Parametric Investigation on Structural Behavior of Steel Fiber Reinforced Concrete Corbels
Engineering Research Journal (ERJ), Faculty of Engineering at Shoubra, Benha University • 2018
Publication Information
Authors
F.B.A. Beshara, T.S. Mostafa, Ahmed A. Mahmoud, and M.M.A. Khalil
Keywords
Reinforced concrete corbels; Steel fibers; Load-deflection curves; Load-steel strain curves; Crack
patterns; Finite element; ANSYS.
Journal
Engineering Research Journal (ERJ), Faculty of Engineering at Shoubra, Benha University
Publisher
Faculty of Engineering at Shoubra, Benha University
Volume
37
Issue
2
Pages
47-57
publication.type
Local
Paper Link
Not Available
Supplementary Materials
Not Available
Abstract
The paper presents the effect of reinforcement parameters on the structural behavior of steel fiber reinforced
concrete (SFRC) corbels using the general-purpose ANSYS computer program. The parameters studied herein include
the effect of fiber index (If),ratio of the main longitudinal steel reinforcement (ρs), yield strength of the longitudinal
steel reinforcement (fy), ratio of the horizontal stirrups (ρh), yield strength of the horizontal stirrups (fyh) and ratio of
the vertical stirrups (ρv). It is predicted that increase of If improves shear capacity and strain ductility. Steel fiber
delays the premature failure for corbels. Increasing ρs improves the shear capacity but reduces the strain ductility. A
slight increase in shear capacity is observed by increasing fy. An enhancement on shear capacity and strain ductility is
noticed by increasing ρh. On the other hand, a slight increase in shear capacity and reduction in ductility for corbels
is observed by increasing fyh. It is found that minimum ρv is required only to improve the shear capacity and strain
ductility
concrete (SFRC) corbels using the general-purpose ANSYS computer program. The parameters studied herein include
the effect of fiber index (If),ratio of the main longitudinal steel reinforcement (ρs), yield strength of the longitudinal
steel reinforcement (fy), ratio of the horizontal stirrups (ρh), yield strength of the horizontal stirrups (fyh) and ratio of
the vertical stirrups (ρv). It is predicted that increase of If improves shear capacity and strain ductility. Steel fiber
delays the premature failure for corbels. Increasing ρs improves the shear capacity but reduces the strain ductility. A
slight increase in shear capacity is observed by increasing fy. An enhancement on shear capacity and strain ductility is
noticed by increasing ρh. On the other hand, a slight increase in shear capacity and reduction in ductility for corbels
is observed by increasing fyh. It is found that minimum ρv is required only to improve the shear capacity and strain
ductility
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