Stress-Strain Relationship for Steel under Uniaxial Cyclic Loadings

Author:

Calado Luís1,Brito António1

Affiliation:

1. Instituto Superior Técnico, Department of Civil Engineering and Architecture, Av. Rovisco Pais, 1049-001 Lisbon, Portugal

Abstract

The mechanical properties of steel in the inelastic range can generally be described by mathematical relationships. Many such constitutive relationships have been validated by static or uniaxial cyclic loading tests. Very few models have been substantiated by test results under complex loading conditions. For that reason, the implementation of such models in general purpose structural analysis programs for steel structures under seismic actions, is in some cases complex and in others impossible. This paper is concerned with a uniaxial non-linear model for structural steel under complex loading condition and with damage accumulation. The Giuffré, Menegoto and Pinto model was taken as a basis for the development of this model. The accuracy of the proposed numerical model was drawn with uniaxial cyclic experiments. Some numerical simulations are presented in order to illustrate the capabilities of the model for use as a stress-strain relationship for steel under uniaxial complex loading conditions up to the complete failure of the material.

Publisher

SAGE Publications

Subject

Building and Construction,Civil and Structural Engineering

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