Numerical analysis of nonlinear behavior of steel-concrete composite structures

Author:

LEMES Í.J.M.1,SILVA A.R.D.1,SILVEIRA R.A.M.1,ROCHA P.A.S.1

Affiliation:

1. Universidade Federal de Ouro Preto, Brazil

Abstract

Abstract This paper presents the development of an effective numerical formulation for the analysis of steel-concrete composite structures considering geometric and materials nonlinear effects. Thus, a methodology based on Refined Plastic Hinge Method (RPHM) was developed and the stiffness parameters were obtained by homogenization of cross-section. The evaluation of structural elements strength is done through the Strain Compatibility Method (SCM). The Newton-Raphson Method with path-following strategies is adopted to solve nonlinear global and local (in cross-section level) equations. The results are compared with experimental and numerical database presents in literature and a good accuracy is observed in composite cross sections, composite columns, and composite portal frames.

Publisher

FapUNIFESP (SciELO)

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