Harish C. Barshilia
National Aerospace Laboratories
284 Papers
921 Citations
Harish C. Barshilia is an academic researcher from National Aerospace Laboratories. The author has contributed to research in topics: Coating & Sputter deposition. The author has an hindex of 46, co-authored 236 publications. Previous affiliations of Harish C. Barshilia include Indian Institute of Technology Delhi & Indian Institutes of Technology.
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Papers
Nanoindentation and atomic force microscopy measurements on reactively sputtered TiN coatings
Harish C. Barshilia,K.S. Rajam +1 more
TL;DR: In this paper, the role of substrate bias and nitrogen partial pressure on the mechanical properties of TiN coatings was investigated by a nanoindentation technique, and the hardness of the coatings were found to increase with a decrease in nitrogen Partial Pressure.
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Characterization of anti-abrasion and anti-friction coatings on micromachining response in high speed micromilling of Ti-6Al-4V
TL;DR: In this paper, the effect of coatings on a micro-tool in high speed micromilling of Ti-6Al-4V was investigated at a rotational speed of 50,000 rpm and different depth of cut using uncoated, anti-abrasion coating of TiAlN and TiAlSiN and anti-friction coating of solid lubricant WS2.
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Effects of environmental and operational variability on the spectrally selective properties of W/WAlN/WAlON/Al2O3-based solar absorber coating
Atasi Dan,Bikramjit Basu,T. Echániz,I. González de Arrieta,Gabriel A. López,Harish C. Barshilia +5 more
TL;DR: In this paper, a W/WAlN/wAlON/Al2O3-based absorber coating with a high absorptance (0.958) and low emittance (82 ǫ°C) has been tested in humid and corrosive environments.
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A novel AMR based angle sensor with reduced harmonic errors for automotive applications
P.V. Sreevidya,P.V. Sreevidya,Umesh P. Borole,Umesh P. Borole,Reshma Kadam,Jakeer Khan,Harish C. Barshilia,Harish C. Barshilia,Prasanta Chowdhury,Prasanta Chowdhury +9 more
TL;DR: In this article, the authors proposed a novel anisotropic magnetoresistive sensor for measurement of angle in the interval 0° to 180°, which is comprised of two Wheatstone bridges arranged at 45° to each other.
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Evaluation of elasto-plastic properties of ITO film using combined nanoindentation and finite element approach
Ankur Kumar Gupta,Deeksha Porwal,Arjun Dey,N. Sridhara,Anoop Kumar Mukhopadhyay,Anand Kumar Sharma,Harish C. Barshilia +6 more
TL;DR: In this article, the combined nanoindentation experiments and finite element modeling were used to investigate the in-depth nanomechanical behavior of 1.25 µm indium tin oxide (ITO) film.
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