A platform for research: civil engineering, architecture and urbanism
Effective shear connection for shallow cellular composite floor beams
AbstractShallow cellular composite floor beam is a new type of composite floor beam that usually consists of a structural steel beam with regularly spaced web openings and concrete slab casted above the steel decking. In this study, the shear transferring mechanisms of shallow cellular composite beams design with innovative shear connection systems are investigated. A detailed finite element analysis program was performed to investigate the force transferring mechanism, load bearing capacity and failure behavior of the shear connections under direct longitudinal shear forces by simulating the push-out tests. Four different configurations of shear connections (web opening configurations) were designed and an intensive parametric study was conducted to determine the material and geometric parameters that likely influence the behavior of the shear connection. Finally, the findings from this investigation are incorporated with the bending and push-out test results to develop design methods for this form of shear connection. The failure mechanisms of the shear connection were confirmed, and it was also revealed that this type of shear connection is effectively capable to provide the desired shear resistance and ductile behavior if designed properly.
HighlightsDesign a shallow cellular composite floor beam (SCCFB) with innovative shear connection system.Develop a FE procedure to investigate the shear force transferring and failure mechanisms of the shear connections.Carry out an intensive parametric study to investigate the parameters influencing the behavior of the shear connection.Models showed good agreement with test results.Develop tentative design and calculation methods for the shear connection system.
Effective shear connection for shallow cellular composite floor beams
AbstractShallow cellular composite floor beam is a new type of composite floor beam that usually consists of a structural steel beam with regularly spaced web openings and concrete slab casted above the steel decking. In this study, the shear transferring mechanisms of shallow cellular composite beams design with innovative shear connection systems are investigated. A detailed finite element analysis program was performed to investigate the force transferring mechanism, load bearing capacity and failure behavior of the shear connections under direct longitudinal shear forces by simulating the push-out tests. Four different configurations of shear connections (web opening configurations) were designed and an intensive parametric study was conducted to determine the material and geometric parameters that likely influence the behavior of the shear connection. Finally, the findings from this investigation are incorporated with the bending and push-out test results to develop design methods for this form of shear connection. The failure mechanisms of the shear connection were confirmed, and it was also revealed that this type of shear connection is effectively capable to provide the desired shear resistance and ductile behavior if designed properly.
HighlightsDesign a shallow cellular composite floor beam (SCCFB) with innovative shear connection system.Develop a FE procedure to investigate the shear force transferring and failure mechanisms of the shear connections.Carry out an intensive parametric study to investigate the parameters influencing the behavior of the shear connection.Models showed good agreement with test results.Develop tentative design and calculation methods for the shear connection system.
Effective shear connection for shallow cellular composite floor beams
Limazie, Toi (author) / Chen, Shiming (author)
Journal of Constructional Steel Research ; 128 ; 772-788
2016-10-12
17 pages
Article (Journal)
Electronic Resource
English
Effective shear connection for shallow cellular composite floor beams
British Library Online Contents | 2017
|Effective shear connection for shallow cellular composite floor beams
Online Contents | 2017
|Flexural behavior of shallow cellular composite floor beams with innovative shear connections
British Library Online Contents | 2015
|Flexural behavior of shallow cellular composite floor beams with innovative shear connections
Online Contents | 2015
|