dc.contributorLamus Báez, Fabián Augusto
dc.contributorTorres Castellanos, Nancy
dc.contributorEscuela Colombiana de Ingeniería Julio Garavito
dc.creatorNavarrete Chaparro, Jenny Paola
dc.date.accessioned2023-06-16T20:13:53Z
dc.date.accessioned2023-09-06T21:15:26Z
dc.date.available2023-06-16T20:13:53Z
dc.date.available2023-09-06T21:15:26Z
dc.date.created2023-06-16T20:13:53Z
dc.date.issued2023
dc.identifierhttps://repositorio.escuelaing.edu.co/handle/001/2429
dc.identifierEscuela Colombiana de Ingeniería Julio Garavito
dc.identifierRepositorio de la Escuela Colombiana de Ingeniería Julio Garavito
dc.identifierhttps://repositorio.escuelaing.edu.co/
dc.identifierhttps://catalogo.escuelaing.edu.co/cgi-bin/koha/opac-detail.pl?biblionumber=23455
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/8706975
dc.description.abstractThe present research work focuses on studying the mechanical behavior of channel shear connectors in a composite floor system that uses steeldeck and truss joists, through numerical simulation using the finite element method of the Push-Out direct shear test. To carry out the simulation, the ANSYS structural analysis program was used. A total of 28 specimens from the experimental phase, along with calibration specimens, were simulated. The variables used were the geometry of the channel shear connector and the thickness of the concrete slab. As for the constitutive model used for the materials, the Multilinear Isotropic Hardening model was employed, which accurately represents the non-linear behavior and deformation capacity of the materials. This model also takes into account the cracking behavior of the concrete. To validate the numerical models, the obtained results were compared with the experimental results. Additionally, a statistical treatment was applied to the data, which allowed obtaining a confidence interval for the mechanical response of the system.
dc.description.abstractThis research work focuses on the study of the mechanical behavior of channel-type shear connectors in a composite mezzanine system that uses steeldeck sheet and truss joists, through numerical simulation by the finite element method of the direct shear test. push-out. To carry out the simulation, the ANSYS structural analysis program was used. 28 test tubes from the experimental phase plus the calibration specimens were simulated. The variables used were the geometry of the connector and the thickness of the concrete slab. Regarding the constitutive model used for the materials, the Multilinear Isotropic Hardening model was used, which allows to accurately represent the non-linear behavior and the deformation capacity of the materials. This model also takes into account the cracking behavior of the concrete. To validate the numerical models, the results obtained were compared with the experimental results. In addition, a statistical treatment was applied to the data, which allowed obtaining a confidence interval for the mechanical response of the system.
dc.languagespa
dc.publisherEscuela Colombiana de Ingeniería Julio Garavito
dc.publisherIngeniería Estructural
dc.publisherBogotá, Colombia
dc.publisherMaestría en Ingeniería Civil
dc.relationN/A
dc.relationAguirre, J. I. (2012). Simulación numérica del comportamiento de conectores de cortante tipo tornillo en un sistema de sección compuesta ante solicitación de corte directo. Universidad Nacional de Colombia, Bogotá, Colombia. ANSYS. (2022). ANSYS Workbench Documentation. ANSYS, Inc. and ANSYS Europe Ltd. Clement, G. V. (2010). DISEÑO BÁSICO DE ESTRUCTURAS DE ACERO DE ACUERDO CON NSR-10. Colombia: ESCUELA COLOMBIANA DE INGENIERIA. Hernández, L. E. (2017). Comportamiento de Conectores de Cortante Tipo Tornillo en Secciones Compuestas con Lámina Colaborante. Universidad Nacional de Colombia, Bogotá, Colombia. Lee, H.-H. (2020). Finite Element Simulations With ANSYS Workbench . USA: SDC Publications. McCormac, J. C. (2012). DISEÑO DE ESTRUCTURAS DE ACERO. New Jersey, USA.: Alfaomega. Muñoz, J. C. (2013). Comportamiento de canales como conectores de cortante para un sistema de seccion compuesta usando lamina colaborante. Universidad Nacional de Colombia, Bogotá, Colombia. Rodríguez, L. J. (2020). Comportamiento de conectores de cortante tipo canal en sistemas de entrepiso conformados por viguetas en celosía, lámina colaborante y concreto reforzado. Escuela Colombiana de Ingeniería Julio Garavito, Bogotá, Colombia. Rodríguez, R. M. (2019). Comportamiento de conectores de cortante tipo canal en sistemas de entrepiso conformados por viguetas en celosía, concreto reforzado y lámina colaborante. Escuela Colombiana de Ingeniería, Bogotá, Colombia.
dc.rightsinfo:eu-repo/semantics/openAccess
dc.sourceElaboración propia
dc.titlePredicción del comportamiento de conectores tipo canal en sistemas de entrepiso con steeldeck y viguetas en celosía por medio de simulación computacional por elementos finitos
dc.typeTrabajo de grado - Maestría


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