Structural Concrete · 2017 · 152 citations · 26 references
EngineeringStructural DynamicsShear CrackingStructural PerformanceStructural LoadingStructural EngineeringMechanicsReinforced Concrete MembersConcrete TechnologyReinforced ConcreteLoad-bearing CapacityConcrete StructuresShear TransferRefined Experimental MeasurementsTransverse ReinforcementCivil EngineeringStructural AnalysisStructural MechanicsMechanics Of Materials
A traditional difficulty in understanding the role of shear‑transfer actions in members without transverse reinforcement has been the lack of detailed measurements of shear cracking development and associated kinematics during failure. This study addresses that issue through an experimental program on 20 beams using digital image correlation. Shear carried by various potential shear‑transfer actions is estimated across load levels by analyzing cracking patterns and kinematics with digital image correlation, applying fundamental constitutive laws for concrete and steel. The measurements reveal clear mechanisms of shear failure and force transfer, and the results consistently support a rational understanding of shear transfer in reinforced concrete members without transverse reinforcement.
A traditional difficulty in the understanding of the role of the various shear‐transfer actions in members without transverse reinforcement has been a lack of detailed measurements on the development of shear cracking and their associated kinematics during the process of failure. In this paper, this issue is addressed on the basis of an experimental program on 20 beams investigated by means of digital image correlation. The measurements are shown to allow a clear understanding of the mechanisms leading to shear failure and their evolution (transfer of forces between the various potential shear‐carrying actions) during the loading process. The amount of shear carried by the various potential shear‐transfer actions is estimated for varying levels of load accounting for the cracking pattern and actual kinematics on the basis of fundamental constitutive laws for concrete and steel. The results are shown to be consistent and provide a rational basis for the understanding of the phenomenon of shear transfer in reinforced concrete members without transverse reinforcement.
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Behavior of Concrete Under Biaxial Stresses
H. Kupfer, Hubert K. Hilsdorf, Hubert Rüsch · ACI Journal Proceedings · 1969 · 1.4K citations