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Dual Electrochemical Treatments to Improve Properties of Ti6Al4V Alloy

机译:双重电化学处理可改善Ti6Al4V合金的性能

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摘要

Surface treatments are considered as a good alternative to increase biocompatibility and the lifetime of Ti-based alloys used for implants in the human body. The present research reports the comparison of bare and modified Ti6Al4V substrates on hydrophilicity and corrosion resistance properties in body fluid environment at 37 °C. Several surface treatments were conducted separately to obtain either a porous oxide layer using nanostructuration (N) in ethylene glycol containing fluoride solution, or bulk oxide thin films through heat treatment at 450 °C for 3 h (HT), or electrochemical oxidation at 1 V for 3 h (EO), as well as combined treatments (N-HT and N-EO). In-situ X-ray diffraction and ex-situ transmission electron microscopy have shown that heat treatment gave first rise to the formation of a 30 nm thick amorphous layer which crystallized in rutile around 620 °C. Electrochemical oxidations gave rise to a 10 nm thick amorphous film on the top of the surface (EO) or below the amorphous nanotube layer (N-EO). Dual treated samples presented similar results with a more stable behavior for N-EO. Finally, for both corrosion and hydrophilicity points of view, the new combined treatment to get a total amorphous N-EO sample seems to be the best and even better than the partially crystallized N-HT sample.
机译:表面处理被认为是增加生物相容性和用于人体植入物的Ti基合金寿命的良好选择。本研究报告了在37°C的体液环境中,裸露的Ti6Al4V和改性的Ti6Al4V衬底在亲水性和耐腐蚀性方面的比较。分别进行了几种表面处理,以在包含氟化物的乙二醇溶液中使用纳米结构(N)获得多孔氧化物层,或者通过在450°C下热处理3 h​​(HT)或在1 V下进行电化学氧化获得块状氧化物薄膜持续3小时(EO),以及联合处理(N-HT和N-EO)。原位X射线衍射和原位透射电子显微镜显示,热处理首先导致形成30 nm厚的非晶层,该非晶层在620°C附近以金红石形式结晶。电化学氧化在表面(EO)的顶部或非晶纳米管层(N-EO)的下方产生了10 nm厚的非晶膜。经双重处理的样品呈现出相似的结果,但对N-EO的行为更为稳定。最后,从腐蚀和亲水性的角度来看,获得总非晶态N-EO样​​品的新组合处理似乎是最好的,甚至比部分结晶的N-HT样品更好。

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