Area of research
Building and Construction · Civil and Structural Engineering
Research interest
Research focused on Fibre-reinforced plastic and Structural engineering, with related work in Shear (geology), Polyethylene terephthalate, Composite material. Notable publications include 'Axial compressive behavior of concrete-filled FRP-steel wire reinforced thermoplastics pipe hybrid columns', 'Polyethylene terephthalate fibre-reinforced polymer-confined concrete encased high-strength steel tube hybrid square columns: Axial compression tests', and 'Behavior of FRP grid-reinforced ultra-high performance concrete (UHPC) pipes under lateral compression'.
Behavior of FRP-reinforced UHPC tubular beams under torsion
Experimental study and finite element simulation of innovative steel buckling restrained braces with three yielding stages
Utilization of desert sand and PET FRP to develop eco-friendly composite structures: Validation from laboratory tests
Prediction of shear capacity of RC columns and discussion on shear contribution via the explainable machine learning
Shear capacity model of rectangular RC columns based on Bayesian update
Behavior of novel composite beams reinforced with a GFRP rectangular tube and steel angles under bending
Behavior of FRP grid-reinforced ultra-high performance concrete (UHPC) pipes under lateral compression
Behavior of hollow concrete-filled rectangular GFRP tube beams under bending
Ultimate strain prediction of partially FRP confined concrete considering strain localization
Behavior of unconfined and polyethylene terephthalate (PET) FRP-confined coal reject concrete under compression
Fiber-Reinforced Polymer-Confined Non-Circular Columns with Shape Modification: A Comprehensive Review
Axial compressive behavior of concrete-filled FRP-steel wire reinforced thermoplastics pipe hybrid columns
Polyethylene terephthalate fibre-reinforced polymer-confined concrete encased high-strength steel tube hybrid square columns: Axial compression tests