World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
49
Citations
9710
World Ranking
4288
National Ranking
65

Research.com Recognitions

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

Overview

Tarun Kant is affiliated with the Indian Institute of Technology Bombay in India, where their research primarily focuses on engineering disciplines. Their work is particularly centered on civil and structural engineering as well as building and construction.

Their recent scholarly output includes the paper titled Strength and compaction characteristics of kaolin clay blended with industrial wastes, published in 2023 in Materials Today Proceedings. This publication reflects their interest in geotechnical studies and the utilization of industrial by-products in construction materials.

Tarun Kant's research areas encompass:

  • Concrete and Cement Materials Research
  • Recycling and utilization of industrial and municipal waste in materials production
  • Geotechnical and construction materials studies

Their work falls under the broader field of Engineering, with documented contributions in three main areas. More specifically, they have engaged in civil and structural engineering and building and construction research activities.

Tarun Kant has collaborated with other researchers, with frequent co-authorship recorded with Vaibhav Sharma.

Publications by Tarun Kant have appeared predominantly in the venue Materials Today Proceedings, indicating a focused publication strategy within this journal.

The scientist has been recognized as a Fellow of the Indian National Academy of Engineering (INAE), an acknowledgment within the professional community.

Best Publications

  • A critical review of recent research on functionally graded plates

    D.K. Jha;Tarun Kant;R.K. Singh

  • Analytical solutions for free vibration of laminated composite and sandwich plates based on a higher-order refined theory

    Tarun Kant;K Swaminathan

  • Analytical solutions for the static analysis of laminated composite and sandwich plates based on a higher order refined theory

    Tarun Kant;K Swaminathan

  • Application of polymer composites in civil construction : A general review

    Sandeep S. Pendhari;Tarun Kant;Yogesh M. Desai

  • Estimation of transverse/interlaminar stresses in laminated composites – a selective review and survey of current developments

    T. Kant;K. Swaminathan

  • Higher-order shear deformable theories for flexure of sandwich plates—Finite element evaluations

    B.N. Pandya;T. Kant

  • Numerical analysis of thick plates

    Tarun Kant

  • Finite element analysis of laminated composite plates using a higher-order displacement model

    B.N. Pandya;T. Kant

  • A Simple Finite Element Formulation of a Higher-order Theory for Unsymmetrically Laminated Composite Plates

    T. Kant;B.N. Pandya

  • A refined higher-order C° plate bending element

    Tarun Kant;D.R.J. Owen;O.C. Zienkiewicz

  • A critical review and some results of recently developed refined theories of fiber-reinforced laminated composites and sandwiches

    Mallikarjuna;T. Kant

  • Free vibration of isotropic, orthotropic, and multilayer plates based on higher order refined theories

    T. Kant;K. Swaminathan

  • FREE VIBRATION ANALYSIS OF FIBER REINFORCED COMPOSITE BEAMS USING HIGHER ORDER THEORIES AND FINITE ELEMENT MODELLING

    S.R. Marur;T. Kant

  • Flexural analysis of laminated composites using refined higher-order C ° plate bending elements

    B. N. Pandya;Tarun Kant

  • Free vibration of composite and sandwich laminates with a higher-order facet shell element

    Rakesh Kumar Khare;Tarun Kant;Ajay Kumar Garg

  • Closed-form thermo-mechanical solutions of higher-order theories of cross-ply laminated shallow shells

    Rakesh Kumar Khare;Tarun Kant;Ajay Kumar Garg

  • An unsymmetric FRC laminate C° finite element model with 12 degrees of freedom per node

    Tarun Kant;B.S. Manjunatha

  • Thermal buckling analysis of skew fibre-reinforced composite and sandwich plates using shear deformable finite element models

    T. Kant;C.S. Babu

  • A higher-order theory for free vibration of unsymmetrically laminated composite and sandwich plates—finite element evaluations

    T. Kant;Mallikarjuna

  • Higher-order Closed-form Solutions for Free Vibration of Laminated Composite and Sandwich Shells

    Ajay Kumar Garg;Rakesh Kumar Khare;Tarun Kant

Frequent Co-Authors

Abhijit Mukherjee
Abhijit Mukherjee Curtin University
Arvind H. Shah
Arvind H. Shah University of Manitoba
O.C. Zienkiewicz
O.C. Zienkiewicz Swansea University
David Owen
David Owen Swansea University

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