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Mechanical Performance of Newly Developed Titanium and Zirconium System Alloys for Biomedical Applications

机译:新开发的钛和锆体系合金的机械性能进行生物医学应用

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A new β-type Ti alloy composed of non-toxic and allergy-free elements like Nb, Ta, and Zr, Ti-29Nb-13Ta-4.6Zr alloy (TNTZ) proposed by present authors, has been developed in order to achieve relatively low Young's modulus and excellent mechanical performance. On the other hand, Zr has been also paid attention as metallic biomaterial for the next generation because of good biocompatibility nearly equal to Ti or a few GPa smaller Young's modulus as compared to one. In this study, mechanical performances such as tensile properties and Young's modulus of TNTZ subjected to thermo-mechanical treatments or severe deformation, and the mechanical properties and biocompatibility of Zr-Nb system alloys were investigated in order to judge their potential for biomedical applications. Young's modulus of as-solutionized TNTZ, which is around 63 GPa, is pretty similar to that of as-cold-rolled TNTZ. The Young's moduli of hot-rolled Ti-6Al-4V ELI alloy are respective around 110 GPa. The Young's moduli of as-solutionized and as-cold-rolled TNTZ are around a half of those, and are twice as large as that of the cortical bone. The tensile strengths of TNTZ aged after solution treatment and those aged after cold rolling decrease with an increase in the aging temperature, although the elongation shows the reverse trend. The tensile strength of as-cold-rolled TNTZ is improved drastically through severe deformation such as high pressure torsion and shows more than 1000 MPa. Zr-XNb system alloy (X: 5-30mass%) shows the smallest value of Young's modulus (around 58 GPa) at Nb content of 20 mass%. In the case of implantation of the bars made of Zr-XNb system alloys into the lateral femoral condyles of Japanese white rabbits, the tendency of contact between the cancellous bone and the bar becomes remarkably at 24 weeks after the implantation according to increasing with Nb content.
机译:通过NB,TA和Zr等无毒和过敏元素组成的新β型Ti合金,目前作者提出的TI-29NB-13TA-4.6ZR合金(TNTZ),以实现相对低杨氏模量和出色的机械性能。另一方面,由于良好的生物相容性与一个相比,ZR也被关注为下一代的金属生物材料,因为良好的生物相容性几乎等于Ti或少量GPA较小的杨氏模量。在本研究中,研究了对热机械处理或严重变形的抗拉性特性和TNTZ的杨氏模量等机械性能,以及ZR-NB系统合金的机械性能和生物相容性,以判断它们对生物医学应用的潜力。杨氏模量为63 GPA大约63 GPA,非常类似于冷轧TNTZ。杨氏的热轧Ti-6Al-4V Eli合金的Moduli相对于110GPa左右。年轻的杨氏模态的溶液和冷轧TNTZ的含量约为一半,并且是皮质骨的两倍。溶液处理后TNTZ老化的拉伸强度和冷轧后老化的那些随着衰老温度的增加而降低,尽管伸长率显示了逆向趋势。通过诸如高压扭转的严重变形,如高压扭转的严重变形并显示超过1000MPa的抗拉强度急剧改善。 ZR-XNB系统合金(X:5-30mass%)显示杨氏模量(约58GPa)的最小值,Nb含量为20质量%。在将由Zr-XNB系统合金制成的杆植入日本白兔的侧向股骨髁上的情况下,根据Nb含量的增加,在植入后24周,松质骨和棒之间接触的趋势显着。

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