Based on the second-order inelastic analysis, this paper presents a practical method of design for steel-concrete composite beam-columns that satisfies code performance requirements. The concept of second-order inelastic analysis for structures is to consider both geometric and material nonlinearities and their imperfections so that the real structural behavior can be captured and the assumption for effective lengths is not required. The refined plastic hinge approach proposed herein traces the gradual material yielding and simulates full plasticity of a cross-section. The definitions of the initial and full yield surfaces (which are used to initiate the yielding and to indicate the full plastic stage) for steel-concrete composite cross-sec...
Some current specifications, such as AS4100 and AISC360-10, permit the design of steel frames by adv...
Abstract. In this study, a flexibility-based finite element method considering geometric and materia...
This paper develops a numerical formulation for the non-linear inelastic analysis of steel-concrete ...
Composite steel-concrete structures experience non-linear effects which arise from both instability-...
Composite steel-concrete structures experience non-linear effects which arise from both instability-...
The computational technique of the full ranges of the second-order inelastic behaviour evaluation of...
This paper emphasizes material nonlinear effects on composite beams with recourse to the plastic hin...
This work presents the computational implementation and evaluation of a generalized strategy based o...
Efficient and accurate geometric and material nonlinear analysis of the structures under ultimate lo...
Robust geometric and material nonlinear analysis of buildings under ultimate loads is a key to succe...
In this study, a new method for nonlinear analysis of 2D steel frames, by improving the conventional...
The beam element for three-dimensional pure steel frames proposed by the first author is extended fo...
This paper investigates the use of the Direct Analysis method, established within the AISC Specifica...
Lumped plasticity is one of the most commonly used approaches for the nonlinear analysis of framed s...
Abstract This paper presents the development of an effective numerical formulation for the analysis ...
Some current specifications, such as AS4100 and AISC360-10, permit the design of steel frames by adv...
Abstract. In this study, a flexibility-based finite element method considering geometric and materia...
This paper develops a numerical formulation for the non-linear inelastic analysis of steel-concrete ...
Composite steel-concrete structures experience non-linear effects which arise from both instability-...
Composite steel-concrete structures experience non-linear effects which arise from both instability-...
The computational technique of the full ranges of the second-order inelastic behaviour evaluation of...
This paper emphasizes material nonlinear effects on composite beams with recourse to the plastic hin...
This work presents the computational implementation and evaluation of a generalized strategy based o...
Efficient and accurate geometric and material nonlinear analysis of the structures under ultimate lo...
Robust geometric and material nonlinear analysis of buildings under ultimate loads is a key to succe...
In this study, a new method for nonlinear analysis of 2D steel frames, by improving the conventional...
The beam element for three-dimensional pure steel frames proposed by the first author is extended fo...
This paper investigates the use of the Direct Analysis method, established within the AISC Specifica...
Lumped plasticity is one of the most commonly used approaches for the nonlinear analysis of framed s...
Abstract This paper presents the development of an effective numerical formulation for the analysis ...
Some current specifications, such as AS4100 and AISC360-10, permit the design of steel frames by adv...
Abstract. In this study, a flexibility-based finite element method considering geometric and materia...
This paper develops a numerical formulation for the non-linear inelastic analysis of steel-concrete ...