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Stability and elastic properties of Ti-alloys for biomedical application designed with electronic parameters

机译:用电子参数设计Ti-合金Ti合金的稳定性和弹性性能

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摘要

Titanium alloys are receiving a big attention for biomedical applications. Recently, b type titanium alloys composed of non-toxic elements are being developed for these applications. The aim of this paper is to study mechanical properties and deformation mechanisms of three beta titanium alloys designed with similar values of Bo-Md and e/a ratio. The contribution of electronic approach to predict beta phase stability is also discussed. The microstructural analysis and the mechanical characterization are carried out for different metallurgical states (cold working, solution treatment and aging treatment). Effects of aging treatment at low temperature is also investigated, showing that isothermal holding at 400°C for 0,6 ks after cold working improves the mechanical properties of alloys.
机译:钛合金是对生物医学应用的重视。最近,B型钛合金由无毒元素组成,用于这些应用。本文的目的是研究三β钛合金的机械性能和变形机制,该β钛合金具有类似的BO-MD和E / A比率。还讨论了电子方法预测β相位稳定性的贡献。对不同冶金状态进行微观结构分析和机械表征(冷加工,溶液处理和老化处理)。还研究了在低温下进行了衰老处理的影响,显示冷加工后400℃的等温剩余,改善了合金的机械性能。

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