首页> 外文期刊>Acta biomaterialia >Electrochemical stability and corrosion resistance of Ti-Mo alloys for biomedical applications.
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Electrochemical stability and corrosion resistance of Ti-Mo alloys for biomedical applications.

机译:生物医学应用的Ti-Mo合金的电化学稳定性和耐腐蚀性。

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摘要

Electrochemical behavior of pure Ti and Ti-Mo alloys (6-20wt.% Mo) was investigated as a function of immersion time in electrolyte simulating physiological media. Open-circuit potential values indicated that all Ti-Mo alloys studied and pure Ti undergo spontaneous passivation due to spontaneously formed oxide film passivating the metallic surface, in the chloride-containing solution. It also indicated that the addition of Mo to pure Ti up to 15wt.% seems to improve the protection characteristics of its spontaneous oxides. Electrochemical impedance spectroscopy (EIS) studies showed high impedance values for all samples, increasing with immersion time, indicating an improvement in corrosion resistance of the spontaneous oxide film. The fit obtained suggests a single passive film present on the metals' surface, improving their resistance with immersion time, presenting the highest values to Ti-15Mo alloy. Potentiodynamic polarization showed a typical valve-metal behavior, with anodic formation of barrier-type oxide films, without pitting corrosion, even in chloride-containing solution. In all cases, the passive current values were quite small, and decrease after 360h of immersion. All these electrochemical results suggest that the Ti-15Mo alloy is a promising material for orthopedic devices, since electrochemical stability is directly associated with biocompatibility and is a necessary condition for applying a material as biomaterial.
机译:研究了纯Ti和Ti-Mo合金(6-20wt。%Mo)的电化学行为,它是模拟电解质在生理介质中浸入时间的函数。开路电势值表明,所有研究的Ti-Mo合金和纯Ti均由于在含氯化物的溶液中自发形成的使金属表面钝化的氧化膜而自发钝化。还表明在纯Ti中添加至多15wt。%的Mo似乎改善了其自发氧化物的保护特性。电化学阻抗谱(EIS)研究表明,所有样品的阻抗值都很高,并且随着浸入时间的增加而增加,表明自发氧化膜的耐腐蚀性得到了改善。所获得的拟合结果表明,在金属表面上存在单个钝化膜,随着浸入时间的延长而提高了其电阻,从而为Ti-15Mo合金带来了最高价值。电位动力学极化显示出典型的阀金属性能,即使在含氯化物的溶液中,阳极形成势垒型氧化膜,也没有点蚀腐蚀。在所有情况下,无源电流值都非常小,并且在浸入360h后会降低。所有这些电化学结果表明,Ti-15Mo合金是一种有前景的骨科器械材料,因为电化学稳定性直接与生物相容性相关,并且是将这种材料用作生物材料的必要条件。

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