Comportement des poteaux composites en profils creux en acier remplis de béton
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Date
2015-06-11
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Abstract
The purpose of this paper is the determination of flexural stiffness EIx and EIy of a concrete filled rectangular cross section of a composite steel column, under biaxial bending (N, Mx and M y). The rigidities will be estimated from a theoretical approach using a finite element analysis (element bar with 4 degrees of freedom), based on the equilibrium conditions at mid-span using the moment-curvature relationships (M-Φ) of the deformed element by applying the following equation: EI=M/Φ. The material behavior is the one adopted by Eurocode 2 and 3, respectively, for concrete and steel. To validate the theoretical approach used, two comparisons were made: one comparing the rigidities given by the moment-curvature relations versus those calculated by the Eurocode 4, and a second comparison between failure loads of two columns scale one with those tested in the laboratory [2]. Based on the results obtained, we may conclude that the theoretical approach used in this study and the models of behavior of materials are suitable for such problems
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published by EDP Sciences.
Keywords
Civil engineering, Degrees of freedom (mechanics), Rigidity, 4 degrees of freedom, Equilibrium conditions, Flexural stiffness, Material behavior, Moment-curvature relation
