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生物医学 Ti 基形状记忆合金的新视角。

A new look at biomedical Ti-based shape memory alloys.

机构信息

Faculty of Engineering and Industrial Science, Swinburne University of Technology, Hawthorn, Victoria 3122, Australia.

出版信息

Acta Biomater. 2012 May;8(5):1661-9. doi: 10.1016/j.actbio.2012.01.018. Epub 2012 Jan 28.

Abstract

Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that gives rise to a wide variety of applications across a broad range of fields. One of the most successful roles is in the construction of novel medical implants. Unfortunately, concerns have been raised about the biocompatibility of the most popular SMA, nitinol (NiTi), due to the known toxic, allergenic and carcinogenic properties of nickel. Given the unique capabilities of SMAs, it is apparent that there is a need for a new class of alloys - alloys that exhibit the full range of shape memory abilities yet are also free of any undesirable side effects. This article reviews the literature surrounding SMAs and identifies the metals Ti, Au, Sn, Ta, Nb, Ru and Zr as candidates for the production of thoroughly biocompatible SMAs. Hf and Re are also promising, though more research is necessary before a definitive statement can be made. Further, the Ti-(Ta,Nb)-(Zr,Hf) alloy system is particularly suited for orthopaedic implants due to a reduced Young's modulus. However, concerns over this system's shape memory properties exist, and should be taken into consideration. Alternate alloy systems that demonstrate higher bulk moduli may still be considered, however, if they are formed into a porous structure. Due to the nature of the alloying components, blended elemental powder metallurgy is recommended for the manufacture of these alloys, particularly due to the ease with which it may be adapted to the formation of porous alloys.

摘要

形状记忆合金(SMA)是一种具有明显热机械耦合特性的材料,这种特性使其在广泛的领域中具有广泛的应用。其中一个最成功的应用是新型医疗植入物的制造。不幸的是,由于镍的已知毒性、致敏性和致癌性,最受欢迎的 SMA 材料镍钛诺(NiTi)的生物相容性受到了关注。鉴于 SMA 的独特性能,显然需要开发一类新的合金——既能展现出完整的形状记忆能力,又没有任何不良副作用的合金。本文综述了 SMA 的相关文献,并确定 Ti、Au、Sn、Ta、Nb、Ru 和 Zr 等金属是生产完全生物相容 SMA 的候选材料。Hf 和 Re 也很有前途,但在做出明确的结论之前,还需要更多的研究。此外,Ti-(Ta,Nb)-(Zr,Hf)合金系统由于杨氏模量降低,特别适合用于骨科植入物。然而,人们对该系统的形状记忆性能存在担忧,需要加以考虑。如果将其他具有更高体弹性模量的合金系统制成多孔结构,也可以考虑使用,但需要注意这一点。由于合金成分的性质,建议使用混合元素粉末冶金来制造这些合金,尤其是因为这种方法非常容易适应多孔合金的制造。

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