Employment of corrosion-resistant reinforcement represents a widely-recognized effective strategy to ensure long-term durability of reinforced concrete (RC) and prestressed concrete (PC) structures. Fiber-reinforced polymer (FRP) composites have proved to be a reliable non-metallic solution, able to ensure both the required mechanical performance and corrosion resistance. FRP-RC infrastructural applications are currently spreading; conversely, FRP-PC bridges are still considered state of the art prototypes. Many are the conceptual and practical challenges accompanying this innovative technology: brittleness of FRP reinforcement, likelihood of tensioncontrolled failure, limitations on the initial pull force, limitations on the sustained load...
Highway bridge beams are subjected to aggressive environments, temperature fluctuations, and a large...
This paper presents a new strengthening concept proposed for road bridges in the project SUREBridge ...
Fiber reinforced polymer (FRP) reinforcements combine high strength with low weight and have a high ...
Employment of corrosion-resistant reinforcement represents a widely-recognized effective strategy to...
This paper deals with the design philosophy and the flexural performance under service loads of the ...
Advancement in material science has enabled the engineers to enhance the strength and long-term beha...
Fiber-Reinforced Polymers (FRP) play a major role in civil engineering applications. FRP reinforceme...
This paper compares and reviews the recommendations and contents of the guide for the\ud design and ...
Over the past few decades fibre reinforced polymers (FRPs) have gradually gained recognition as an e...
Every year, several prestressed concrete (PC) bridge girders are accidentally damaged by overheight ...
016087122016Final Report Period: 10/1/15 \u2013 7/1/16 14PDFTech ReportRECAST UTC #00042134-04-103DT...
In recent years, the number of pedestrian bridges built from composites materials has notably incre...
The use of fiber-reinforced polymer (FRP) reinforcement is a practical alternative to conventional s...
Highway bridge beams are subjected to aggressive environments, temperature fluctuations, and a large...
This paper presents a new strengthening concept proposed for road bridges in the project SUREBridge ...
Fiber reinforced polymer (FRP) reinforcements combine high strength with low weight and have a high ...
Employment of corrosion-resistant reinforcement represents a widely-recognized effective strategy to...
This paper deals with the design philosophy and the flexural performance under service loads of the ...
Advancement in material science has enabled the engineers to enhance the strength and long-term beha...
Fiber-Reinforced Polymers (FRP) play a major role in civil engineering applications. FRP reinforceme...
This paper compares and reviews the recommendations and contents of the guide for the\ud design and ...
Over the past few decades fibre reinforced polymers (FRPs) have gradually gained recognition as an e...
Every year, several prestressed concrete (PC) bridge girders are accidentally damaged by overheight ...
016087122016Final Report Period: 10/1/15 \u2013 7/1/16 14PDFTech ReportRECAST UTC #00042134-04-103DT...
In recent years, the number of pedestrian bridges built from composites materials has notably incre...
The use of fiber-reinforced polymer (FRP) reinforcement is a practical alternative to conventional s...
Highway bridge beams are subjected to aggressive environments, temperature fluctuations, and a large...
This paper presents a new strengthening concept proposed for road bridges in the project SUREBridge ...
Fiber reinforced polymer (FRP) reinforcements combine high strength with low weight and have a high ...