首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Small-angle X-ray scattering from phase-separating amorphous metallic alloys undergoing nanocrystallization
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Small-angle X-ray scattering from phase-separating amorphous metallic alloys undergoing nanocrystallization

机译:来自相分离的非晶态金属合金经历纳米结晶的小角度X射线散射

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摘要

We performed a combined small- and wide-angle X-ray scattering (SAXS/WAXS) study of nanocrystallization during annealing of binary Al_(92)Sm_8 and Al_(91)Gd_9 melt-spun glassy alloys. In course of the transformation an interference maximum develops in the SAXS region while WAXS spectra show formation of fcc-Al nanocrystals in the glassy phase. In order to determine the origin of the SAXS maximum the theoretical SAXS intensity and distance distribution function were calculated considering two structural models. The first model represented a single nanocrystal with a solute layer on its surface and the second one a phase-separated alloy with spatially correlated compositional fluctuations. The results of the calculations are compared with the experimental data. It is demonstrated that only the model representing correlated fluctuations reasonably reproduces the experimental results. We conclude that nano-scale glassy phase separation occurs in the investigated alloys and the nanocrystals form inside the Al-rich amorphous regions.
机译:我们对二元Al_(92)Sm_8和Al_(91)Gd_9熔融纺丝玻璃态合金进行退火时,进行了纳米结晶的小角度和广角X射线组合散射(SAXS / WAXS)研究。在转变过程中,在SAXS区域产生了最大的干扰,而WAXS光谱显示在玻璃相中形成了fcc-Al纳米晶体。为了确定SAXS最大值的起源,考虑了两个结构模型,计算了理论SAXS强度和距离分布函数。第一个模型表示在其表面上具有溶质层的单个纳米晶体,第二个模型表示具有与空间相关的组成波动的相分离合金。将计算结果与实验数据进行比较。结果表明,只有代表相关波动的模型才能合理地再现实验结果。我们得出的结论是,在所研究的合金中发生了纳米级玻璃相分离,并且在富铝非晶区内部形成了纳米晶体。

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