Inelastic analysis of sections subjected to axial force and bending moment
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Abstract This paper describes the development of a numerical model used for the inelastic analysis of sections subjected to combined axial force and bending moment. The objective of the model is to calculate the strain distribution across the section given the applied loads and the mechanical properties of the material. The stress-strain relation is assumed to be bi-linear elastic-plastic in tension and compression. Exact solutions for six modes of strain in pure elastic, pure plastic and elastic-plastic in compression and tension are developed. A Newton-Raphson concept implemented in the iteration technique is used for determining the strain values ϵ 1 at the top and ϵ 2 at the bottom surfaces of the section. Although this analysis is for a rectangular section, this method is well suited to analyze members with more complicated cross-sections, such as circular or triangular.
[1] D. G. Fertis,et al. Equivalent Systems for the Deflection of Variable Stiffness Members , 1958 .
[2] Can Balkaya,et al. Analysis of Frames with Nonprismatic Members , 1991 .
[3] Demeter G. Fertis,et al. Transverse Vibration Theory : application of equivalent systems , 1961 .
[4] P. S. Bulson,et al. Background to buckling , 1980 .
[5] W. S. Doyle,et al. NONPRI: AN EFFECTIVE NON-PRISMATIC THREE DIMENSIONAL BEAM FINITE ELEMENT , 1981 .