Numerical analysis of composite steel-concrete beams in ambient temperature and in fire situation

Numerical analysis of composite steel-concrete beams in ambient temperature and in fire situation

Authors

  • Larissa Degliuomini Kirchhof Universidade de São Paulo
  • Jorge Munaiar Neto Universidade de São Paulo
  • Maximiliano Malite Universidade de São Paulo
  • Roberto Martins Gonçalves Universidade de São Paulo

DOI:

https://doi.org/10.5433/1679-0375.2005v26n1p69

Keywords:

Structures, Composite Beams., Fire Situation, Numerical Analysis.

Abstract

This paper presents three-dimensional numerical models of steel-concrete composite beams with full interaction (no slip between concrete slab and steel beam) using a non-linear procedure. The threedimensional numerical models must be capable of predicting the response of composite beam at ambient temperature and in fire situation with accuracy. The computer program ABAQUS ® 6.3-1, based on Finite Element Method, was used to analyze the numerical modeling. The accuracy of the models is demonstrated through the results obtained, which are compared with the experimental results presented in other works. The reported results, when compared to experimental data, demonstrate that the numerical models elaborated with shell finite elements show better performance when compared to the results of the numerical models elaborated with solid finite elements.

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Author Biographies

Larissa Degliuomini Kirchhof, Universidade de São Paulo

Mestre em Engenharia de Estruturas - EESC-USP.

Jorge Munaiar Neto, Universidade de São Paulo

Professor do Departamento de Engenharia de Estruturas da EESC-USP.

Maximiliano Malite, Universidade de São Paulo

Professor do Departamento de Engenharia de Estruturas da EESC-USP.

Roberto Martins Gonçalves, Universidade de São Paulo

Professor do Departamento de Engenharia de Estruturas da EESC-USP.

Published

2005-07-15

How to Cite

Kirchhof, L. D., Munaiar Neto, J., Malite, M., & Gonçalves, R. M. (2005). Numerical analysis of composite steel-concrete beams in ambient temperature and in fire situation. Semina: Ciências Exatas E Tecnológicas, 26(1), 69–82. https://doi.org/10.5433/1679-0375.2005v26n1p69

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Original Article

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