Formation of nano-sized grains in Ti-10Zr-5Nb-5Ta biomedical alloy processed by accumulative roll bonding (ARB)

I. Cincă, D. Raducanu, A. Nocivin, D. Gordin, V. Cojocaru
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引用次数: 1

Abstract

Formation of nano-sized grains in a new Ti-10Zr-5Nb-5Ta (wt.%) alloy without cytotoxic elements, through innovative accumulative roll bonding (ARB) process was the subject of investigation. The investigations consisted of structural and mechanical characterization of the alloy, processed by 4 ARB cycles at ambient temperatures. The micro-structural investigations were performed before and after each ARB cycle, using a SEM analyzing system, an X-ray diffractometer and a HRTEM analyzing system. The investigations of mechanical properties were based on tensile strength, Young’s modulus, tensile elongation and micro-hardness measurements. Nano-sized grains were successfully obtained after 4 ARB cycles. The analyzed samples initially showed an ultra fine grain (UFG) structure, transformed during ARB cycles to a nano-sized grain (NG) structure, suitable for improving the alloy’s bioactivity. Consequently, the ARB process increases the strength of the samples: the values of tensile strength drastically increase in the initial stage of the ARB process, after which they tend to become saturated; the Young’s modulus constantly increases; the tensile elongation greatly decreases after 2 ARB cycles; the micro-Vickers hardness values are constantly high during ARB process. K e y w o r d s: Ti-Zr-Nb-Ta alloy, grain refining, accumulative roll bonding, structure characterization, mechanical properties testing, nano-crystalline structure
累积轧制键合Ti-10Zr-5Nb-5Ta生物医用合金纳米晶粒的形成
研究了一种不含细胞毒性元素的新型Ti-10Zr-5Nb-5Ta (wt.%)合金,通过创新的累积滚焊(ARB)工艺形成纳米级晶粒。研究包括合金的结构和力学特性,在室温下进行4次ARB循环处理。在每个ARB循环前后,使用SEM分析系统、x射线衍射仪和HRTEM分析系统进行微观结构研究。力学性能的研究是基于抗拉强度,杨氏模量,拉伸伸长率和显微硬度测量。经过4次ARB循环,成功获得纳米级颗粒。分析的样品最初表现为超细晶粒(UFG)结构,在ARB循环过程中转变为纳米晶粒(NG)结构,适合提高合金的生物活性。因此,ARB工艺提高了试样的强度:抗拉强度值在ARB工艺的初始阶段急剧增加,之后趋于饱和;杨氏模量不断增大;经过2次ARB循环后,拉伸伸长率大幅降低;在ARB过程中,显微维氏硬度值一直很高。研究方向:Ti-Zr-Nb-Ta合金,晶粒细化,累积轧制结合,组织表征,力学性能测试,纳米晶结构
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