Abstract:
In the building industry, steel-concrete composite constructions are becoming
more important and popular for sustainable construction. A shear connector is
used in steel-concrete composite structures to produce the full composite action
between the two materials concrete and steel. The transverse shear that develops
at the steel-concrete interface is transferred by the shear connector. The most
popular kind of shear connector is headed shear stud, which is typically welded
perpendicular to the steel beam's flange surface at a zero angle to the normal of
the beam flanges as per current design standards including BS5400, Eurocode 4,
CSA S6-14, BNBC-2020, AASHTO LRFD etc. In this study the structural
performance of inclined headed shear stud in steel-concrete composite
construction has been attempted to be investigated experimentally. 08(eight) test
specimen were made at different inclination (0,15,30,45) degree using headed
shear stud for investigating of their structural performance. The ultimate shear
resistance of the 15, 30, and 45-degree inclined headed shear stud specimen is
found to be reduced by 23.38%, 37.57%, and 50.45%, respectively, for inclinations
along the direction of loading, in comparison to the perpendicularly oriented
headed shear stud. The 15-degree, 30-degree and 45-degree inclined headed
shear studs showed ductile behaviour with maximum slip values of 17.58 mm,
19.95mm and 16.29 mm; respectively will above the limiting value of 6 mm as
suggested by BS5400 for ductile behaviour. Considering the shear resistance
capacity, perpendicularly oriented shear stud is found better around 95.31 KN as
compared to inclined oriented shear connector. Considering the ductility,
inclined headed shear stud showed be their performance with the maximum slip
of 19.95mm for 30º inclination.