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AuthorSarraf, M.
AuthorZalnezhad, E.
AuthorBushroa, A.R.
AuthorHamouda, A.M.S.
AuthorRafieerad, A.R.
AuthorNasiri-Tabrizi, B.
Available date2016-01-18T11:57:15Z
Publication Date2015-07
Publication NameCeramics International
Identifierhttp://dx.doi.org/10.1016/j.ceramint.2015.02.136
Citation"Effect of microstructural evolution on wettability and tribological behavior of TiO2 nanotubular arrays coated on Ti–6Al–4V", Sarraf, M.; Zalnezhad, E.; Bushroa, A.R.; Hamouda, A.M.S.; Rafieerad, A.R., et al. (2015) Ceramics International vol. 41 (6) p. 7952-7962
ISSN0272-8842
URIhttp://hdl.handle.net/10576/4100
AbstractSelf-organized TiO2 nanotubular arrays were fabricated by electrochemical anodization of Ti–6Al–4V plates in an NH4F/H3PO4 electrolyte. The effect of microstructural evolutions on the wettability and tribological behavior of the TiO2 nanotubes was investigated. Based on the XRD profiles of the fabricated material, the characteristic TiO2 peaks were not recognized after anodization; however, highly crystalline TiO2 (anatase and rutile) was formed due to crystallization during annealing at 500 C for 1.5 h. The nanotube arrays were converted entirely to rutile at 700 C. From a microstructure point of view, a highly ordered nanotube structure was achieved when the specimen was annealed at 500 C, with a length of 0.72 μm and a pore diameter of 72 nm. Further increasing the annealing temperature to 700 C resulted in the complete collapse of the tubular structure. The results indicate that the improved wettability of the anodized specimens was due to the combination of the effects of both the surface oxide layer and the increased surface roughness achieved after anodization. Moreover, the wear resistance and wettability of the sample annealed 500 C were improved due to the high hardness (435 HV) and low coefficient of friction (0.133–168) of the highly crystalline structure of the TiO2 nanotubes.
SponsorMinistry of Higher Education, Malaysia with the high impact research grant no. of M.C/HIR/MOHE/ENG/27 and partly sponsored by UM.TNC/IPPP/UPGP/638/PPP/PG121-2012B and UM.TNC2/RC/AET/261/1/1/RP017-2012C
Languageen
PublisherElsevier Ltd.
SubjectTi–6Al–4V
TiO2 nanotube
Tribological behavior
Wettability
Anodization
TitleEffect of microstructural evolution on wettability and tribological behavior of TiO2 nanotubular arrays coated on Ti–6Al–4V
TypeArticle
Pagination7952-7962
Issue Number6
Volume Number41


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