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Microstructure, mechanical, and anticorrosive properties of a new Ti-20Nb-10Zr-5Ta alloy based on nontoxic and nonallergenic elements

机译:基于无毒无过敏元素的新型Ti-20Nb-10Zr-5Ta合金的组织,力学和耐腐蚀性能

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摘要

For an alloy to be suitable for use as an implant material, it must have a low specific weight and Young’s modulus, good mechanical properties that are similar to those of bone, and very good corrosion resistance and biocompatibility. In this study, we have developed a novel Ti-20Nb-10Zr-5Ta alloy that is composed of nontoxic, nonallergenic, corrosion-resistant elements. This alloy has low specific weight and Young’s modulus and good mechanical properties. It has a fine microstructure with a matrix that is mainly composed of the β phase and some α phase due to recrystallization during cooling. It shows elastoplastic behavior with a fairly linear elastic behavior and low Young’s modulus (59 GPa). In addition, its ultimate tensile strength, 0.2% yield strength, and hardness are higher than those of CP Ti, commercial Ti-6Al-4V, and similar β-type alloys. It exhibited a very stable passive state and its electrochemical parameters and corrosion and ion release rates were better than those of CP Ti in Ringer’s solutions of different pH values that simulate the severe functional conditions of an implant; this is attributable to the beneficial influence of the alloying elements and to the better protective properties of the coated passive film.
机译:为了使合金适合用作植入材料,它必须具有低的比重和杨氏模量,与骨骼相似的良好机械性能以及非常好的耐腐蚀性和生物相容性。在这项研究中,我们开发了一种新型的Ti-20Nb-10Zr-5Ta合金,该合金由无毒,不过敏,耐腐蚀的元素组成。这种合金具有低的比重和杨氏模量以及良好的机械性能。它具有良好的微观结构,其基质由于冷却过程中的重结晶而主要由β相和一些α相组成。它显示出具有相当线性的弹性行为和低的杨氏模量(59 GPa)的弹塑性行为。此外,其极限抗拉强度,0.2%的屈服强度和硬度高于CP Ti,商用Ti-6Al-4V和类似的β型合金。它表现出非常稳定的钝态,其电化学参数以及腐蚀和离子释放速率优于在模拟pH值严格的植入物的林格氏溶液中CP Ti的性能。这归因于合金元素的有益影响以及涂覆的钝化膜的更好的保护性能。

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