Structural Performance of Inclined Shear Key in Steel- Concrete Composite Construction

dc.contributor.authorDey, Rony
dc.date.accessioned2026-07-06T19:31:20Z
dc.date.available2026-07-06T19:31:20Z
dc.date.issued26-Jun-2024
dc.descriptionM. Eng. in Earthquake Eng.
dc.description.abstractThe use of steel-concrete composite structures is growing in popularity within
dc.description.abstractthe construction sector. In steel-concrete composite structure full composite
dc.description.abstractaction between steel and concrete is developed using shear connector. Shear
dc.description.abstractconnector transfer the transverse shear developed at the interface of steel and
dc.description.abstractconcrete. Headed shear stud is the most common type of shear connector which
dc.description.abstractis conventionally welded perpendicularly to the flange surface of the steel beam
dc.description.abstractwith zero inclination. Some of the shear connectors unconsciously get welded at
dc.description.abstractan inclined angle during this process. Design equations are not available for
dc.description.abstractinclined shear key in the current design codes like Eurocode 4, CSA S4-14, BNBC-
dc.description.abstract2020, AASHTO LRFD. Here an attempt has been made to investigate the
dc.description.abstractstructural performance of inclined shear key in steel-concrete composite
dc.description.abstractconstruction. A numerical finite element model of push out test of steel-concrete
dc.description.abstractcomposite structure as per Eurocode is developed using FEA software ANSYS.
dc.description.abstractThe developed FE push-out test model for a 19 mm perpendicularly placed
dc.description.abstractheaded shear stud is validated and its results are compared with the previous
dc.description.abstractexperimental test. The ultimate shear resistance of a perpendicularly welded
dc.description.abstractheaded shear stud obtained from FE analysis is found to be very close to that
dc.description.abstractcalculated using the BNBC-2020 & AASHTO LRFD recommended design
dc.description.abstractequations. The ultimate shear resistance of 15, 30 & 45-degree inclined headed
dc.description.abstractshear stud is found to be increased by 15 %, 17.33 % & 24 % respectively for the
dc.description.abstractinclination of headed shear stud along the direction of loading and decreased by
dc.description.abstract56 %, 42.57 % & 46.93 % respectively for inclination opposite to the direction of
dc.description.abstractloading. For inclination along the direction of loading, 15-degree & 30-degree
dc.description.abstractinclined Headed shear stud exhibits ductile behaviour with maximum slip value
dc.description.abstract10.79 mm & 7.97 mm respectively but for 45-degree inclination headed shear stud
dc.description.abstractis found to be brittle with maximum slip value 3.95 mm. Headed shear studs are
dc.description.abstractvi
dc.description.abstractfound to be brittle for all the angles of inclination opposite to the direction of
dc.description.abstractloading having maximum slip less than 6 mm, which is the Eurocode 4
dc.description.abstractrecommended minimum threshold for ductile behaviour. Hence, headed shear
dc.description.abstractstud shall be welded to the flange surface very carefully in steel-concrete
dc.description.abstractcomposite construction. Only if the direction of loading is known, inclined shear
dc.description.abstractkeys may be a better choice for enhanced composite action of steel concrete
dc.description.abstractcomposite structures.
dc.identifier.otherhttp://103.99.128.19:8080/jspui/handle/123456789/477
dc.identifier.urihttp://103.99.128.19:8080/xmlui/handle/123456789/477
dc.publisherCUET
dc.sourceCUET Digital Repository
dc.subjectSteel-Concrete Composite Construction, Headed Stud Shear Connectors,
dc.subjectBangladesh National Building Code (BNBC)-2020, Finite Element Analysis (FEA) Using Ansys
dc.titleStructural Performance of Inclined Shear Key in Steel- Concrete Composite Construction

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