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新型纳米结构 Ti-Zr-Ta-Nb 合金的力学和耐腐蚀性。

Mechanical and corrosion resistance of a new nanostructured Ti-Zr-Ta-Nb alloy.

机构信息

Politehnica University of Bucharest, Spl Independentei 313, 060042 Bucharest, Romania.

出版信息

J Mech Behav Biomed Mater. 2011 Oct;4(7):1421-30. doi: 10.1016/j.jmbbm.2011.05.012. Epub 2011 May 13.

Abstract

In this work, a multi-elementary Ti-10Zr-5Nb-5Ta alloy, with non-toxic alloying elements, was used to develop an accumulative roll bonding, ARB-type procedure in order to improve its structural and mechanical properties. The alloy was obtained by cold crucible semi-levitation melting technique and then was ARB deformed following a special route. After three ARB cycles, the total deformation degree per layer is about 86%; the calculated medium layer thickness is about 13 μm. The ARB processed alloy has a low Young's modulus of 46 GPa, a value very close to the value of the natural cortical bone (about 20 GPa). Data concerning ultimate tensile strength obtained for ARB processed alloy is rather high, suitable to be used as a material for bone substitute. Hardness of the ARB processed alloy is higher than that of the as-cast alloy, ensuring a better behaviour as a implant material. The tensile curve for the as-cast alloy shows an elastoplastic behaviour with a quite linear elastic behaviour and the tensile curve for the ARB processed alloy is quite similar with a strain-hardening elastoplastic body. Corrosion behaviour of the studied alloy revealed the improvement of the main electrochemical parameters, as a result of the positive influence of ARB processing. Lower corrosion and ion release rates for the ARB processed alloy than for the as-cast alloy, due to the favourable effect of ARB thermo-mechanical processing were obtained.

摘要

在这项工作中,使用了一种含有无毒合金元素的多元素 Ti-10Zr-5Nb-5Ta 合金,通过累积滚轧结合(ARB)工艺来提高其结构和力学性能。该合金通过冷坩埚半悬浮熔炼技术获得,然后按照特殊路线进行 ARB 变形。经过三次 ARB 循环,每层的总变形度约为 86%;计算得到的中间层厚度约为 13μm。ARB 处理后的合金具有较低的杨氏模量(46GPa),非常接近天然皮质骨的杨氏模量(约 20GPa)。ARB 处理后的合金的极限拉伸强度数据相当高,适用于骨替代材料。ARB 处理后的合金的硬度高于铸态合金,确保了作为植入物材料的更好性能。铸态合金的拉伸曲线表现出弹塑性行为,具有相当线性弹性行为,而 ARB 处理后的合金的拉伸曲线则非常相似,具有应变硬化弹塑性体。研究合金的腐蚀行为表明,主要电化学参数得到了改善,这是 ARB 加工的积极影响所致。ARB 热机械加工的有利影响使得 ARB 处理后的合金的腐蚀和离子释放速率低于铸态合金。

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