This study aims at exploring the use of high performance fiber-reinforced cement composites (HPFRCCs) as an innovative method of improving the seismic performance of slender coupling beams. Also, the effect of diagonal reinforcement in slender coupling beams is evaluated in comparison to conventional reinforcement. Three 1/2-scale coupling beams having the length-to-depth ratio of 3.5 were tested under cyclic lateral loading up to about 10% drift. The key test variables were material type and reinforcement layout. For the material type, normal concrete and HPFRCC using PVA discrete fibers of 2% volumetric ratio were compared. The mix proportions of the HPFRCC were determined through detailed material tests. Two types of reinforcement layout...
Replacing of conventional concrete by High Performance Fiber Reinforced Cementitious Composite (HPFR...
Current design in the ACI building code for reinforced concrete columns under seismic load combinati...
Concrete is the most widely used construction material because of its specialty of being cast into a...
The hysteretic behavior of diagonal reinforced coupling beams is excellent during earthquakes. Howev...
The objective of this study was to develop simple reinforcement details for diagonally reinforced co...
Coupling beams may significantly improve the seismic behavior of structural wall systems, depending ...
Coupled shear walls can provide an efficient structural system to resist lateral force. However, the...
Abstract Coupled shear walls are efficient in resisting lateral forces induced by winds and earthqua...
Shear wall systems behave as individual wall because of openings like window and elevator cage. When...
In this paper the effectiveness has been assessed of an upgrading/retrofitting system for coupling b...
Diagonal reinforced coupling (DRC) beams can provide excellent strength, stiffness and energy dissip...
Abstract The purpose of this study is to investigate and evaluate the feasibility of using high-perf...
In this paper the effectiveness has been assessed of an upgrading/retrofitting system for coupling b...
The seismic behavior of coupling beams and walls constructed with tensile strain-hardening, high-per...
This study is to investigate the effectiveness of low-cost fiber-reinforced cement composites (FRCCs...
Replacing of conventional concrete by High Performance Fiber Reinforced Cementitious Composite (HPFR...
Current design in the ACI building code for reinforced concrete columns under seismic load combinati...
Concrete is the most widely used construction material because of its specialty of being cast into a...
The hysteretic behavior of diagonal reinforced coupling beams is excellent during earthquakes. Howev...
The objective of this study was to develop simple reinforcement details for diagonally reinforced co...
Coupling beams may significantly improve the seismic behavior of structural wall systems, depending ...
Coupled shear walls can provide an efficient structural system to resist lateral force. However, the...
Abstract Coupled shear walls are efficient in resisting lateral forces induced by winds and earthqua...
Shear wall systems behave as individual wall because of openings like window and elevator cage. When...
In this paper the effectiveness has been assessed of an upgrading/retrofitting system for coupling b...
Diagonal reinforced coupling (DRC) beams can provide excellent strength, stiffness and energy dissip...
Abstract The purpose of this study is to investigate and evaluate the feasibility of using high-perf...
In this paper the effectiveness has been assessed of an upgrading/retrofitting system for coupling b...
The seismic behavior of coupling beams and walls constructed with tensile strain-hardening, high-per...
This study is to investigate the effectiveness of low-cost fiber-reinforced cement composites (FRCCs...
Replacing of conventional concrete by High Performance Fiber Reinforced Cementitious Composite (HPFR...
Current design in the ACI building code for reinforced concrete columns under seismic load combinati...
Concrete is the most widely used construction material because of its specialty of being cast into a...