It is well known that axial force - bending moment interaction (N-M interaction) affects to a large extent the cyclic inelastic behaviour of structural elements, especially columns in framed structures, with reduction in bending capacity and loss of available ductility. A few studies have also shown that significant inelastic axial shortening affects the response of column elements subjected to medium-high levels of axial loads and cyclic bending. This paper is primarily aimed at evaluating the effects of column N-M interaction on the inelastic seismic response of steel frames. By considering the contemporaneous action of vertical loads, due to gravity, and of horizontal seismic excitation, it is shown that the progressive axial shortening of adjacent columns may differ substantially, thus inducing significant relative settlements at the ends of the connecting beams and, then, remarkable amplifications in beam plastic rotations. An evaluation of additional beam plastic rotations induced by column N-M interaction is carried out for real structures by investigating the inelastic response of steel frames designed according to European standards under horizontal and vertical earthquake excitations. Copyright © 2003 John Wiley & Sons, Ltd.

Effects of column axial force - bending moment interaction on inelastic seismic response of steel frames / M. DE STEFANO; M. COMO; R. RAMASCO. - In: EARTHQUAKE ENGINEERING AND STRUCTURAL DYNAMICS. - ISSN 1096-9845. - STAMPA. - VOL.32, ISSUE 12:(2003), pp. 1833-1852. [10.1002/eqe.304]

Effects of column axial force - bending moment interaction on inelastic seismic response of steel frames

DE STEFANO, MARIO;
2003

Abstract

It is well known that axial force - bending moment interaction (N-M interaction) affects to a large extent the cyclic inelastic behaviour of structural elements, especially columns in framed structures, with reduction in bending capacity and loss of available ductility. A few studies have also shown that significant inelastic axial shortening affects the response of column elements subjected to medium-high levels of axial loads and cyclic bending. This paper is primarily aimed at evaluating the effects of column N-M interaction on the inelastic seismic response of steel frames. By considering the contemporaneous action of vertical loads, due to gravity, and of horizontal seismic excitation, it is shown that the progressive axial shortening of adjacent columns may differ substantially, thus inducing significant relative settlements at the ends of the connecting beams and, then, remarkable amplifications in beam plastic rotations. An evaluation of additional beam plastic rotations induced by column N-M interaction is carried out for real structures by investigating the inelastic response of steel frames designed according to European standards under horizontal and vertical earthquake excitations. Copyright © 2003 John Wiley & Sons, Ltd.
2003
VOL.32, ISSUE 12
1833
1852
M. DE STEFANO; M. COMO; R. RAMASCO
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/3811
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