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Saswat Khatai

None · KIIT Deemed to be University

https://researchid.co/ksaswat
@kiit.ac.in
16Scopus Publications
271Google Scholar Citations
10Google Scholar h-index
11Google Scholar i10-index

Research Interests

Synthesis of nano-cutting fluids, Characterization of nano fluids (Rheological, thermo-physical and tribological study) Hard machining, Nano-fluid assisted machining, Machining of nano metal matrix composites and additive manufactured material, Surface integri...

Biography

Dr. Saswat Khatai is a dedicated and accomplished young researcher from India. He began his academic journey by earning a Bachelor of Technology (B.Tech) degree from the Trident Academy of Technology, affiliated with the esteemed Biju Patnaik University of Technology in Odisha, India. Building upon his strong foundation in engineering, he completed his Master of Technology (M.Tech) degree at the School of Mechanical Engineering, KIIT Deemed to be University, in 2020. Driven by his passion for research, Dr. Khatai continued his academic journey as a Ph.D. research scholar and completed his Ph.D. in September 2024 from the School of Mechanical Engineering, KIIT Deemed to be University. Dr.

Education

Ph.D.

Recent Scopus Publications

  1. Performance Assessment of Single- and Dual-Jet Enriched MQL-Assisted Machining of Hardened Steel toward Environmental Sustainability
    Journal of Materials Engineering and Performance, 2026
  2. Investigation on machinability and sustainability aspects during hard turning under GO nanofluid MQL environment for precision and cleaner manufacturing
    Precision Engineering, 2025
  3. Performance assessment of the multi-nozzle injection MQL system for cleaner machining of hardened AISI D2 steel concerning power consumption
    Canadian Metallurgical Quarterly, 2025
  4. Sustainable hard machining under zirconia nano-cutting fluid: A step towards a green and cleaner manufacturing process
    Measurement Journal of the International Measurement Confederation, 2025
  5. Hard turning performance assessment of AISI D2 steel under dual nozzle MQL assisted ZrO2 and GO nano-cutting fluids: A sustainability approach
    Proceedings of the Institution of Mechanical Engineers Part C Journal of Mechanical Engineering Science, 2024

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