The size effect on the seismic performance of conventional reinforced concrete columns has been observed in terms of flexural failure and shear failure. Under earthquake loading, slender columns experience flexural failure, and short columns experience flexure-shear failure and shear failure. However, the effect of section size on the seismic performance of high-strength reinforced concrete columns under the conditions of different shear span-to-depth ratios requires further confirmation. For this purpose, six high-strength reinforced concrete columns with shear span-to-depth ratios of 2 and 4 were subjected to cyclic loading in this study. The experimental results indicated that relative nominal flexural strength, energy dissipation coeffi...
This paper investigates the seismic failure modes and horizontal deformation capacity of reinforced ...
This study mainly aims to investigate the effectiveness of high-ductile fiber-reinforced concrete (H...
The length of the critical region is one of the essential parameters in designing earthquake resista...
textThe deformation capacity of a concrete column can be expressed by using different ductility par...
Reinforced concrete columns which are designed on non-seismic details have been known to be vulnerab...
This study aims at considering the effect of columns size on the seismic performance of reinforced c...
A shear dominated full-scale rectangular reinforced concrete column was tested under cyclic lateral ...
One application of high strength concrete (concrete with compressive strength exceeding 10,000 psi) ...
The design philosophy of a strong-column weak-beam (SCWB), commonly used in seismic design codes for...
The most bridge seismic design specifications contain capacity protection provisions explicitly or i...
Recent research has identified size, longitudinal reinforcement and concrete compressive strength as...
Field surveys in the aftermath of major seismic events, laboratory tests and numerical studies outli...
To resist large deformability demand due to earthquake attack, high-strength concrete (HSC) columns ...
© 2015 Elsevier Ltd. Beam-column connection is one of the vital sub-assemblages of a structural syst...
Awarded the HKIE Transactions Prize 2005Extent of critical region, which is usually referred to as p...
This paper investigates the seismic failure modes and horizontal deformation capacity of reinforced ...
This study mainly aims to investigate the effectiveness of high-ductile fiber-reinforced concrete (H...
The length of the critical region is one of the essential parameters in designing earthquake resista...
textThe deformation capacity of a concrete column can be expressed by using different ductility par...
Reinforced concrete columns which are designed on non-seismic details have been known to be vulnerab...
This study aims at considering the effect of columns size on the seismic performance of reinforced c...
A shear dominated full-scale rectangular reinforced concrete column was tested under cyclic lateral ...
One application of high strength concrete (concrete with compressive strength exceeding 10,000 psi) ...
The design philosophy of a strong-column weak-beam (SCWB), commonly used in seismic design codes for...
The most bridge seismic design specifications contain capacity protection provisions explicitly or i...
Recent research has identified size, longitudinal reinforcement and concrete compressive strength as...
Field surveys in the aftermath of major seismic events, laboratory tests and numerical studies outli...
To resist large deformability demand due to earthquake attack, high-strength concrete (HSC) columns ...
© 2015 Elsevier Ltd. Beam-column connection is one of the vital sub-assemblages of a structural syst...
Awarded the HKIE Transactions Prize 2005Extent of critical region, which is usually referred to as p...
This paper investigates the seismic failure modes and horizontal deformation capacity of reinforced ...
This study mainly aims to investigate the effectiveness of high-ductile fiber-reinforced concrete (H...
The length of the critical region is one of the essential parameters in designing earthquake resista...