Behavior evaluation for reinforced concrete columns with rectangular hollow section subjected to axial compression and biaxial bending

Author:

Xu Zigang1,Han Qiang1,Huang Chao2

Affiliation:

1. Beijing University of Technology

2. The State University of New York at Buffalo

Abstract

In order to evaluate the behavior of reinforced concrete columns with rectangular hollow section subjected to axial compression and biaxial bending, the calculation formula of load capacity and moment-curvature relationship are derived according to the distribution type of neutral axis in this paper. The load capacity and rotation ductility of the bottom control section of three reinforced concrete specimen bridge columns with rectangular hollow section under different axial compression ratio, reinforcement ratio and stirrup ratio are analyzed based on these calculation formulae. The Mx–My interaction curves and moment-curvature curves of bridge column specimens derived from the theoretical calculation show good agreement with the experimental data obtained by cyclic testing of three specimens under axial compression and biaxial bending. The results show that the P–Mx–My interaction has considerable effects on the behavior of the reinforced concrete bridge columns with rectangular hollow section. If these interaction effects are ignored, then the load capacity and deformation are overestimated and this fact can be crucial from the viewpoint of design.

Publisher

Riga Technical University

Subject

Building and Construction,Civil and Structural Engineering

Reference18 articles.

1. Design Criteria for Reinforced Columns under Axial Load and Biaxial Bending;Bresler, B.;ACI Journal Proceedings,1960

2. Concrete Box Sections under Biaxial Bending and Axial Load

3. Experimental Studies of Reinforced Concrete Bridge Columns under Axial Load Plus Biaxial Bending

4. Experimental Behavior of Nonconforming RC Columns with Plain Bars under Constant Axial Load and Biaxial Bending

5. Multiple Shaking Tables Tests of Seismic Pounding Effect of Reinforced Concrete Bridge Model;Dong, H. H.;Journal of Vibroengineering,2014

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