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Behavior of composite girder with Y-type perfobond rib shear connectors
Abstract A Y-type perfobond rib shear connector is a new type of perfobond rib shear connector which has a Y-shape. This study evaluates the behavior of the Y-type perfobond rib shear connector which is installed in a composite girder. An analytical model of the proposed Y-type perfobond rib shear connector in a composite girder considering the partial composite behavior is developed to evaluate the structural behaviors of the girder. The validity of the analytical model is verified through a loading test on the sample girder. Through analytical and experimental evaluations of a composite girder with either the proposed Y-type perfobond shear connectors or the conventional stud shear connectors, it is confirmed that the adoption of the Y-type perfobond rib shear connector increases the load-carrying capacity of a composite beam as the composite interaction increases; resulting in about 17% increase in both the yield load and the ultimate load. Considering the advantages over the conventional shear connectors, such as the shear resistance, the ductility, the increased load-carrying capacity of composite girder, and the improved workability of rebar, the proposed Y-type perfobond rib shear connector can be applied to the various types of composite structures.
Highlights Behavior of composite girder with Y-type perfobond rib shear connector is evaluated. A static loading test is conducted to evaluate the load-carrying capacity of it. Y-type perfobond rib increases the load-carrying capacity of composite girder. The validity of the analytical model is verified through loading test results.
Behavior of composite girder with Y-type perfobond rib shear connectors
Abstract A Y-type perfobond rib shear connector is a new type of perfobond rib shear connector which has a Y-shape. This study evaluates the behavior of the Y-type perfobond rib shear connector which is installed in a composite girder. An analytical model of the proposed Y-type perfobond rib shear connector in a composite girder considering the partial composite behavior is developed to evaluate the structural behaviors of the girder. The validity of the analytical model is verified through a loading test on the sample girder. Through analytical and experimental evaluations of a composite girder with either the proposed Y-type perfobond shear connectors or the conventional stud shear connectors, it is confirmed that the adoption of the Y-type perfobond rib shear connector increases the load-carrying capacity of a composite beam as the composite interaction increases; resulting in about 17% increase in both the yield load and the ultimate load. Considering the advantages over the conventional shear connectors, such as the shear resistance, the ductility, the increased load-carrying capacity of composite girder, and the improved workability of rebar, the proposed Y-type perfobond rib shear connector can be applied to the various types of composite structures.
Highlights Behavior of composite girder with Y-type perfobond rib shear connector is evaluated. A static loading test is conducted to evaluate the load-carrying capacity of it. Y-type perfobond rib increases the load-carrying capacity of composite girder. The validity of the analytical model is verified through loading test results.
Behavior of composite girder with Y-type perfobond rib shear connectors
Kim, Sang-Hyo (author) / Choi, Jaegu (author) / Park, Se-Jun (author) / Ahn, Jin-Hee (author) / Jung, Chi-Young (author)
Journal of Constructional Steel Research ; 103 ; 275-289
2014-09-13
15 pages
Article (Journal)
Electronic Resource
English
Behavior of composite girder with Y-type perfobond rib shear connectors
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