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用于生物医学应用的块状和多孔超弹性钛锆基合金的电化学和力学行为

The Electrochemical and Mechanical Behavior of Bulk and Porous Superelastic Ti‒Zr-Based Alloys for Biomedical Applications.

作者信息

Zhukova Yulia, Korobkova Anastasia, Dubinskiy Sergey, Pustov Yury, Konopatsky Anton, Podgorny Dmitry, Filonov Mikhail, Prokoshkin Sergey, Brailovski Vladimir

机构信息

Center of Nanomaterials and Nanotechnologies, National University of Science and Technology "MISIS", 4 Leninskiy prospekt, Moscow 119049, Russia.

Metal Forming Department, National University of Science and Technology "MISIS", 4 Leninskiy prospekt, Moscow 119049, Russia.

出版信息

Materials (Basel). 2019 Jul 27;12(15):2395. doi: 10.3390/ma12152395.

Abstract

Titanium alloys are well recognized as appropriate materials for biomedical implants. These devices are designed to operate in quite aggressive human body media, so it is important to study the corrosion and electrochemical behavior of the novel materials alongside the underlying chemical and structural features. In the present study, the prospective Ti‒Zr-based superelastic alloys (Ti-18Zr-14Nb, Ti-18Zr-15Nb, Ti-18Zr-13Nb-1Ta, atom %) were analyzed in terms of their phase composition, functional mechanical properties, the composition and structure of surface oxide films, and the corresponding corrosion and electrochemical behavior in Hanks' simulated biological solution. The electrochemical parameters of the Ti-18Zr-14Nb material in bulk and foam states were also compared. The results show a significant difference in the functional performance of the studied materials, with different composition and structure states. In particular, the positive effect of the thermomechanical treatment regime, leading to the formation of a favorable microstructure on the corrosion resistance, has been revealed. In general, the Ti-18Zr-15Nb alloy exhibits the optimum combination of functional characteristics in Hanks' solution, while the Ti-18Zr-13Nb-1Ta alloy shows the highest resistance to the corrosion environment. The Ti-18Zr-14Nb-based foam material exhibits slightly lower passivation kinetics as compared to its bulk equivalent.

摘要

钛合金被公认为是生物医学植入物的合适材料。这些装置设计用于在具有相当强腐蚀性的人体介质中运行,因此,研究这些新型材料的腐蚀和电化学行为以及其潜在的化学和结构特征非常重要。在本研究中,对预期的Ti-Zr基超弹性合金(Ti-18Zr-14Nb、Ti-18Zr-15Nb、Ti-18Zr-13Nb-1Ta,原子百分比)的相组成、功能力学性能、表面氧化膜的组成和结构以及在汉克斯模拟生物溶液中的相应腐蚀和电化学行为进行了分析。还比较了块状和泡沫状Ti-18Zr-14Nb材料的电化学参数。结果表明,所研究材料在不同的组成和结构状态下,其功能性能存在显著差异。特别是,已经揭示了热机械处理方式对形成有利于耐腐蚀性的微观结构的积极作用。总体而言,Ti-18Zr-15Nb合金在汉克斯溶液中表现出功能特性的最佳组合,而Ti-18Zr-13Nb-1Ta合金对腐蚀环境的耐受性最高。与块状的Ti-18Zr-14Nb材料相比,其泡沫材料表现出稍低的钝化动力学。

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