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Application of the Bons-Azuma method and determination of grain growth mechanism in rolled Ti-Zr alloys

机译:轧辊氮杂化方法的应用及籽粒生长机制的应用

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摘要

Zr-containing Ti alloys have widely been developed owing to the infinite solid solubility of Zr in Ti and its avirulence, leading respectively to high strength and good biocompatibility. It is known that the Zr addition gives rise to grain refinement when rolled Ti-Zr alloys are annealed; nevertheless, the governing mechanism by which Zr addition in Ti can reduce grain size is not fully understood. In this study, the grain growth behaviour of rolled Zr-free and Zr-containing (Ti-10Zr, wt.%) alloys is analysed using analytical transmission electron microscopy and the classical and Bons-Azuma methods by evaluating the grain growth exponent. Irrespective of the evaluation technique and Zr content, the grain growth exponent is found to be close to similar to 0.3, indicating the occurrence of normal grain growth in the Zr-free alloy and solute drag mechanism in the Zr-containing alloy. It is found that the grain size and grain growth rate are significantly reduced by Zr segregation near grain boundaries, resulting from the solute drag mechanism.
机译:由于Zr在Ti的无限固体溶解度和其无流动,分别以高强度和良好的生物相容性引起,因此含Zr的Ti合金已被广泛开发。众所周知,当轧制的Ti-Zr合金的退火时,Zr添加引起晶粒细化;然而,Ti中Zr添加的控制机制可以减少晶粒尺寸。在该研究中,使用分析透射电子显微镜和典型的和斜塔米法测定谷物生长指数,通过评估谷物生长指数来分析卷曲无RR和含Zr的(Ti-10Zr,WT.%)合金的晶粒生长行为。无论评价技术和Zr含量如何,发现晶粒生长指数接近0.3,表明在含Zr的合金中发生Zr离子合金的正常谷物生长和溶质卷机制。发现谷物边界附近晶粒偏析显着降低了晶粒尺寸和晶粒生长速率,由溶质阻力机制产生。

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