Development of Low Elastic Modulus Titanium Alloys as Implant Biomaterials

Kaixuan Liu, L. Yin, Xu Lin, S. Liang
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引用次数: 4

Abstract

Biomaterials have always been the focus of material scientists and engineers. Titanium and its alloys have favorable properties, such as high strength, low density, good corrosion resistance, non-toxicity, low elastic modulus, biocompatibility, etc. Thus, Ti alloys have received much attention from scientists and engineers who work with biomaterials. Among these properties, the elastic modulus is a very important property for implant biomaterials because it avoids the “stress shielding” effect. In this study, we summarized low elastic modulus titanium alloys, which have great application potential for implant biomaterials. The major series of titanium alloys with low elastic modulus, including TiNb-based, TiMo-based, and TiZr-based series of titanium alloys, were discussed. The research status and the possible factors related to the low elastic modulus of these major titanium alloys were analyzed. Finally, the development prospects of the above series of low elastic modulus titanium alloys were compared, and the future direction of low elastic modulus Ti alloys as biomaterials was proposed.
低弹性模量钛合金作为植入生物材料的研究进展
生物材料一直是材料科学家和工程师关注的焦点。钛及其合金具有良好的性能,如高强度、低密度、良好的耐腐蚀性、无毒性、低弹性模量、生物相容性等。因此,钛合金受到了从事生物材料研究的科学家和工程师的广泛关注。在这些特性中,弹性模量是植入生物材料的一个非常重要的特性,因为它避免了“应力屏蔽”效应。在本研究中,我们总结了低弹性模量钛合金作为植入生物材料具有巨大应用潜力。讨论了低弹性模量钛合金的主要系列,包括TiNb基、TiMo基和TiZr基钛合金系列。分析了这些主要钛合金弹性模量低的研究现状及可能的影响因素。最后,对上述系列低弹性模量钛合金的发展前景进行了比较,并提出了低弹性模量Ti合金作为生物材料的未来方向。
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