首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Thermomechanical treatments influence on the phase composition, microstructure, and selected mechanical properties of Ti-20Zr-Mo alloys system for biomedical applications
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Thermomechanical treatments influence on the phase composition, microstructure, and selected mechanical properties of Ti-20Zr-Mo alloys system for biomedical applications

机译:热机械处理对Ti-20Zr-Mo合金系统的相结合,微观结构和选择的生物医学应用的机械性能影响

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The study and development of new titanium alloys aim to place a metallic biomedical device with better mechanical compatibility with the bone, that is, with a smaller Young's modulus, on the market, to improve its application in the orthopedic and dental fields. This study analyzed the influence of thermomechanical treatments on the structure, hardness, and elastic modulus of the Ti-20Zr-Mo ternary alloy system, where the molybdenum content varied between 0 and 10 wt%. The treatments performed in this study involved homogenization, hot-rolling, and annealing. The structural and microstructural analyses were performed by X-ray diffraction, optical and scanning electron microscopy. An analysis of the mechanical properties of the alloy was obtained by measuring Vickers microhardness and the dynamic elastic modulus. The structural and microstructural results indicated that the Ti-20Zr alloy has only the alpha' phase, the Ti-20Zr-10Mo alloy had a predominance of beta phase, and the other alloys were alpha+beta types. The hardness increased due to solid-state hardening with the increase of the molybdenum content and due to hot-rolling processing, which increased the internal stresses of the material. The elastic modulus decreased with higher levels of molybdenum and the hot-rolling processing, due to beta phase stabilization. The other treatments increased the elastic modulus and may even induce the formation of the omega phase in some alloys of the system. (C) 2019 Elsevier B.V. All rights reserved.
机译:新的钛合金的研究和开发旨在放置金属生物医学装置,与骨骼更好的机械兼容性,即在市场上具有较小的杨氏模量,以改善其在整形外科和牙科领域的应用。该研究分析了热机械处理对Ti-20zr-Mo三元合金系统的结构,硬度和弹性模量的影响,其中钼含量在0和10wt%之间变化。本研究中进行的治疗涉及均质化,热轧和退火。通过X射线衍射,光学和扫描电子显微镜进行结构和微观结构分析。通过测量维持器微硬度和动态弹性模量来获得对合金的力学性能的分析。结构和微观结构结果表明,Ti-20Zr合金仅具有α相,Ti-20Zr-10Mo合金具有β相的主要优势,其它合金是α+β型。由于钼含量的增加,并且由于热轧加工而增加,硬度增加了固态硬化,这增加了材料的内部应力。由于β相稳定,弹性模量随着较高水平的钼和热轧处理而降低。其他处理增加了弹性模量,并且甚至可以在系统的一些合金中诱导ω相的形成。 (c)2019 Elsevier B.v.保留所有权利。

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