His scientific interests lie mostly in Structural engineering, Fibre-reinforced plastic, Flexural strength, Epoxy and Beam. His Structural engineering research incorporates themes from Composite number and Composite material. His studies deal with areas such as Girder, Glass fiber and Reinforced concrete as well as Fibre-reinforced plastic.
His biological study spans a wide range of topics, including Compressive strength, Shear strength, Ductility, Stiffness and Seismic analysis. His research integrates issues of Galvanic corrosion, Metallurgy and Coating in his study of Epoxy. His Beam research incorporates elements of Stress concentration and Composite plate.
Hamid Saadatmanesh mainly focuses on Structural engineering, Composite material, Fibre-reinforced plastic, Flexural strength and Epoxy. His Structural engineering study frequently draws connections to adjacent fields such as Composite number. He focuses mostly in the field of Composite material, narrowing it down to matters related to Masonry and, in some cases, Out of plane, Adhesive and Liquid resin.
His Fibre-reinforced plastic research includes themes of Ultimate tensile strength, Aramid, Compressive strength, Tension and Glass fiber. His studies in Flexural strength integrate themes in fields like Ductility, Shear strength and Reinforcement. Hamid Saadatmanesh works mostly in the field of Epoxy, limiting it down to topics relating to Concrete beams and, in certain cases, Span, as a part of the same area of interest.
His primary scientific interests are in Composite material, Fibre-reinforced plastic, Structural engineering, Ultimate tensile strength and Epoxy. His Fibre-reinforced plastic study incorporates themes from Curing, Geotechnical engineering, Polymer, Polymer concrete and Geocomposite. His study connects Ductility and Structural engineering.
His research in Ductility intersects with topics in Flexural strength, Reinforcement, Advanced composite materials, Stiffness and Carbon fiber reinforced polymer. He has included themes like Aramid, Soil structure interaction, Formability and Geosynthetics in his Ultimate tensile strength study. His Epoxy research is multidisciplinary, incorporating elements of Steel structures, Fiber, Stress, Tensile testing and Interface bond.
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RC Beams Strengthened with GFRP Plates. I: Experimental Study
Hamid Saadatmanesh;Mohammad R. Ehsani.
Journal of Structural Engineering-asce (1991)
Prediction of Failure Load of R/C Beams Strengthened with FRP Plate Due to Stress Concentration at the Plate End
Amir M. Malek;Hamid Saadatmanesh;Mohammad R. Ehsani.
Aci Structural Journal (1998)
STRENGTH AND DUCTILITY OF CONCRETE COLUMNS EXTERNALLY REINFORCED WITH FIBER COMPOSITE STRAPS
H. Saadatmanesh;M. R. Ehsani;M. W. Li.
Aci Structural Journal (1994)
Fatigue Strength of Steel Girders Strengthened with Carbon Fiber Reinforced Polymer Patch
Mohammadreza Tavakkolizadeh;Hamid Saadatmanesh.
Journal of Structural Engineering-asce (2003)
Shear and Flexural Strengthening of R/C Beams with Carbon Fiber Sheets
Tom Norris;Hamid Saadatmanesh;Mohammad R. Ehsani.
Journal of Structural Engineering-asce (1997)
Strengthening of Steel-Concrete Composite Girders using Carbon Fiber Reinforced Polymers Sheets
Mohammadreza Tavakkolizadeh;Hamid Saadatmanesh.
Journal of Structural Engineering-asce (2003)
RC Beams Strengthened with FRP Plates. II: Analysis and Parametric Study
Wei An;Hamid Saadatmanesh;Mohammad R. Ehsani.
Journal of Structural Engineering-asce (1991)
Design Guidelines for Flexural Strengthening of RC Beams with FRP Plates
H. Saadatmanesh;A. M. Malek.
Journal of Composites for Construction (1998)
REPAIR OF EARTHQUAKE-DAMAGED RC COLUMNS WITH FRP WRAPS
Hamid Saadatmanesh;Mohammad R. Ehsani;Limin Jin.
Aci Structural Journal (1997)
Galvanic Corrosion of Carbon and Steel in Aggressive Environments
Mohammadreza Tavakkolizadeh;Hamid Saadatmanesh.
Journal of Composites for Construction (2001)
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