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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Experimental and modelling studies of the thermodynamics and kinetics of phase and structural transformations in a gamma TiAl-based alloy
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Experimental and modelling studies of the thermodynamics and kinetics of phase and structural transformations in a gamma TiAl-based alloy

机译:γ-TiAl基合金的相变和结构转变的热力学和动力学的实验和模型研究

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This work combines microscopy, synchrotron radiation X-ray diffraction, differential scanning calorimetry and thermodynamic calculations in the characterisation of phase transformation behaviour of a Ti-46Al-1.9Cr-3Nb alloy upon continuous heating at constant rates. It has been found that the Ti-46Al-1.9Cr-3Nb alloy after being forged at 1200℃ without further treatment has a duplex microstructure consisting of fine equiaxed and lamellar γ grains with a small amount of α_2 plates and particles and about 1 wt.% B2 phase. Differential scanning calorimetry revealed reproducibly several thermal effects upon heating of the as-forged alloy. These thermal effects are related to the equilibration and homogenisation of the sample, change of phase ratios between α_2, γ and B2 phases in particular the increase of B2 in respect to α_2 and γ, and the following five phase transformations: α_2 + γ + B2 => α + γ + B2, α + γ + B2 => α + γ, γ + α => α, α => α + β, α + β => α + β + L. The observation of these transformations by differential scanning calorimetry is largely in agreement with literature phase diagrams and thermodynamic calculations, though care is needed to consider the different alloy compositions. Kinetics of the γ + α => α phase transformation in the Ti-46Al-1.9Cr-3Nb alloy has been quantitatively derived from the calorimetry data, giving phase compositions at any point during the transformation upon continuous heating.
机译:这项工作结合了显微镜,同步辐射X射线衍射,差示扫描量热法和热力学计算来表征以恒定速率连续加热的Ti-46Al-1.9Cr-3Nb合金的相变行为。已经发现,在未经进一步处理的情况下于1200℃锻造的Ti-46Al-1.9Cr-3Nb合金具有由细小的等轴和层状γ晶粒以及少量的α_2板和颗粒以及约1 wt。%的双相组织。 %B2相。差示扫描量热法在锻造合金加热时可再现地显示出几种热效应。这些热效应与样品的平衡和均质化,α_2,γ和B2相之间的相比变化,特别是B2相对于α_2和γ的增加以及以下五个相变有关:α_2+γ+ B2 =>α+γ+ B2,α+γ+ B2 =>α+γ,γ+α=>α,α=>α+β,α+β=>α+β+ L.通过差示扫描量热法与文献相图和热力学计算基本吻合,尽管需要注意考虑不同的合金成分。 Ti-46Al-1.9Cr-3Nb合金中γ+α=>α相变的动力学已经从量热数据中定量得出,在连续加热过程中,在相变过程中的任何时候都可以得到相组成。

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