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Corrosion, oxidation and high-temperature tribological properties of Ti–B–N coatings

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dc.contributor.author Asempah, I.
dc.contributor.author Yu, L.
dc.contributor.author Ju, H.
dc.contributor.author Yu, D.
dc.contributor.author Xu, J.
dc.contributor.author Miao, R.
dc.date.accessioned 2023-01-19T12:40:27Z
dc.date.available 2023-01-19T12:40:27Z
dc.date.issued 2019
dc.identifier.other 10.1080/02670844.2018.1553698
dc.identifier.uri https://www.tandfonline.com/doi/abs/10.1080/02670844.2018.1553698?journalCode=ysue20
dc.identifier.uri http://atuspace.atu.edu.gh:8080/handle/123456789/2490
dc.description.abstract Ti–B–N (nc-TiN/ a-BN) composite coatings with various boron contents were deposited by magnetron sputtering. nano-indentation, ball-on-disc dry sliding X-ray diffraction, and, Raman spectroscopy was used in evaluating the compositional, mechanical and tribological properties of these coatings. The corrosion behaviour of the Ti–B–N coatings was assessed by the electrochemical potentiodynamic polarisation method in a 3 mol-% of NaCl solution. The coefficient of friction (CoF) of the coatings initially increased to 1.0 when the test temperature was 200°C, but a further increase in temperature to 700°C resulted in a decrease in the CoF value to ∼0.18 which was due to the presence of Magneli-type TinO2n−1 oxides. In contrast to the CoF, there was a consistent increase in wear rate when the temperature was increased; the highest wear rate was obtained at 700°C. The B incorporated coatings exhibited improvement in both oxidation and corrosion resistance properties. en_US
dc.language.iso en_US en_US
dc.publisher Surface Engineering en_US
dc.relation.ispartofseries vol;35
dc.subject Ti–B–N coating en_US
dc.subject high-temperature tribological properties en_US
dc.subject oxidation resistance en_US
dc.subject corrosion resistance en_US
dc.title Corrosion, oxidation and high-temperature tribological properties of Ti–B–N coatings en_US
dc.type Article en_US


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