Kunal Arora
Dronacharya College of Engineering - Gurgaon Campus, Shandong University of Technology, Thapar Institute of Engineering and Technology, Indian Institute of Technology Roorkee
About
Kunal Arora is a science communicator, and a researcher in Mechanical Engineering (Advance manufacturing, nano finishing, 4D printing) & Materials with a vision to contribute toward sustainable development and believe that research, technology, and conservation are the key to a brighter tomorrow.
He received a Ph.D. degree in Mechanical Engineering from Thapar Institute of Engineering and Technology Patiala, Punjab – India, in June 2022. His work focused on improving the surface characteristics of the different polymer components to enhance their efficacy in industries using the magnetorheological finishing process.
Since 2018, he has been involved in works related to experimental and theoretical analysis for fine finishing of different polymer components used in industries. He has published in more than 20 International Journals (SCI/SCIE/Scopus), and 6 Conferences (International and National).
His research interests include advanced manufacturing, additive manufacturing, rapid prototyping, artificial intelligence, and machine learning for advanced manufacturing.
Employment
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Shandong University of Technology Post Doctoral Fellow2024 - 2026
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Indian Institute of Technology Roorkee Post Doctoral Fellow2023 - 2024
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Dronacharya College of Engineering - Gurgaon Campus Assistant Professor2022 - Present
Education
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Thapar Institute of Engineering and Technology Ph.D.2018 - 2022
Projects & Funding
Projects & funding information is unavailable.
Publications (26)
- Modeling of material removal rate for elastic-enhanced magnetorheological shear thickening polishing Save
- Additively manufactured titanium stents: Stress analysis and surface finishing Save
- Development of Novel Sustainable Electrolytic Magnetorheological (EMR) Fluid for Finishing Additive-Manufactured Surfaces by Electrochemical-Based Magnetorheological (ECMR) Finishing Save
- Magnetorheological Shear Thickening Polishing Characteristics for Ti-6Al-4V using Multi-Pole Coupling Magnetic Field: A Comprehensive Experimental Study Save
- Magnetorheological finishing of zirconium alloy tubes: Influence of polishing-fluid rheology and colloidal stability on interfacial material removal Save
- Influence of Pre-Strain and Thermal Treatment on Structural Steel Performance for Civil Infrastructure Applications Save
- EXPERIMENTAL INVESTIGATION INTO MAGNETORHEOLOGICAL FINISHING OF POLYMER VALVE SEAT SURFACE FOR BALL VALVE PERFORMANCE Save
- Investigation on sedimentation, magnetization, and polishing characteristics for magnetorheological shear thickening polishing fluids Save
- Abrasive Flow Finishing of Spark Plasma Sintered Titanium Alloy Bone Plate Save
- Magnetic abrasive finishing: Innovations and possibilities Save