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首页> 外文期刊>Materials science & engineering >First principles theoretical investigations of low Young's modulus beta Ti-Nb and Ti-Nb-Zr alloys compositions for biomedical applications
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First principles theoretical investigations of low Young's modulus beta Ti-Nb and Ti-Nb-Zr alloys compositions for biomedical applications

机译:生物医学应用低杨氏模量βTi-Nb和Ti-Nb-Zr合金成分的第一原理理论研究

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摘要

High alloyed β-phase stabilized titanium alloys are known to provide comparable Young's modulus as that to the human bones (~30 GPa) but is marred by its high density. In the present study the low titanium alloyed compositions of binary Ti-Nb and ternary Ti-Nb-Zr alloy systems, having stable β-phase with low Young's modulus are identified using first principles density functional framework. The theoretical results suggest that the addition of Nb in Ti and Zr in Ti-Nb increases the stability of the β-phase. The β-phase in binary Ti-Nb alloys is found to be fully stabilized from 22 at.% of Nb onwards. The calculated Young's moduli of binary β-Ti-Nb alloy system are found to be lower than that of pure titanium (116 GPa). For Ti-25(at.%)Nb composition the calculated Young's modulus comes out to be ~80 GPa. In ternary Ti-Nb-Zr alloy system, the Young's modulus of Ti-25(at.%)Nb-6.25(at.%)Zr composition is calculated to be ~50 GPa. Furthermore, the directional Young's moduli of these two selected binary (Ti-25(at.%)Nb) and ternary alloy (Ti-25(at.%)Nb-6.25(at%)Zr) compositions are found to be nearly isotropic in all crystallographic directions.
机译:高合金化的β相稳定钛合金可提供与人体骨骼相当的杨氏模量(约30 GPa),但因其高密度而受损。在本研究中,使用第一原理密度泛函框架确定了具有稳定的β相和低杨氏模量的二元Ti-Nb和三元Ti-Nb-Zr合金体系的低钛合金成分。理论结果表明,在Ti中添加Nb和在Ti-Nb中添加Zr可提高β相的稳定性。发现二元Ti-Nb合金中的β相从Nb的22 at。%开始已完全稳定。发现二元β-Ti-Nb合金系统的杨氏模量低于纯钛(116 GPa)。对于Ti-25(at。%)Nb组成,计算出的杨氏模量约为80 GPa。在三元Ti-Nb-Zr合金体系中,Ti-25(at。%)Nb-6.25(at。%)Zr组成的杨氏模量计算为〜50 GPa。此外,发现这两种选定的二元(Ti-25(at。%)Nb)和三元合金(Ti-25(at。%)Nb-6.25(at%)Zr)的方向杨氏模量几乎各向同性在所有晶体学方向上。

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