Personal profile

Research Interests

Laser shock peening, Thermal spray coating, Laser cladding, Laser surface melting, Electron microscopy


Dr Subhasisa Nath joined as a Research Associate at the Faculty Research Centre for Manufacturing and Materials Engineering at the Coventry University in March 2017. Dr Nath has been associated in the field of laser material processing and plasma material processing for over 7 years. He obtained his PhD in multilayer and functionally graded thermal barrier coatings from Indian Institute of Technology Kharagpur, India in 2015. He then joined as a Researcher at the University of Chester, UK and worked there over a year. He has experience in tribology and corrosion testing of coatings. His interest lies in extracting material information at atomic level using X-ray diffraction and electron microscopy. His current research is focused on severe plastic deformation of materials using laser shock peening.

Education / Academic qualification

Surface Engineering, Doctorate, Indian Institute of Technology Kharagpur

31 Dec 200931 Dec 2015

Fingerprint Fingerprint is based on mining the text of the persons scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

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Research Output 2010 2017

Automotive engineering
Aerospace engineering
Shot peening
Mechanical engineering
Silicon carbide
Shot peening
Residual stresses
Shot peening
Mechanical properties
Titanium alloys
Wear resistance

Surface property modifications of silicon carbide ceramic following laser shock peening

Shukla, P., Nath, S., Wang, G., Shen, X. & Lawrence, J. Aug 2017 In : Journal of the European Ceramic Society. 37, 9, p. 3027-3038 12 p.

Research output: Contribution to journalArticle

silicon carbides
surface treatment

Thermophysical behavior of thermal sprayed yttria stabilized zirconia based composite coatings

Nath, S., Manna, I., Jha, A. K., Sharma, S. C., Pratihar, S. K. & Dutta Majumdar, J. 28 May 2017 In : Ceramics International. 43, 14, p. 11204–11217 55 p.

Research output: Contribution to journalArticle

composite materials
yttria-stabilized zirconia
thermal conductivity
thermal expansion