Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Strong-column–weak-beam criterion for reinforced concrete frames subjected to biaxial seismic excitation
Highlights The S-C–W-B criterion is inadequate for avoiding the column hinges in RC frames. A biaxial bending strength model of RC columns under axial load is developed. A biaxial overstrength factor is proposed to improve the S-C–W-B criterion. The inelastic response of RC frames under biaxial seismic excitation is investigated. The effect of the biaxial overstrength factor is validated by FEM analysis.
Abstract In several earthquakes, numerous reinforced concrete (RC) frames subjected to seismic excitation exhibit a collapse pattern characterised by column hinges, although these frames are designed according to the strong-column–weak-beam (S-C–W-B) criterion. The effect of biaxial seismic excitation on the disparity between the design and the actual performance of RC frames is investigated in this study. First, a modified load contour method was proposed to derive a closed-form equation of the biaxial bending moment strength, which was verified based on numerical and experimental results. Subsequently, a group of time-history analyses of a simple frame modelled using fibre beam-column elements subjected to biaxial seismic excitation were conducted to verify that the current S-C–W-B criterion is inadequate for preventing the occurrence of column hinges. A biaxial overstrength factor was developed based on the proposed equation, and the reinforcement of columns was appropriately amplified using this factor to prevent the occurrence of column hinges under biaxial excitation; this approach was proved to be effective through another group of time-history analyses. Thus, the findings of this study can serve as a basis for improving the seismic design of RC frames, which will enable the construction of safer engineering structures.
Strong-column–weak-beam criterion for reinforced concrete frames subjected to biaxial seismic excitation
Highlights The S-C–W-B criterion is inadequate for avoiding the column hinges in RC frames. A biaxial bending strength model of RC columns under axial load is developed. A biaxial overstrength factor is proposed to improve the S-C–W-B criterion. The inelastic response of RC frames under biaxial seismic excitation is investigated. The effect of the biaxial overstrength factor is validated by FEM analysis.
Abstract In several earthquakes, numerous reinforced concrete (RC) frames subjected to seismic excitation exhibit a collapse pattern characterised by column hinges, although these frames are designed according to the strong-column–weak-beam (S-C–W-B) criterion. The effect of biaxial seismic excitation on the disparity between the design and the actual performance of RC frames is investigated in this study. First, a modified load contour method was proposed to derive a closed-form equation of the biaxial bending moment strength, which was verified based on numerical and experimental results. Subsequently, a group of time-history analyses of a simple frame modelled using fibre beam-column elements subjected to biaxial seismic excitation were conducted to verify that the current S-C–W-B criterion is inadequate for preventing the occurrence of column hinges. A biaxial overstrength factor was developed based on the proposed equation, and the reinforcement of columns was appropriately amplified using this factor to prevent the occurrence of column hinges under biaxial excitation; this approach was proved to be effective through another group of time-history analyses. Thus, the findings of this study can serve as a basis for improving the seismic design of RC frames, which will enable the construction of safer engineering structures.
Strong-column–weak-beam criterion for reinforced concrete frames subjected to biaxial seismic excitation
Zhang, Chong (Autor:in) / Tao, Mu-Xuan (Autor:in)
Engineering Structures ; 241
30.04.2021
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Seismic Evaluation of Deficient Reinforced Concrete Weak Beam-Column Joint Frames
DOAJ | 2020
|Evaluation for Weak-Beam-Strong-Column Designed Frames
British Library Conference Proceedings | 2004
|Analysis of reinforced concrete frames subjected to column loss
Online Contents | 2012
|Seismic Performance Evaluation of Reinforced Concrete Frames Subjected to Seismic Loads
Springer Verlag | 2017
|