College of Science and Engineering, Flinders University, Clovelly Park, SA, 5042, Australia.
School of Mechanical Engineering, University of Adelaide, Adelaide, SA, 5000, Australia.
J Mech Behav Biomed Mater. 2019 Nov;99:78-85. doi: 10.1016/j.jmbbm.2019.07.014. Epub 2019 Jul 19.
New generation titanium alloys with low elastic moduli are promising materials for medical implants, particularly load-bearing orthopaedic implants. In this paper, the effect of niobium content on the microstructure and mechanical properties of new Ti alloys including Ti-23Nb-7Zr, Ti-28Nb-7Zr and Ti-33Nb-7Zr (wt%) is studied. Ti-23Nb-7Zr was found to mainly form α΄ and α″- phases, while both the Ti-28Nb-7Zr and Ti-33Nb-7Zr consisted of α″ and β-phases with an increased amount of β-phase in the alloy with 33 wt% of Nb. X-ray diffraction and microstructural analyses showed that the addition of Nb stabilises the β-phase in the solution treated condition with the depleting amount of α΄ and α″- phases. The hardness and Young's modulus values were highest in Ti-23Nb-7Zr which is attributed to the high fraction of α΄- phase in this alloy. The Young's moduli achieved for the three alloys through nanoindentation were 35.9, 29.1 and 29.0 GPa, respectively. The new alloys are encouraging candidates for orthopaedic implants due to their low elastic modulus which can help inhibit stress shielding, although biocompatibility tests (in-vitro and in-vivo) are suggested for future work.
新一代低弹性模量钛合金是有前途的医用植入物材料,特别是承重骨科植入物。本文研究了铌含量对 Ti-23Nb-7Zr、Ti-28Nb-7Zr 和 Ti-33Nb-7Zr(wt%)等新型 Ti 合金的微观结构和力学性能的影响。Ti-23Nb-7Zr 主要形成 α΄和 α″-相,而 Ti-28Nb-7Zr 和 Ti-33Nb-7Zr 均由 α″和 β 相组成,随着 Nb 含量增加到 33wt%,β 相的含量增加。X 射线衍射和微观结构分析表明,Nb 的添加稳定了固溶处理条件下的β相,使 α΄和 α″-相的含量减少。Ti-23Nb-7Zr 的硬度和杨氏模量值最高,这归因于该合金中高比例的 α΄-相。通过纳米压痕法获得的三种合金的杨氏模量分别为 35.9、29.1 和 29.0 GPa。由于这些新合金具有较低的弹性模量,可以帮助抑制应力屏蔽,因此它们是骨科植入物的有前途的候选材料,尽管建议未来进行体外和体内生物相容性测试。