Area of research
Civil and Structural Engineering · Building and Construction
Research interest
Research focused on Composite material and Structural engineering, with related work in Ultimate tensile strength, Finite element method, Flexural strength. Notable publications include 'Development of Engineered Cementitious Composites Using Sea Sand and Metakaolin', 'Effect of beryllium addition and heat treatment on the microstructure and mechanical properties of the 15%Mg2Si/Al-8Si composite', and 'Simulation of a crack in stiffened plates via a meshless formulation and FSDT'.
Investigation on mechanical properties, pore distribution and crack evolution impact of high ductility low carbon engineered cementitious composites (LCECC) using different eco-friendly aggregate
Development of low-carbon sea sand engineered cementitious composites (LSECCs): Performance, cracking behavior and trilinear tensile constitutive model
Enhancement of flexural and shear resistance in RC beams with BFRP-ECC composite strengthening system: static and impact load
Self-healing and mechanical properties of a designed Zn2 + ionic clusters rubber engineered cementitious composites with tight bonding
Cooperative effect of hybrid polyethylene-basalt fibers on crack width control and mechanical properties in ECC
Investigation on shear mechanical behavior of the interface between sulphoaluminate cement (SAC)-ECC and existing concrete
Strengthened adipic acid cross-linked epoxidized natural rubber by cellulose nanocrystals
Fiber reinforced sulphoaluminate cementitious composites: Mechanical properties and comprehensive evaluation method
Influence of accelerated chloride corrosion on mechanical properties of sea sand ECC and damage evaluation method based on nondestructive testing
Development of Engineered Cementitious Composites Using Sea Sand and Metakaolin
Effect of beryllium addition and heat treatment on the microstructure and mechanical properties of the 15%Mg2Si/Al-8Si composite
Simulation of a crack in stiffened plates via a meshless formulation and FSDT
Nonlinear Finite Element Analysis of FRP Strengthened RC Beams with Bond-Slip Effect