Nilay Krishna Mukhopadhyay
Also known as: NKM
Indian Institute of Technology BHU Varanasi, National Metallurgical Laboratory CSIR, Indian Institute of Science, Indian Institute of Engineering Science and Technology, Shibpur
About
Dr. N.K. Mukhopadhyay (FIE, FIIM, FEMSI, FAScT, FAPAM, FNAE, FNASc, FNA)
Professor in Physical Metallurgy
Department of Metallurgical Engineering
Indian Institute of Technology (BHU), Varanasi
E-Mail: [email protected]; [email protected]
Phone: +91-542-7165627/7165625 (O), +91-542-2575512 (R); (mobile) +91-983-981-7585; Fax:+91-542-2369478/ 2368428
Area of Interest: Physical Metallurgy, Quasicrystals, Nanomaterials, Bulk Metallic Glasses, Complex Metallic Alloys, Metastable phases. High Entropy Alloys, Electron Microscopy, X-ray Diffraction, Phase Transformations, Rapid Solidification, Mechanical Alloying/Milling, Interfaces, Micro- and nano-indentation, Failure analysis and component integrity
Employment
-
Indian Institute of Technology BHU Varanasi Professor (HAG)2012 - Present
-
Indian Institute of Technology BHU Varanasi Professor2006 - 2012
-
Indian Institute of Technology BHU Varanasi Associate Professor1998 - 2006
-
National Metallurgical Laboratory CSIR Scientist1995 - 1998
-
National Metallurgical Laboratory CSIR Q.H.F Scientist1994 - 1995
-
McMaster University Faculty of Engineering Postdoctoral Fellow1990 - 1994
-
Indian Institute of Science Research Associate1990 - 1990
Education
-
Indian Institute of Science Ph.D.1985 - 1990
-
Indian Institute of Science M.E.1983 - 1985
-
Indian Institute of Engineering Science and Technology, Shibpur B.E.1979 - 1983
Projects & Funding
Projects & funding information is unavailable.
Publications (175)
- Recent progresses on high entropy alloy development using machine learning: A review Save
- Phase Evolution, Stability and Magnetic Behavior of Lightweight Al–Fe Aluminide‐Based Nanocomposites Processed by Mechanical Alloying, Cryomilling, and Annealing Save
- Preface: Festschrift in honor of Prof. Kamanio Chattopadhyay Save
- Structure and properties of Fe40Mn20Cr20Ti10Al10 high-entropy alloy fabricated by mechanical alloying and spark plasma sintering Save
- Microstructural Evolution and Mechanical Properties of Fe-Containing High and Medium Entropy Alloys: Recent Advances and Future Prospects Save
- Nanostructuring of AlSiCrMnFeNiCu High‐Entropy Alloy via Cryomilling: Exploring Structural, Magnetic, and Thermoelectric Properties Save
- Effect of Copper and Silicon on the Corrosion Properties of the AlCrFeMnNi High Entropy Alloy Save
- Phase transformation of AB5 to AB2 type phase on substitution of Mn with Zr in TiVCoNi (ZrxMn2-x) (x = 0, 0.3, 0.6, 1.0) high entropy alloys Save
- Superior catalytic action of high-entropy alloy on hydrogen sorption properties of MgH2 Save
- Notable hydrogen storage in Ti–Zr–V–Cr–Ni high entropy alloy Save