Publication Type : Conference Proceedings
Publisher : Materials Today: Proceedings,
Source : Materials Today: Proceedings, Volume 5, p.8889-8898 (2018)
Url : https://www.sciencedirect.com/science/article/pii/S2214785317333242
Keywords : Electrochemical studies, Nyquist plot, Polarization curve, Salt spray test, Spray coating technique
Campus : Coimbatore
School : School of Engineering
Department : Sciences
Year : 2018
Abstract : The titanium dioxide and nickel oxide nanoparticles are synthesized by chemical precipitation method. The as prepared nanoparticles of titanium dioxide and nickel oxide are coated on steel substrate (304L SS) using spray coating technique. The corrosion resistance of 304L SS substrates spray coated with nanostructured titanium dioxide (TiO2) and Nickel oxide (NiO) in 3.5% NaCl is studied from Tafel polarization curve and electrochemical impedance spectra. The polarization curves of coated 304L SS substrates showed positive shift in corrosion potential with respect to that of bare. The Nyquist plot of the coated films confirmed that the coatings have improved the corrosion resistance of 304L SS substrate. The variation of impedance with frequency of the coated 304L SS before and after salt spray test shows that NiO and TiO2 films are quite stable in salt environment. There is no much change in surface morphology and surface roughness of films after corrosion test and this further confirm the film stability in corrosive environment. The absence of crack in AFM images of films subjected to load shows that the films are quite tough. The non-existence of rust in coated substrate exposed to salt environment (5% NaCl at 30°C) for 390 hrs confirms that the films can act as anticorrosive coating for 304L SS substrate in adverse salt environment
Cite this Research Publication : V. P. Muhamed Shajudheen, K. Rani, A., V. Senthil Kumar, Dr. Umamaheswari A., Sivakumar, M., and S. Kumar, S., “Comparison of Anticorrosion Studies of Titanium Dioxide andNickel Oxide Thin Films Fabricated by Spray Coating Technique”, Materials Today: Proceedings, vol. 5. pp. 8889-8898, 2018.