等离子体聚合四氟乙烯处理NiTi形状记忆合金。物理化学和电化学表征。

Medical progress through technology Pub Date : 1996-01-01
L H Yahia, S Lombardi, D Piron, J E Klemberg-Sapieha, M R Wertheimer
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引用次数: 0

摘要

对镍钛合金试样进行等离子体清洗,然后在射频反应器中涂覆一层等离子体聚合四氟乙烯薄膜。在汉克的生理溶液中进行了电位动力学试验,研究了这些薄膜的防腐蚀作用。用x射线光电子能谱(XPS)表征了决定生物相容性的表面性质。结果表明:未经处理的NiTi表面主要由氧、碳、氧化钛(TiO2)组成,并含有微量的氧化镍(NiO和Ni2O3)和金属镍。未经处理的NiTi在模拟人体介质中的被动性不稳定。等离子体处理后,镍钛表面仅含碳和氟。等离子体聚合薄膜稳定了镍钛的钝化性能,提高了其点蚀电位。这种处理可以很好地防止镍钛合金中镍的溶解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NiTi shape memory alloys treated by plasma-polymerized tetrafluoroethylene. A physicochemical and electrochemical characterization.

NiTi alloy specimens were plasma cleaned and then coated with a thin film of plasma-polymerized tetrafluoroethylene (TFE) in a Radio-Frequency reactor. The corrosion protection provided by these films was studied by potentiodynamic tests performed in Hank's physiological solution. Surface properties which determine biocompatibility were characterized by X-ray photoelectron spectroscopy (XPS). The results showed that the surface of untreated NiTi was mostly composed by oxygen, carbon, titanium oxide (TiO2) with traces of nickel oxides (NiO and Ni2O3) and metallic Ni. The passivity of untreated NiTi was found to be unstable in the simulated human body media. After plasma treatment, the NiTi surface contained only carbon and fluor. The plasma-polymerized thin film was found to stabilize the NiTi passivity and to increase its pitting potential. This treatment provides a good protection against dissolution of nickel from NiTi alloys.

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