加成法制造的 Ti6Al-4V 植入体上掺碘二氧化钛纳米管结构的合成、表征和界面粘附性 Synthese, Charakterisierung und Grenzflächenhaftung von mit Jod dotierten Titanoxid-Nanoröhrchen auf einem additiv hergestellten TiAl6V4-Implantat

IF 1.2 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
P. Taweekitikul, A. A. Aliyu, D. Decha-Umphai, S. Tantavisut, J. Khamwannah, C. Puncreobutr, B. Lohwongwatana
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引用次数: 0

摘要

本研究旨在合成、表征和评估钛纳米管(二氧化钛纳米管)和碘掺杂钛纳米管(i-二氧化钛纳米管)结构在增材制造的ti - 6al - 4v (Ti64)植入表面的粘附强度。通过电化学阳极氧化两步合成了二氧化钛纳米管和钛纳米管,其中二氧化钛纳米管是通过传统的阳极氧化方法制备的,然后用碘化钾溶液代替乙二醇电解质对其进行修饰。表征结果表明,在钛纳米管和钛纳米管表面形成α-Ti、β-Ti和碘化钛(TiI2)相。二氧化钛纳米管的形貌表现为直径一致、分布均匀、排列有序、排列致密的纳米管结构。二氧化钛纳米管内表面形成水溶性富氟[TiF6]2配合物,且纳米管的侧壁不断蚀刻,导致二氧化钛纳米管界面与钛基表面的附着力较差。在钛纳米管上掺杂碘可以减少[TiF6]2配合物的积累,减少钛纳米管的侧壁腐蚀。这有利于钛纳米管与Ti64植入体表面之间的粘附和界面机械锚定。由于在钛纳米管/钛纳米管的表面和界面处形成了一层坚硬的碘化钛膜,使得钛纳米管的硬度和粘附强度提高了50%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Synthesis, characterization, and interfacial adhesion of titania iodine-doped nanotubes architectures on additively manufactured Ti-6Al-4V implant
      Synthese, Charakterisierung und Grenzflächenhaftung von mit Jod dotierten Titanoxid-Nanoröhrchen auf einem additiv hergestellten TiAl6V4-Implantat

Synthesis, characterization, and interfacial adhesion of titania iodine-doped nanotubes architectures on additively manufactured Ti-6Al-4V implant Synthese, Charakterisierung und Grenzflächenhaftung von mit Jod dotierten Titanoxid-Nanoröhrchen auf einem additiv hergestellten TiAl6V4-Implantat

This study aimed to synthesize, characterize, and evaluate the adhesion strength of titania nanotubes (titania nanotubes) and iodine-doped titania nanotubes (I-titania nanotubes) architectures on the additively manufactured Ti-6Al-4 V (Ti64) implant surface. The titania nanotubes and I-titania nanotubes were synthesized through two stages of electrochemical anodization, whereby titania nanotubes are anodically fabricated through a conventional approach and then modified by replacing the ethylene glycol electrolyte with potassium iodide solution. The characterization results revealed the formation of α-Ti, β-Ti, and titanium iodide (TiI2) phases on the titania nanotubes and I-titania nanotubes surfaces. The morphology of titania nanotubes exhibits a consistent diameter, evenly distributed, well-ordered array, and densely packed nanotubular structures. Formation of a water-soluble fluoride-rich [TiF6]2 complexes in the inner titania nanotubes surface and incessant nanotube′s sidewall etching resulted in poor interfacial titania nanotubes adhesion to the titanium-substrate surface. Iodine doping on the titania nanotubes is believed to reduce the [TiF6]2 complexes accumulation and the titania nanotubes sidewall etching. This facilitates the adhesion and interfacial mechanical anchorage between the titania nanotubes and the surface of the Ti64 implant. The hardness and adhesion strength of the titania nanotubes increased by more than 50 %, due to the formation of a hard titanium iodide film at the titania nanotubes/I-titania nanotubes surfaces and interfaces.

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来源期刊
Materialwissenschaft und Werkstofftechnik
Materialwissenschaft und Werkstofftechnik 工程技术-材料科学:综合
CiteScore
2.10
自引率
9.10%
发文量
154
审稿时长
4-8 weeks
期刊介绍: Materialwissenschaft und Werkstofftechnik provides fundamental and practical information for those concerned with materials development, manufacture, and testing. Both technical and economic aspects are taken into consideration in order to facilitate choice of the material that best suits the purpose at hand. Review articles summarize new developments and offer fresh insight into the various aspects of the discipline. Recent results regarding material selection, use and testing are described in original articles, which also deal with failure treatment and investigation. Abstracts of new publications from other journals as well as lectures presented at meetings and reports about forthcoming events round off the journal.
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