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Civil Engineering. Structural Engineering. Fibre-Reinforced Polymer (FRP) Composite Materials for Sustainable Infrastructure. Research & Development on Fibre-Reinforced Polymer (FRP) as Internal Reinforcement for Sustainable Concrete Structures. Serviceability and Strength Performance of FRP-Reinforced Concrete Structures. Modeling of Long-Term Durability of FRP Reinforced Concrete Structures Based on Lab and Field Studies. Qualification/Certification/Quality Control/Quality Acceptance Testing of FRP bars, FRP Prestressing Tendons, FRP laminates/plates, and Glass/Carbon/Basalt Sheets/Fabrics Impregnated with Resin Epoxy in Accordance with CSA, ACI, ASTM Standards, etc. Durability/Structural Performance and Self-Sensing Capabilities of Novel FRP Bars using Nanomaterials. Development and Characterisation of New Bendable Thermoplastic FRP Bars. Development of Related Specifications and Industry Standards for using FRP Reinforcement in Structural Concrete. Properties’ Assessment of Glass, Carbon, and Basalt FRP Bars in accordance with North American and International Codes and Specifications for Concrete Bridges and Building. Structural Testing and Analytical Modeling of Full-Scale Concrete Members Reinforced with FRP Reinforcement (Flexure, Shear, Torsion, Compression, and Combined) under Static and Cyclic/Seismic Loading. Development of Analytical Models for Predicting Development Length, Crack-Width, Deflection, and Strength. Development of 150-Year Sustainable Concrete Bridges and Building Structures Reinforced with FRP Bars (such as bridge decks, parking garages, and marine structures). Effect of Climatic Changes on FRP Reinforcement and FRP-Reinforced Concrete Structures. Field Applications & Long-Term Monitoring of FRP Reinforced Concrete Bridges and Buildings. Expertise in the Design, Installation and Quality Control of Internal and External FRP Reinforcements for Concrete Structures. Development of National and International Design Codes and Specifications for FRP-Reinforced Concrete Structures.
Civil Engineering. Structural Engineering. Fibre-Reinforced Polymer (FRP) Composite Materials for Sustainable Infrastructure. Research & Development on Fibre-Reinforced Polymer (FRP) as Internal Reinforcement for Sustainable Concrete Structures. Serviceability and Strength Performance of FRP-Reinforced Concrete Structures. Modeling of Long-Term Durability of FRP Reinforced Concrete Structures Based on Lab and Field Studies. Qualification/Certification/Quality Control/Quality Acceptance Testing of FRP bars, FRP Prestressing Tendons, FRP laminates/plates, and Glass/Carbon/Basalt Sheets/Fabrics Impregnated with Resin Epoxy in Accordance with CSA, ACI, ASTM Standards, etc. Durability/Structural Performance and Self-Sensing Capabilities of Novel FRP Bars using Nanomaterials. Development and Characterisation of New Bendable Thermoplastic FRP Bars. Development of Related Specifications and Industry Standards for using FRP Reinforcement in Structural Concrete. Properties’ Assessment of Glass, Carbon, and Basalt FRP Bars in accordance with North American and International Codes and Specifications for Concrete Bridges and Building. Structural Testing and Analytical Modeling of Full-Scale Concrete Members Reinforced with FRP Reinforcement (Flexure, Shear, Torsion, Compression, and Combined) under Static and Cyclic/Seismic Loading. Development of Analytical Models for Predicting Development Length, Crack-Width, Deflection, and Strength. Development of 150-Year Sustainable Concrete Bridges and Building Structures Reinforced with FRP Bars (such as bridge decks, parking garages, and marine structures). Effect of Climatic Changes on FRP Reinforcement and FRP-Reinforced Concrete Structures. Field Applications & Long-Term Monitoring of FRP Reinforced Concrete Bridges and Buildings. Expertise in the Design, Installation and Quality Control of Internal and External FRP Reinforcements for Concrete Structures. Development of National and International Design Codes and Specifications for FRP-Reinforced Concrete Structures.
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