Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
This paper carried out experimental and analytical investigation on the shear behavior of RC beams containing corroded stirrups. Test results indicate that if the percentage local maximum mass loss is below 35%, stirrup corrosion has little influence on the load-carrying mechanism. Analytical results showed that the number and locations of stirrups in corroded specimens sustaining shear load is as the same as that of the sound specimen. Taking into account the reduction in shear resistance by stirrups due to the cross-sectional loss, the shear strength can be predict accurately using “modified truss analogy”. Experimental and analytical results also showed that the anchorage conditions of the stirrups have a predominant influence on the shears of RC beams.
This paper carried out experimental and analytical investigation on the shear behavior of RC beams containing corroded stirrups. Test results indicate that if the percentage local maximum mass loss is below 35%, stirrup corrosion has little influence on the load-carrying mechanism. Analytical results showed that the number and locations of stirrups in corroded specimens sustaining shear load is as the same as that of the sound specimen. Taking into account the reduction in shear resistance by stirrups due to the cross-sectional loss, the shear strength can be predict accurately using “modified truss analogy”. Experimental and analytical results also showed that the anchorage conditions of the stirrups have a predominant influence on the shears of RC beams.
Shear Behavior of RC Beams Containing Corroded Stirrups
Advances in Structural Engineering ; 17 ; 165-177
01.02.2014
13 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Shear Behavior of RC Beams Containing Corroded Stirrups
Online Contents | 2014
|Shear Response Behavior of Slender RC Beams with Corroded Stirrups
Springer Verlag | 2023
|Corroded Stirrups Effects on the Shear Behavior of Reinforced Concrete Slender Beams
Springer Verlag | 2022
|