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Subhabrata Koley

About


Dr. Subhabrata Koley is working as Assistant Professor in the Department of Aerospace Engineering and Applied Mechanics, IIEST Shibpur since August 2023. Initially, he joined the department as DST INSPIRE faculty in May 2021. Before joining as DST INSPIRE faculty he was working as a Project Scientist in the Department of Aerospace Engineering, Indian Institute of Technology Kanpur on the mechanical behavior of Radar Absorbing Structural Composites (RAS). He has completed his Doctor of Philosophy in the area of Micromechanics of Composite Materials from the Department of Aerospace Engineering, Indian Institute of Technology, Kanpur. His research interests include Micromechanics of Composite Materials, Structural Analysis, Computational Mechanics, and the Mathematical Theory of Homogenization. He has a specific interest in micromechanics, damage mechanics, and failure analysis of advanced composite materials. However, he is very much interested in experimental work related to composite materials.

Academic Qualifications


  • Doctor of Philosophy in Aerospace Engineering in 2020 (Specialization: Micromechanics of Composite Material with the Effect of Boundary Layer
  • Master of Technology in Aeronautical Engineering in 2012
  • Bachelor of Technology in Aeronautical Engineering in 2010

Latest Publications


  • 1 S Koley, C S Upadhyay and P M Mohite, Boundary layer effects at the interface of cross ply laminates using homogenization theory, Composite Structures, 2022
  • 2 S Koley, P M Mohite, and C S Upadhyay, Effect of Boundary Layer at the Free Edge on the prediction of initiation of damage in composites, Sixth International Conference on Recent Advances in Composite Materials (ICRACM), 2019
  • 3 S Koley, P M Mohite, and C S Upadhyay, Boundary layer effects at the interface of a [0/90] laminate, Euromech Colloquium 602: Composite manufacturing processes. Analyses, modelling and simulations, 2019
  • 4 S Koley, P M Mohite, and C S Upadhyay, Study of boundary layer effect between plies of composite materials at micro-scale, 4th Indian Conference on Applied Mechanics (INCAM), 2019
  • 5 A Pradhan, S Koley, P M Mohite, and C S Upadhyay, An ABAQUS plugin to generate RVE with random fibre arrangement and estimation of effective properties, 64th Congress of the Indian Society of Theoretical and Applied Mechanics, 2019
  • 6 S Koley, P M Mohite, and C S Upadhyay, A Micromechanical study and uncertainty quantification for effective properties of unidirectional fibre reinforced composites, Composite Structures, 2019
  • 7 S Koley, P M Mohite, and C S Upadhyay, Boundary layer effect at the free edge of fibrous composites using homogenization theory, Composites Part B: Engineering, 2019
  • 8 S Koley, P M Mohite, and C S Upadhyay, Boundary layer effect at the free edge of composite material using homogenization theory, Solid Mechanics Conference (SOLMECH), 2018
  • 9 S Koley, P M Mohite, and C S Upadhyay, A Micromechanical study for uncertainty quantification of effective properties in fibre reinforced composites, 20th International Conference on Composite Structures (ICCS), 2017
  • 10 Subhabrata Koley and A P Haran, Design, stress analysis and optimization of fan blade and disc dovetail by parametric studies, 26th National Convention of Aerospace Engineers and National Seminar on Expanding Frontiers in Aerospace Technologies - challenges and opportunities, 2012
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    Research Areas


    • Composite Materials & Structures
    • Computational Solid Mechanics
    • Micromechanical Damage Mechanics
    • Boundary layer Effects in Composites
    • Mathematical Theory of Homogenization

    Publications


  • 1 S Koley, C S Upadhyay and P M Mohite, Boundary layer effects at the interface of cross ply laminates using homogenization theory, Composite Structures, 2022
  • 2 S Koley, P M Mohite, and C S Upadhyay, A Micromechanical study and uncertainty quantification for effective properties of unidirectional fibre reinforced composites, Composite Structures, 2019
  • 3 S Koley, P M Mohite, and C S Upadhyay, Boundary layer effect at the free edge of fibrous composites using homogenization theory, Composites Part B: Engineering, 2019
  • 1 S Koley, P M Mohite, and C S Upadhyay, Effect of Boundary Layer at the Free Edge on the prediction of initiation of damage in composites, Sixth International Conference on Recent Advances in Composite Materials (ICRACM), 2019
  • 2 S Koley, P M Mohite, and C S Upadhyay, Boundary layer effects at the interface of a [0/90] laminate, Euromech Colloquium 602: Composite manufacturing processes. Analyses, modelling and simulations, 2019
  • 3 S Koley, P M Mohite, and C S Upadhyay, Study of boundary layer effect between plies of composite materials at micro-scale, 4th Indian Conference on Applied Mechanics (INCAM), 2019
  • 4 A Pradhan, S Koley, P M Mohite, and C S Upadhyay, An ABAQUS plugin to generate RVE with random fibre arrangement and estimation of effective properties, 64th Congress of the Indian Society of Theoretical and Applied Mechanics, 2019
  • 5 S Koley, P M Mohite, and C S Upadhyay, Boundary layer effect at the free edge of composite material using homogenization theory, Solid Mechanics Conference (SOLMECH), 2018
  • 6 S Koley, P M Mohite, and C S Upadhyay, A Micromechanical study for uncertainty quantification of effective properties in fibre reinforced composites, 20th International Conference on Composite Structures (ICCS), 2017
  • 7 Subhabrata Koley and A P Haran, Design, stress analysis and optimization of fan blade and disc dovetail by parametric studies, 26th National Convention of Aerospace Engineers and National Seminar on Expanding Frontiers in Aerospace Technologies - challenges and opportunities, 2012
  • 1 S Koley, P M Mohite, and C S Upadhyay, A Micromechanical study of Fibre-Reinforced Composites with uncertainty quantification and statically equivalent random fibre distribution, Recent Advances in Theoretical, Applied, Computational and Experimental Mechanics, Springer Professional21954356, , 2020
  • Patents


    # Patents Year

    Projects


    • Micromechanics based intra and inter-laminar damage models with emphasis on spatial randomness, boundary layer and interface, Sponsored
      Ongoing

    Awards


    • DST-INSPIRE Faculty Award, Year: 2020

    Created: 23 November 2019