This paper compares a number of different moment-curvature models for cracked concrete sections that contain both steel and external fiber-reinforced polymer (FRP) reinforcement. The question of whether to use a whole-section analysis or one that considers the FRP separately is discussed. Five existing and three new models are compared with test data for moment-curvature or load deflection behavior, and five models are compared with test results for plate-end debonding using a global energy balance approach (GEBA). A proposal is made for the use of one of the simplified models. The availability of a simplified model opens the way to the production of design aids so that the GEBA can be made available to practicing engineers through design g...
The structural behaviour of continuous RC beams externally strengthened with Fiber Reinforced Polyme...
The debonding of FRP plates from concrete beams is not amenable to finite-element analysis; fracture...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...
This paper compares a number of different moment-curvature models for cracked concrete sections that...
Fiber-reinforced polymer (FRP) plate debonding is commonly caused by the fracturing of concrete, but...
A major research program was carried out to analyze the mechanism of FRP debonding from concrete bea...
Over the past two decades, fiber-reinforced polymers (FRPs) have gradually gained wide acceptance in...
To calculate the load at which fiber-reinforced polymer (FRP) plates will debond from a reinforced c...
Externally Bonded FRP Reinforcement (EBR) has become a popular technique for Reinforced Concrete (RC...
In general, steel-reinforced concrete involves a ductile steel material and a very strong and ductil...
Inevitable flaws in the concrete-FRP interface govern plate debonding, and are not amenable to finit...
A Fracture-mechanics model for debonding of external fibre reinforced polymer plates on reinforced c...
Debonding failure is a key issue in strengthening and retrofitting of existing concrete structures v...
Bonding fibre-reinforced polymers (FRP) to reinforced concrete (RC) members has become a popular mea...
Debonding of externally bonded fibre-reinforced polymer (FRP) composites in FRP-concrete bonded inte...
The structural behaviour of continuous RC beams externally strengthened with Fiber Reinforced Polyme...
The debonding of FRP plates from concrete beams is not amenable to finite-element analysis; fracture...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...
This paper compares a number of different moment-curvature models for cracked concrete sections that...
Fiber-reinforced polymer (FRP) plate debonding is commonly caused by the fracturing of concrete, but...
A major research program was carried out to analyze the mechanism of FRP debonding from concrete bea...
Over the past two decades, fiber-reinforced polymers (FRPs) have gradually gained wide acceptance in...
To calculate the load at which fiber-reinforced polymer (FRP) plates will debond from a reinforced c...
Externally Bonded FRP Reinforcement (EBR) has become a popular technique for Reinforced Concrete (RC...
In general, steel-reinforced concrete involves a ductile steel material and a very strong and ductil...
Inevitable flaws in the concrete-FRP interface govern plate debonding, and are not amenable to finit...
A Fracture-mechanics model for debonding of external fibre reinforced polymer plates on reinforced c...
Debonding failure is a key issue in strengthening and retrofitting of existing concrete structures v...
Bonding fibre-reinforced polymers (FRP) to reinforced concrete (RC) members has become a popular mea...
Debonding of externally bonded fibre-reinforced polymer (FRP) composites in FRP-concrete bonded inte...
The structural behaviour of continuous RC beams externally strengthened with Fiber Reinforced Polyme...
The debonding of FRP plates from concrete beams is not amenable to finite-element analysis; fracture...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...