Amit Kumar
GLA University, Indian Institute of Technology (ISM), Dr. A.P.J. Abdul Kalam Technical University
About
Dr. Amit Kumar is an Assistant Professor (Research) in the Department of Mechanical Engineering at GLA University, Mathura, India. He received his PhD in Mechanical Engineering from the Indian Institute of Technology (Indian School of Mines), Dhanbad, India. His research primarily investigates the mechanical behavior, impact resistance, interfacial properties, and computational modelling of graphene- and CNT-based composite materials.
Dr. Kumar has authored numerous research and review articles in leading international journals published by Wiley, Springer Nature, Elsevier, Taylor & Francis, Sage, and other renowned publishers. His work has received more than 2,450+ Google Scholar citations, reflecting its impact on the fields of polymer composites and nanomaterials.
He has been recognized among the World's Top 2% Scientists (Stanford University) in both 2022 and 2025. In addition to his research contributions, Dr. Kumar serves as an active peer reviewer for over 60 international SCI/SCIE journals and has reviewed more than 75+ manuscripts for publishers including ACS, Elsevier, Springer Nature, Wiley, Taylor & Francis, Royal Society of Chemistry, IOP Publishing, Emerald, and SAGE.
Employment
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GLA University Assistant Professor - Research2023 - Present
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GLA University Senior Lecturer2022 - 2023
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GLA University Lecturer2016 - 2022
Education
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Indian Institute of Technology (ISM) Ph.D2016 - 2023
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GLA University M.Tech/Production2014 - 2016
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Dr. A.P.J. Abdul Kalam Technical University B.Tech2009 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (24)
- Graphene‐Based Materials for Solar Cells: Recent Advances, Performance Optimization, and Future Prospects Save
- Double-Notched In-Plane Compressive Strength of Unidirectional Carbon Fiber-Reinforced Graphene/Epoxy Composites: Effects of Functional Groups, Filler Concentration, and Fiber Orientation Save
- Comparison of the tensile and flexural properties of epoxy nanocomposites reinforced by graphene oxide and reduced graphene oxide Save
- Tensile, Flexural, and Compressive Strength of Natural and Glass Fabric Composites Fabricated Using Vat-Photopolymerization Additive Manufacturing Save
- Recent developments in the mechanical properties and recycling of fiber‐reinforced polymer composites Save
- Drop-weight impact and compressive behavior of graphene-based carbon fiber-reinforced polymer composites Save
- Mechanical properties of additively manufactured polymeric composites using sheet lamination technique and fused deposition modeling: A review Save
- Tensile, flexural and interlaminar shear strength of carbon fiber reinforced epoxy composites modified by graphene Save
- Dry sliding wear characteristics of natural fibre reinforced poly-lactic acid composites for engineering applications: Fabrication, properties and characterizations Save
- Influence of various functional groups in graphene on the mechanical and interfacial properties of epoxy nanocomposites: A review on molecular modeling and MD simulations Save