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马氏体Ti-Nb合金的热稳定性及相变

Thermal stability and phase transformations of martensitic Ti-Nb alloys.

作者信息

Bönisch Matthias, Calin Mariana, Waitz Thomas, Panigrahi Ajit, Zehetbauer Michael, Gebert Annett, Skrotzki Werner, Eckert Jürgen

机构信息

IFW-Dresden, PO Box 270116, D-01171 Dresden, Germany.

University of Vienna, Faculty of Physics, A-1090 Vienna, Austria.

出版信息

Sci Technol Adv Mater. 2013 Sep 27;14(5):055004. doi: 10.1088/1468-6996/14/5/055004. eCollection 2013 Oct.

Abstract

Aiming at understanding the governing microstructural phenomena during heat treatments of Ni-free Ti-based shape memory materials for biomedical applications, a series of Ti-Nb alloys with Nb concentrations up to 29 wt% was produced by cold-crucible casting, followed by homogenization treatment and water quenching. Despite the large amount of literature available concerning the thermal stability and ageing behavior of Ti-Nb alloys, only few studies were performed dealing with the isochronal transformation behavior of initially martensitic Ti-Nb alloys. In this work, the formation of martensites (' and ″) and their stability under different thermal processing conditions were investigated by a combination of x-ray diffraction, differential scanning calorimetry, dilatometry and electron microscopy. The effect of Nb additions on the structural competition in correlation with stable and metastable phase diagrams was also studied. Alloys with 24 wt% Nb or less undergo a [Formula: see text] transformation sequence on heating from room temperature to 1155 K. In alloys containing >24 wt% Nb ″ martensitically reverts back to , which is highly unstable against chemical demixing by formation of isothermal . During slow cooling from the single phase domain precipitates and only very limited amounts of ″ martensite form.

摘要

为了理解用于生物医学应用的无镍钛基形状记忆材料在热处理过程中的微观结构控制现象,通过冷坩埚铸造制备了一系列铌浓度高达29 wt%的Ti-Nb合金,随后进行均匀化处理和水淬。尽管有大量关于Ti-Nb合金热稳定性和时效行为的文献,但关于初始马氏体Ti-Nb合金的等时转变行为的研究却很少。在这项工作中,通过X射线衍射、差示扫描量热法、膨胀法和电子显微镜相结合的方法,研究了马氏体('和″)的形成及其在不同热加工条件下的稳定性。还研究了铌添加量对与稳定和亚稳相图相关的结构竞争的影响。含24 wt%铌或更少的合金在从室温加热到1155 K时经历[公式:见正文]转变序列。在含铌量>24 wt%的合金中,″马氏体逆转变回,而对于通过形成等温相进行化学分解,非常不稳定。在从单相区缓慢冷却时,析出,仅形成非常少量的″马氏体。

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