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      Some Aspects of Numerical Modeling of Steel-Concrete Composite Beams with Prestressed Tendons

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          Abstract

          Abstract Aspects about the numerical modeling of three-dimensional prestressed steel-concrete composite beams by using the finite element (FE) method are highlighted and commented in this work. Emphasis is given to the numerical treatment of bonded and unbonded tendons. The proposed modeling technique uses curved beam and catenary elements for simulating internal and external tendons, respectively. Other issues such as the constitutive model for shear connectors, steel beam and concrete are also discussed. Several numerical examples with experimental and numerical results are presented. It is encountered that a faster numerical convergence is achieved when the tendon stiffness is included in the overall stiffness of the structure, even when the unbonded internal situation is addressed. Moreover, omitting slipping at the deviator device may lead to inaccurate results in the evaluation of tendon forces for external prestressing. Favourable agreement is encountered for all studied examples.

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          Most cited references30

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          Monitoring and analysis of long-term prestress losses in post-tensioned concrete beams

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            Strength Analysis of Steel–Concrete Composite Beams in Combined Bending and Shear

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              Ultimate Stress of Unbonded Tendons in Partially Prestressed Concrete Beams

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                lajss
                Latin American Journal of Solids and Structures
                Lat. Am. j. solids struct.
                Associação Brasileira de Ciências Mecânicas (Rio de Janeiro, RJ, Brazil )
                1679-7817
                1679-7825
                2019
                : 16
                : 7
                : e219
                Affiliations
                [2] La Paz orgnameUniversidad Privada Boliviana orgdiv1Escuela de Arquitectura e Ingeniería orgdiv2Departamento de Ingeniería Civil Bolivia alvaromoscoso@ 123456lp.upb.edu
                [1] Porto Alegre Rio Grande do Sul orgnameUniversidade Federal do Rio Grande do Sul orgdiv1Departamento de Engenharia Civil, Escola de Engenharia Brazil jorge.tamayo@ 123456ufrgs.br
                Article
                S1679-78252019000700507
                10.1590/1679-78255599
                26f67387-e4c0-42bb-83c9-2be51e57f8fe

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 23 April 2019
                : 22 July 2019
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 34, Pages: 0
                Product

                SciELO Brazil

                Categories
                Original Articles

                time effects,relaxation,tendon,Steel-concrete composite beams

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