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首页> 外文期刊>Journal of Materials Science >Anodization growth of TiO2 nanotubes on Ti-35Nb-7Zr-5Ta alloy: effects of anodization time, strain hardening, and crystallographic texture
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Anodization growth of TiO2 nanotubes on Ti-35Nb-7Zr-5Ta alloy: effects of anodization time, strain hardening, and crystallographic texture

机译:TiO2纳米管的阳极氧化生长Ti-35NB-7ZR-5TA合金:阳极氧化时间,应变硬化和晶体纹理的影响

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摘要

Titanium and its alloys are the most suitable metallic materials available for the fabrication of medical implants. Their biocompatibility can be improved by the growth of TiO2 nanotubes on their surface by a simple anodization process. This work involved an investigation into the anodization behavior of Ti-35Nb-7Zr-5Ta (TNZT) alloy, focusing on the effect of processing conditions (anodization time and type of electrolyte), previous strain hardening, and crystallographic texture of the substrate. Studies about the growth of TiO2 nanotubes on beta-type titanium alloys, as the TNZT alloy, are rare in the literature. The TNZT alloy proved to be an excellent substrate for the growth of TiO2 nanotubes, resulting in threefold longer nanotubes than those obtained on a commercially pure (CP) Ti substrate. Moreover, TiO2 nanowires grew after 6 h of anodization in an organic electrolyte, which could not be achieved using the CP-Ti substrate. Samples with different crystallographic textures displayed similar nanotube morphology and only slight differences in grain length, indicating that grain orientation played only a minor role in the growth kinetics. Lastly, the crystallization of nanotubes at 450 degrees C did not alter their morphology, but caused complete detachment of the TiO2 nanotubes at 700 degrees C.
机译:钛及其合金是制造医疗植入物的最合适的金属材料。通过简单的阳极氧化过程通过TiO2纳米管的生长可以改善它们的生物相容性。这项工作涉及研究TI-35NB-7ZR-5TA(TNZT)合金的阳极氧化行为的调查,专注于加工条件(阳极氧化时间和电解质类型)的效果,先前应变硬化和基材的晶体纹理。关于β型钛合金的TiO2纳米管生长的研究,作为TNZT合金,在文献中是罕见的。 TNZT合金被证明是用于TiO2纳米管的生长的优异基材,导致三个较长的纳米管比在商业上纯(CP)Ti衬底上获得的纳米管。此外,TiO2纳米线在有机电解质中阳极氧化的6小时后越来越长,这不能使用CP-Ti衬底实现。具有不同晶体纹理的样品显示出类似的纳米管形态,并且只有粒度的微小差异,表明晶粒取向仅在生长动力学中发挥了次要作用。最后,在450℃下纳米管的结晶未改变它们的形态,但在700℃下引起TiO2纳米管的完全脱离。

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