Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Moment-Curvature Behaviors of Concrete Beams Singly Reinforced by Steel-FRP Composite Bars
A steel-fiber-reinforced polymer (FRP) composite bar (SFCB) is a kind of rebar with inner steel bar wrapped by FRP, which can achieve a better anticorrosion performance than that of ordinary steel bar. The high ultimate strength of FRP can also provide a significant increase in load bearing capacity. Based on the adequate simulation of the load-displacement behaviors of concrete beams reinforced by SFCBs, a parametric analysis of the moment-curvature behaviors of concrete beams that are singly reinforced by SFCB was conducted. The critical reinforcement ratio for differentiating the beam’s failure mode was presented, and the concept of the maximum possible peak curvature (MPPC) was proposed. After the ultimate curvature reached MPPC, it decreased with an increase in the postyield stiffness ratio (rsf), and the theoretical calculation method about the curvatures before and after the MPPC was derived. The influence of the reinforcement ratio, effective depth, and FRP ultimate strain on the ultimate point was studied by the dimensionless moment and curvature. By calculating the envelope area under the moment-curvature curve, the energy ductility index can obtain a balance between the bearing capacity and the deformation ability. This paper can provide a reference for the design of concrete beams that are reinforced by SFCB or hybrid steel bar/FRP bar.
Moment-Curvature Behaviors of Concrete Beams Singly Reinforced by Steel-FRP Composite Bars
A steel-fiber-reinforced polymer (FRP) composite bar (SFCB) is a kind of rebar with inner steel bar wrapped by FRP, which can achieve a better anticorrosion performance than that of ordinary steel bar. The high ultimate strength of FRP can also provide a significant increase in load bearing capacity. Based on the adequate simulation of the load-displacement behaviors of concrete beams reinforced by SFCBs, a parametric analysis of the moment-curvature behaviors of concrete beams that are singly reinforced by SFCB was conducted. The critical reinforcement ratio for differentiating the beam’s failure mode was presented, and the concept of the maximum possible peak curvature (MPPC) was proposed. After the ultimate curvature reached MPPC, it decreased with an increase in the postyield stiffness ratio (rsf), and the theoretical calculation method about the curvatures before and after the MPPC was derived. The influence of the reinforcement ratio, effective depth, and FRP ultimate strain on the ultimate point was studied by the dimensionless moment and curvature. By calculating the envelope area under the moment-curvature curve, the energy ductility index can obtain a balance between the bearing capacity and the deformation ability. This paper can provide a reference for the design of concrete beams that are reinforced by SFCB or hybrid steel bar/FRP bar.
Moment-Curvature Behaviors of Concrete Beams Singly Reinforced by Steel-FRP Composite Bars
Zeyang Sun (Autor:in) / Yang Yang (Autor:in) / Wenlong Yan (Autor:in) / Gang Wu (Autor:in) / Xiaoyuan He (Autor:in)
2017
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Metadata by DOAJ is licensed under CC BY-SA 1.0
Flexural behaviors of hybrid concrete beams reinforced with BFRP bars and steel bars
Online Contents | 2015
|MOMENT CURVATURE RELATIONSHIP OF CONCRETE MEMBER REINFORCED WITH CFRP RODS AND STEEL BARS
British Library Conference Proceedings | 2003
|Moment-curvature-time relations for reinforced concrete beams
UB Braunschweig | 1972
|Moment-curvature-time relations for reinforced concrete beams
TIBKAT | 1972
|Curvature Ductility of Singly Reinforced CRC Beams (Part-II)
Trans Tech Publications | 2010
|