A platform for research: civil engineering, architecture and urbanism
Flexural Response of Concrete Beams Reinforced with Steel and Fiber Reinforced Polymers
This paper numerically investigates the flexural response of concrete beams reinforced with steel and four types of Fiber-Reinforced Polymers (FRP), i.e., Carbon FRP (CFRP), Glass FRP (GFRP), Aramid FRP (AFRP), and Basalt FRP (BFRP). The flexural responses of forty beams with two boundary conditions (simply supported and over-hanging beams) were determined using ABAQUS. Subsequently, the finite element models were validated using experimental results. Eventually, the impact of the reinforcement ratios ranging between 0.15% and 0.60% on the flexural capacity, crack pattern, and fracture energy were investigated for all beams. The results revealed that, for the low reinforcement ratios, the flexural performance of CFRP significantly surpassed that of steel and other FRP types. As the reinforcement ratio reached 0.60%, the steel bars exhibited the best flexural performance.
Flexural Response of Concrete Beams Reinforced with Steel and Fiber Reinforced Polymers
This paper numerically investigates the flexural response of concrete beams reinforced with steel and four types of Fiber-Reinforced Polymers (FRP), i.e., Carbon FRP (CFRP), Glass FRP (GFRP), Aramid FRP (AFRP), and Basalt FRP (BFRP). The flexural responses of forty beams with two boundary conditions (simply supported and over-hanging beams) were determined using ABAQUS. Subsequently, the finite element models were validated using experimental results. Eventually, the impact of the reinforcement ratios ranging between 0.15% and 0.60% on the flexural capacity, crack pattern, and fracture energy were investigated for all beams. The results revealed that, for the low reinforcement ratios, the flexural performance of CFRP significantly surpassed that of steel and other FRP types. As the reinforcement ratio reached 0.60%, the steel bars exhibited the best flexural performance.
Flexural Response of Concrete Beams Reinforced with Steel and Fiber Reinforced Polymers
Noura Khaled Shawki Ali (author) / Sameh Youssef Mahfouz (author) / Nabil Hassan Amer (author)
2023
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under CC BY-SA 1.0
Simplified Flexural Response of Steel Fiber-Reinforced Concrete Beams
Online Contents | 2008
|Simplified Flexural Response of Steel Fiber-Reinforced Concrete Beams
British Library Online Contents | 2008
|Flexural Design Methodology for Concrete Beams Reinforced with Fiber-Reinforced Polymers
Online Contents | 2002
|Flexural behavior of concrete beams strengthened with steel reinforced polymers
British Library Conference Proceedings | 2008
|Flexural behavior of concrete beams strengthened with steel reinforced polymers
British Library Conference Proceedings | 2008
|