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用于生物医学应用的 Ti-15Mo-Nb 系合金的制备与表征。

Preparation and characterization of alloys of the Ti-15Mo-Nb system for biomedical applications.

机构信息

IFSP-Instituto Federal de São Paulo - Câmpus Avançado Tupã, 17.607-220, Tupã, SP, Brazil.

UNESP-Univ Estadual Paulista, Laboratório de Anelasticidade e Biomateriais, 17.033-360, Bauru, SP, Brazil.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Feb;106(2):639-648. doi: 10.1002/jbm.b.33868. Epub 2017 Mar 9.

DOI:10.1002/jbm.b.33868
PMID:28276196
Abstract

In the development of new metallic biomaterials, the Ti-15Mo alloy has great prominence because of its excellent corrosion resistance and good combination of mechanical properties. In this study, the element niobium was added to the Ti-15Mo alloy, forming the Ti-15Mo-Nb system for the purpose of improving their properties and promoting its application as a biomaterial. These alloys are very promising to use as biomedical implants, because they integrate a new class of titanium alloys without the presence of aluminum and vanadium, which may cause cytotoxic effects. The alloys were produced by arc-melting and characterized by density, X-ray diffraction, scanning electron microscopy, microhardness, elastic modulus, corrosion, and cytotoxicity assays. The developed alloys have β phase predominance (with bcc crystalline structure). The addition of niobium decreases the microhardness and elastic modulus, with values around 80 GPa, which is well below that of the metallic alloys used commercially for this type of application. Very low passive current densities were found for all alloys studied showing that the passive film on these alloys is highly protective. In vitro cytotoxicity tests revealed that the introduction of niobium did not cause cytotoxic effects in the studied alloys. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 639-648, 2018.

摘要

在新型金属生物材料的开发中,Ti-15Mo 合金因其优异的耐腐蚀性和良好的机械性能组合而具有很大的突出性。在这项研究中,将铌元素添加到 Ti-15Mo 合金中,形成 Ti-15Mo-Nb 体系,目的是改善其性能并促进其作为生物材料的应用。这些合金非常有希望用作生物医学植入物,因为它们集成了一类没有铝和钒的新型钛合金,而铝和钒可能会引起细胞毒性作用。这些合金是通过电弧熔炼生产的,并通过密度、X 射线衍射、扫描电子显微镜、显微硬度、弹性模量、腐蚀和细胞毒性测试进行了表征。所开发的合金具有β相优势(具有 bcc 晶体结构)。添加铌会降低微硬度和弹性模量,其值约为 80GPa,远低于用于此类应用的商业金属合金。所有研究的合金都发现非常低的被动电流密度,表明这些合金上的钝化膜具有高度的保护性。体外细胞毒性测试表明,引入铌不会导致研究合金产生细胞毒性作用。©2017 年 Wiley 期刊,生物医学材料研究杂志 B:应用生物材料,106B:639-648,2018 年。

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