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Materials Science

D-Index
76
Citations
17577
World Ranking
3349
National Ranking
933

Engineering and Technology

D-Index
83
Citations
20292
World Ranking
451
National Ranking
154

Research.com Recognitions

  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering
  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering
  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering
  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering
  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering
  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering
  • Fellow of the Indian National Academy of Engineering (INAE)
  • The Canadian Academy of Engineering

Overview

Venkatesh Kodur is affiliated with Michigan State University in the United States and has contributed extensively to the field of engineering, particularly focusing on civil and structural engineering. Their research portfolio includes 250 publications in engineering, with a substantial focus on subfields such as civil and structural engineering, building and construction, safety, risk, reliability and quality, mechanics of materials, and mechanical engineering.

The main topics addressed by Venkatesh Kodur revolve around fire effects on concrete materials, structural behavior of reinforced concrete, innovative concrete reinforcement materials, fire dynamics and safety research, structural response to dynamic loads, structural load-bearing analysis, and concrete properties and behavior. These themes reflect a concentration on both the material properties and the safety aspects of construction materials and structures under various conditions.

Recent papers authored or coauthored by Kodur include:

  • Machine learning framework for predicting failure mode and shear capacity of ultra high performance concrete beams, 2020, Engineering Structures
  • Experimental behavior of ultra high performance fiber reinforced concrete beams under fire conditions, 2020, Engineering Structures
  • Microstructural changes and mechanical performance of cement composites reinforced with recycled carbon fibers, 2021, Cement and Concrete Composites
  • Effect of Temperature on Thermal Properties of Ultrahigh-Performance Concrete, 2020, Journal of Materials in Civil Engineering
  • Modeling the fire-induced spalling in concrete structures incorporating hydro-thermo-mechanical stresses, 2020, Cement and Concrete Composites

Frequent coauthors collaborating with Kodur include M.Z. Naser, Srishti Banerji, K.M. Liew, S. Venkatachari, and P.P. Bhatt, indicating a network of research partnerships that support investigations in concrete behavior, fire safety, and structural performance.

The most common publication venues for Kodur's work are:

  • Engineering Structures
  • Cement and Concrete Composites
  • Polymers
  • Fire Technology
  • Journal of Structural Engineering

Venkatesh Kodur has received recognition as a member of The Canadian Academy of Engineering and as a Fellow of the Indian National Academy of Engineering (INAE).

Best Publications

  • Properties of Concrete at Elevated Temperatures

    Venkatesh Kodur

  • EFFECT OF TEMPERATURE ON THERMAL PROPERTIES OF HIGH-STRENGTH CONCRETE

    V. K. R. Kodur;M. A. Sultan

  • Thermal and mechanical properties of fiber reinforced high performance self-consolidating concrete at elevated temperatures

    Wasim Khaliq;Venkatesh Kodur

  • Predicting the fire resistance behaviour of high strength concrete columns

    V.K.R. Kodur;T.C. Wang;F.P. Cheng

  • Fire hazard in bridges: Review, assessment and repair strategies

    Maria Eugenia Moreyra Garlock;Ignacio Paya-Zaforteza;Ignacio Paya-Zaforteza;Venkatesh Kodur;Li Gu

  • Critical factors governing the fire performance of high strength concrete systems

    V.K.R. Kodur;L. Phan

  • Optimization of the type and amount of polypropylene fibres for preventing the spalling of lightweight concrete subjected to hydrocarbon fire

    A Bilodeau;V.K.R Kodur;G.C Hoff

  • High-Temperature Properties of Steel for Fire Resistance Modeling of Structures

    Venkatesh Kodur;Mahmud Dwaikat;Rustin Fike

  • Stress-strain curves for high strength concrete at elevated temperatures

    Fu Ping Cheng;V. K R Kodur;Tien Chih Wang

  • Effect of Strength and Fiber Reinforcement on Fire Resistance of High-Strength Concrete Columns

    V. K R Kodur;Fu Ping Cheng;Tien Chih Wang;M. A. Sultan

  • Hydrothermal model for predicting fire-induced spalling in concrete structural systems

    Monther B Dwaikat;V K R Kodur

  • Development of metakaolin–fly ash based geopolymers for fire resistance applications

    Hai Yan Zhang;Hai Yan Zhang;Venkatesh Kodur;Shu Liang Qi;Liang Cao

  • An experimental study of the mechanical properties of fibre reinforced polymer (FRP) and steel reinforcing bars at elevated temperatures

    Y.C. Wang;P.M.H. Wong;V. Kodur

  • Thermal behavior and mechanical properties of geopolymer mortar after exposure to elevated temperatures

    Hai Yan Zhang;Hai Yan Zhang;Venkatesh Kodur;Bo Wu;Liang Cao

  • Fire hazard in buildings: review, assessment and strategies for improving fire safety

    Venkatesh Kodur;Puneet Kumar;Muhammad Masood Rafi

  • A numerical model for predicting the fire resistance of reinforced concrete beams

    V.K.R. Kodur;M. Dwaikat

  • Performance-based fire resistance design of concrete-filled steel columns

    V.K.R. Kodur

  • Effect of Temperature on Strength and Elastic Modulus of High-Strength Steel

    Wei Yong Wang;Bing Liu;Venkatesh Kodur

  • Spalling in High Strength Concrete Exposed to Fire: Concerns, Causes, Critical Parameters and Cures

    V. K. R. Kodur

  • Response to fire of concrete structures that incorporate FRP

    Luke A Bisby;Mark F Green;Venkatesh K R Kodur

  • Thermal and mechanical properties of steel-fibre-reinforced concrete at elevated temperatures

    T. T. Lie;V. K. R. Kodur

Frequent Co-Authors

Luke Bisby
Luke Bisby University of Edinburgh
Mark F. Green
Mark F. Green Queen's University
Jean-Marc Franssen
Jean-Marc Franssen University of Liège
Guo-Qiang Li
Guo-Qiang Li Tongji University
Parviz Soroushian
Parviz Soroushian Michigan State University
Amir Fam
Amir Fam Queen's University
Khalid M. Mosalam
Khalid M. Mosalam University of California, Berkeley

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