Fadi Oudah
University of Calgary
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Publication
Featured researches published by Fadi Oudah.
Journal of Earthquake Engineering | 2017
Fadi Oudah; Raafat El-Hacha
The slotted-beam connection system experiences minimal beam elongation and achieves a non-tearing action under seismic loading. The system is modified in this research in order to overcome the main challenges in the design process; the yield penetration into the joint, the joint cracking, and the complex joint shear deformation mechanism. These challenges are overcame by moving the vertical slot away from the face of the column, and hence, relocating the plastic hinge. Based on the experimental results of large-scale specimens (hysteretic response, cracking pattern, beam rotation, etc.), the optimum relocation distance is equivalent to the shear depth of the beam member.
Bulletin of Earthquake Engineering | 2017
Fadi Oudah; Raafat El-Hacha
Several plastic hinge relocation techniques were proposed in the past few decades to avoid the congestion of the transverse steel at the joint, avoid strain penetration into the joint, and maintain the strong-column weak-beam behavior. The challenging aspect of these designs is the level of accuracy in predicting the center of rotation of the beam element, which is a necessary component in the seismic design of reinforced concrete frames. In this research, a newly developed concrete beam-column connection called the double slotted beam (DSB) was developed and used to relocate the plastic hinges in concrete frames, with a high level of accuracy in controlling the location of the center of rotation. Two vertical slots made at the top and bottom fibers of the beam member were introduced in the DSB system to control the location of the center of rotation. The plastic hinge was relocated by moving the vertical slots away from the face of the column. Experimental evaluation of large-scale DSB connections with and without relocated vertical slots showed the excellent performance of the system in achieving high drift capacities, non-tearing action, minimal concrete damage, and reduced bond deterioration in the joint.
Composite Structures | 2012
Fadi Oudah; Raafat El-Hacha
Engineering Structures | 2013
Fadi Oudah; Raafat El-Hacha
Journal of Composites for Construction | 2012
Fadi Oudah; Raafat El-Hacha
Composites Part B-engineering | 2013
Fadi Oudah; Raafat El-Hacha
Composites Part B-engineering | 2012
Fadi Oudah; Raafat El-Hacha
Engineering Structures | 2017
Fadi Oudah; Raafat El-Hacha
Journal of Bridge Engineering | 2016
Fadi Oudah; Glen Norlander; Raafat El-Hacha
Special Publication | 2011
Fadi Oudah; Raafat El-Hacha