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Effects of Cooling Rate and Sn Addition on the Microstructure of Ti-Nb-Sn Alloys

机译:冷却速度和Sn添加对Ti-Nb-Sn合金微观结构的影响

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Ti-based alloys present unique properties and hence, are employed in several industrial segments. Among Ti alloys, β type alloys form one of the most versatile classes of materials in relation to processing, microstructure and mechanical properties. It is well known that heat treatment of Ti alloys plays an important role in determining their microstructure and mechanical behavior. The aim of this work is to analyze microstructure and phases formed during cooling of β Ti-Nb-Sn alloy through different cooling rates. Initially, samples of Ti-Nb-Sn system were prepared through arc melting furnace. After, they were subjected to continuous cooling experiments to evaluate conditions for obtaining metastable phases. Microstructure analysis, differential scanning calorimetry and X-ray diffraction were performed in order to evaluate phase transformations. Depending on the cooling rate and composition, α" martensite, ω phase and β phase were obtained. Elastic modulus has been found to decrease as the amount of Sn was increased.
机译:Ti基合金具有独特的性质,因此在若干工业区段中使用。在Ti合金中,β型合金形成有关加工,微观结构和机械性能的最通用的材料之一。众所周知,Ti合金的热处理在确定它们的微观结构和机械行为方面起着重要作用。这项工作的目的是通过不同的冷却速率进行βTi-Nb-Sn合金冷却过程中形成的微观结构和相。最初,通过电弧熔炉制备Ti-Nb-Sn系统的样品。之后,对它们进行连续冷却实验,以评估获得亚稳阶段的条件。进行微观结构分析,进行差分扫描量热法和X射线衍射以评估相变。取决于冷却速率和组合物,获得α“马氏体,ω相和β相。由于SN的量增加,发现弹性模量降低。

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