This article presents a micromodeling computational framework for simulating the tensile response and tension-stiffening behavior of fiber reinforced polymer–strengthened reinforced concrete elements. The total response of strengthened elements is computed based on the local stress transfer mechanisms at the crack plane including concrete bridging stress, reinforcing bars stress, FRP stress, and the bond stresses at the bars-to-concrete and fiber reinforced polymer-to-concrete interfaces. The developed model provides the possibility of calculating the average response of fiber reinforced polymer, reinforcing bars, and concrete as well as the crack spacing and crack widths. The model, after validation with experimental results, is used for a...
yesThis paper presents an analytical procedure based on the stiffness matrix method for deflection p...
A model to analyze the behavior of reinforced concrete tension ties strengthened with fiber reinforc...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...
This article presents a micromodeling computational framework for simulating the tensile response an...
This article presents a micromodeling computational framework for simulating the tensile response an...
This article presents a micromodeling computational framework for simulating the tensile response an...
This article presents a micromodeling computational framework for simulating the tensile response an...
Allowing for the tension stiffening effects resulting from the bond between steel reinforcement and ...
This paper presents a tension stiffening model for Fiber Reinforced Concrete (FRC) tensile member re...
Fibre-reinforced polymer (FRP) is free from corrosion problem and is a viable alternative reinforcem...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...
The paper is devoted to the analysis of cracking and deformability of concrete tension members reinf...
The contribution of tensioned concrete between cracks (tension-stiffening) cannot be ignored when an...
This research work is devoted to theoretical and numerical studies on the flexural behaviour of FRP-...
This paper presents a new discrete crack model that can simulate the complex behavior of fiber-reinf...
yesThis paper presents an analytical procedure based on the stiffness matrix method for deflection p...
A model to analyze the behavior of reinforced concrete tension ties strengthened with fiber reinforc...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...
This article presents a micromodeling computational framework for simulating the tensile response an...
This article presents a micromodeling computational framework for simulating the tensile response an...
This article presents a micromodeling computational framework for simulating the tensile response an...
This article presents a micromodeling computational framework for simulating the tensile response an...
Allowing for the tension stiffening effects resulting from the bond between steel reinforcement and ...
This paper presents a tension stiffening model for Fiber Reinforced Concrete (FRC) tensile member re...
Fibre-reinforced polymer (FRP) is free from corrosion problem and is a viable alternative reinforcem...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...
The paper is devoted to the analysis of cracking and deformability of concrete tension members reinf...
The contribution of tensioned concrete between cracks (tension-stiffening) cannot be ignored when an...
This research work is devoted to theoretical and numerical studies on the flexural behaviour of FRP-...
This paper presents a new discrete crack model that can simulate the complex behavior of fiber-reinf...
yesThis paper presents an analytical procedure based on the stiffness matrix method for deflection p...
A model to analyze the behavior of reinforced concrete tension ties strengthened with fiber reinforc...
Reinforced concrete (RC) beams and slabs can be strengthened by bonding fiber-reinforced polymer (FR...