An Enhanced Three-Step Oxidation Process to Improve Oxide Adhesion on Zirconium Alloys

Author:

Reif M.,Scherm F.,Galetz M. C.,Glatzel U.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Inorganic Chemistry

Reference14 articles.

1. J. A. Davidson, C. M. Asgian, A. K. Mishra and P. Kovacs, Zirconia (ZrO2)-coated zirconium-2.5Nb alloy for prosthetic knee bearing applications. in Bioceramics, vol. 5, eds. T. Yamamuro, T. Kokubo and T. Nakamura (KobunshiKankokai, Kyoto, 1992), pp. 389–401.

2. G. Hunter, J. Dickinson, B. Herb and R. Graham, Creation of oxidized zirconium orthopaedic implants. in Titanium, niobium, zirconium, and tantalum for medical and surgical applications, ASTM STP 1471, eds. L. D. Zardiackas, M. J. Kraay and H. L. Freese (American Society for testing and Materials, West Conshohocken, 2006), pp. 16–29.

3. M. Long, L. Riester and G. Hunter, Nano-hardness measurements of oxidized Zr-2.5Nb and various orthopaedic materials. Transactions of the Society for Biomaterials 21, 1998 (528).

4. L. W. Hobbs, V. Benezera Rosen, S. P. Magnin, M. Treska and G. Hunter, Oxidation microstructures and interfaces in the oxidized zirconium knee. International Journal of Applied Ceramic Technology 2, (3), 221–246 (2005).

5. M. C. Galetz, E. W. Fleischmann, C. H. Konrad, A. Schuetz and U. Glatzel, Abrasion resistance of oxidized zirconium in comparison with CoCrMoand titanium nitride coatings for artificial knee joints. Journal of Biomedical Materials Research B 93, 244–251 (2010).

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