Filiaggi M J, Pilliar R M, Yakubovich R, Shapiro G
Centre for Biomaterials, University of Toronto, Ontario, Canada.
J Biomed Mater Res. 1996 Winter;33(4):225-38. doi: 10.1002/(SICI)1097-4636(199624)33:4<225::AID-JBM3>3.0.CO;2-R.
Thin ceramic films or coatings over metallic bone-interfacing implant surfaces have the potential to improve implant performance with respect to implant fixation, wear, or corrosion. In this study, zirconia (ZrO2) thin films formed on Ti-6AI-4V using a polymeric alkoxide-based solgel process were investigated. ZrO2 films of uniform thickness on the order of 100 nm were obtained by dip coating Ti-6AI-4V samples into a zirconium propoxide containing solution using a substrate withdrawal speed ranging from 2 to 8 cm/min and a sol of nominal viscosity approximately 6 cps. These films were essentially free of surface macrodefects but had random submicron "pinholes." X-ray diffraction studies suggested that the films were at least partially crystalline, with some "metastable" cubic and/or tetragonal phases after annealing for 1 h at 500 degrees C. The demonstrated reproducibility of this approach for producing good quality ZrO2 films on Ti-6AI-4V warrants further studies to optimize processing conditions for implant applications.
在金属与骨界面的植入物表面上形成的薄陶瓷膜或涂层,在植入物固定、磨损或腐蚀方面具有改善植入物性能的潜力。在本研究中,对采用基于聚合物醇盐的溶胶 - 凝胶工艺在Ti - 6Al - 4V上形成的氧化锆(ZrO₂)薄膜进行了研究。通过将Ti - 6Al - 4V样品浸入含有丙醇锆的溶液中进行浸涂,以2至8 cm/min的基底提拉速度和标称粘度约为6 cps的溶胶,获得了厚度约为100 nm的均匀ZrO₂薄膜。这些薄膜基本上没有表面宏观缺陷,但有随机的亚微米“针孔”。X射线衍射研究表明,这些薄膜至少部分是结晶的,在500℃退火1小时后含有一些“亚稳”立方相和/或四方相。这种在Ti - 6Al - 4V上制备高质量ZrO₂薄膜方法的可重复性,值得进一步研究以优化植入物应用的加工条件。