Dr Ajit Kolekar

@unishivaji.ac.in

PROFESSOR, DEPARTMENT OF TECHNOLOGY, SHIVAJI UNIVERSITY
Shivaji University, Kolhapur

12

Scopus Publications

Scopus Publications

  • Thermo-mechanical performance evaluation of motorcycle disc brake rotors using finite element analysis
    Sagar Baburao Porlekar, Ajit Bhanudas Kolekar
    Revista De Metalurgia, 2025
    Disc brake rotors are essential safety components in motorcycles, where their thermo-mechanical behavior under dynamic braking directly influences performance, durability, and reliability, particularly at high speeds. Conventional Gray cast-iron rotors, although widely used, often suffer from excessive thermal stress, significant deformation, and inadequate heat dissipation under severe braking conditions. Aluminium metal matrix composites (AMMCs) present advantages such as reduced weight and enhanced strength but encounter challenges including thermal expansion mismatch, localized stress concentration, and instability at elevated speeds. Despite their potential, few studies have explored microstructural tailoring of AMMCs to optimize their thermo-mechanical performance for practical braking applications. To address this, the present study systematically modifies AMMC constituents by incorporating tungsten carbide (WC) reinforcement while proportionally reducing aluminium content. A solid drilled disc rotor from a Bajaj Pulsar 150 cc was modeled in ANSYS Workbench and analyzed under transient coupled-field conditions across four braking speeds (800–2000 rpm). The work integrates transient Finite Element Analysis with experimental validation to compare Gray Cast Iron and three AMC formulations. Increasing WC reinforcement by 2% and reducing aluminium content improved thermal conductivity, hardness, and wear resistance while minimizing stress and deformation. Simulation and experimental results revealed that Gray Cast Iron experienced higher stress and temperature rise, whereas modified AMC2 demonstrated superior performance with lower peak temperatures, stable stress distribution, and minimal deformation. These findings highlight modified AMC2 as a promising material for next generation high-performance brake rotors, offering enhanced safety, durability, and weight efficiency.
  • Effects of Part Orientation, Infill Pattern, and Infill Density on the Mechanical Properties of 3D Printed
    Nikhil P. Raut, S. M. Bhosale, M. S. Salunkhe, A. B. Kolekar, S. L. Gombi
    Lecture Notes in Mechanical Engineering, 2025
  • Effect of process parameters on impact strength and hardness of FDM printed ABS parts
    Ajit B. Kolekar, Shrikant M. Bhosale, Mahesh S. Salunkhe, Nikhil P. Raut
    International Journal of Materials and Product Technology, 2024
  • Experimental analysis of 3D printed specimens with different printing parameters for Izod impact strength
    Nikhil P Raut, A.B. Kolekar
    Materials Today Proceedings, 2023
  • Electrorheological fluids: Mathematical theory and physics
    Mathematics in Engineering Science and Aerospace, 2023
  • Development of Augmented Reality Book for Preschool Education
    Sudhir B. Desai, Vaishali P. Bhosale, Ajit B. Kolekar
    Lecture Notes in Networks and Systems, 2023
  • Application of Taguchi methodology in evaluating the IZOD impact strength of FDM 3D printed component
    Nikhil P. Raut, Shrikant Bhosale, Ajit B. Kolekar
    Materials Today Proceedings, 2022
  • Optimization techniques for damage detection of composite structure: A review
    Nikhil P. Raut, A.B. Kolekar, S.L. Gombi
    Materials Today Proceedings, 2021
  • A review on smart deep learning for recommendation system
    International Journal of Scientific and Technology Research, 2019
  • Methods of damage detection on composites under low velocity impact: Review
    Nikhil P. Raut, A.B. Kolekar, S.L. Gombi
    Materials Today Proceedings, 2019
  • Comparison of compression ignition engine performance fuelled by liquefied petroleum gas and diesel
    International Journal of Mechanical Engineering and Technology, 2016
  • Di-methyl ether (DME): As fossil energy carrier
    20th World Hydrogen Energy Conference Whec 2014, 2014