandro-
dc.contributor.authorMoraes, Eduardo Ferreira de-
dc.date.accessioned2021-11-18T17:26:26Z-
dc.date.available2021-11-18T17:26:26Z-
dc.date.issued2020-
dc.identifier.citationSOUSA JÚNIOR, João Batista Marques de; PARENTE JUNIOR, Evandro; MORAES, Eduardo Ferreira de. Finite element model for pretensioned concrete beams using partial interaction theory. In: IBERO-LATIN-AMERICAN CONGRESS ON COMPUTATIONAL METHODS IN ENGINEERING - CILAMCE, XLI., 16-19 nov. 2020, on-line. Proceedings […], 2020.pt_BR
dc.identifier.issn2675-6269-
dc.identifier.urihttp://www.repositorio.ufc.br/handle/riufc/62221-
dc.description.abstractPretensioned beams are an efficient load-carrying structural system, and are usually precast. Tendons are pretensioned on a pretensioning bed, and the concrete is cast in contact with these tendons. After curing, the tendons are cut resulting in a self-equilibrating system with improved mechanical properties. The bond and slip between tendon and concrete may be simulated in different ways depending on the purposes of the model. Recent works have employed partial interaction assumptions on the modelling and simulation of pretensioned concrete beams. Analytical results have been provided giving some insight as to how a numerical modeling by the finite element method (FEM) should be developed. in this paper, a FE formulation for the linear analysis of pretensioned concrete beams is described, developed and tested. The bond-slip relationship is taken identical to the form which is used in partial interaction composite beam analysis, frequently associated to steel-concrete or other bimaterial beams. The relative merits of the ensuing formulations, the ocurrence of locking and the precision of the numerical schemes are addressed with respect to analytical solutions.pt_BR
dc.language.isopt_BRpt_BR
dc.publisherAssociação Brasileira de Métodos Computacionais em Engenharia (ABMEC) - https://cilamce.com.br/anais/index.php?ano=2020pt_BR
dc.subjectPretensioned concretept_BR
dc.subjectPrestressed concretept_BR
dc.subjectPartial interactionpt_BR
dc.titleFinite element model for pretensioned concrete beams using partial interaction theorypt_BR
dc.typeArtigo de Eventopt_BR
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