| Department | Metallurgical & Materials Engineering | 
| Designation | Assistant Professor | 
| Qualification | B.Tech. (Metallurgical & Materials Engineering-NITD), M.Tech. (Materials Science and Engineering-IITK) | 
| Research Interests | 3G Advanced High Strength Steel (AHSS) for Automotive industries, Brazing of metals (e.g: Ti and its alloys), Bulkultrafine nanostructured materials produced by ball milling and severe plastic deformation processes, structure , Aging of alloys | 
| 
										 sureshchand@pec.edu.in  ( Official )
					 saropya@gmail.com ( Personal )  | 
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| Phone Number | 
										  0172-2753960  ( Office )
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| Sr. No. | Title | 
|---|---|
| 1 | Suresh Chand, Navjeevan Kumar Rana, Khushboo Rakha, Shahriar Reza, Uma Batra, Synthesis and characterization of CoCrFeNi1.75-xTi0.25+x high entropy alloy, Materials Today: Proceedings,Volume 62, Part 14, 2022,7540-7546, https://doi.org/10.1016/j.matpr.2022.04.344.  | 
              
| 2 | Suresh Chand, Shivam Bhardwaj, Khushboo Rakha, Ravi Mohan Prasad, Uma. Batra, Development and characterization of Al-Si-Cu-Zn-Sn brazing filler alloy using vacuum arc furnace, Materials Today: Proceedings, Volume 62, Part 14,2022,7547-7553 https://doi.org/10.1016/j.matpr.2022.04.478.  | 
              
| 3 | Suresh Chand, Anurag Gaur, Khushboo Rakha, Uma Batra, Synthesis and characterization of (Al-20Cu-8Si-3Sn) low temperature brazing alloy via powder metallurgy route, Materials Today: Proceedings, Volume 62, Part 14, 2022, 7574-7580, https://doi.org/10.1016/j.matpr.2022.04.741.  | 
              
| 4 | S. Chand,, K. Rakha, R.M. Prasad, (2024). Thermodynamic Study of Novel Fe-Mn-Si Alloys. In: Tiwari, A., Ray, P.K., Sardana, N., Kumar, R. (eds) Proceedings of the International Conference on Fundamental and Industrial Research on Materials. iConFIRM 2023. Springer Proceedings in Physics, vol 308. Springer, Singapore. https://doi.org/10.1007/978-981-97-4557-9_9 | 
| 5 | M. Kumar, R. Kant, S. Chand, U. Prakash, S. Sehgal, K.K. Saxena, J.P. Davim, C. Prakash, High-Temperature Corrosion Performance of FeAl-Based Alloys Containing Carbon in Molten Salt, Metals. 11 (2021) 2040, SCIE |