Characterization of thermal and anodic oxide layers on β- and on near-β-titanium alloys for biomedical application

Author:

Velten D.1,Schenk-Meuser K.2,Biehl V.1,Duschner H.2,Breme J.1

Affiliation:

1. Lehrstuhl für Metallische Werkstoffe, Universität des Saarlandes , Saarbrücken Germany

2. Angewandte Struktur- und Mikroanalytik, Fachbereich Medizin, Universität Mainz , Mainz Germany

Abstract

Abstract β- and near-β-Ti alloys for biomedical applications show a favourable mix of mechanical, biological and biocompatible properties. In this study, oxide layers on Ti13Nb13Zr, Ti15Mo5Zr3Al, Ti30Nb and Ti30Ta were prepared by thermal and anodic oxidation, in order to adjust constant, reproducible and well-defined surface properties. The thickness, the phase composition and the element composition of the oxide layers were determined. The corrosion properties were investigated by current density –potential curves under physiological conditions. Depending on the oxidation parameters, film thicknesses in the range 10 – 250 nm can be prepared. The thermal oxide layers consist predominantly of TiO2 in rutile structure while the anodized samples show a mixture of anatase and amorphous TiO2. In addition, certain amounts of mixed oxides of titanium and alloying elements such as TiZrO4 or TiNb2O7 are found in the oxide films. The corrosion resistance of the oxidized samples is increased as compared with the polished samples whose current densities in the range of passivity are comparable to that of Ti6Al4V.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

Reference59 articles.

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