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Ab initio study of competitive hydride formation in zirconium alloys

机译:从头开始研究锆合金中竞争性氢化物的形成

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We present a detailed atomic-scale investigation of coherent hydrides in Zr alloys. While previous experimental and theoretical studies emphasized the γ' (ZrH) and ζ (Zr_2H) phases as potential precursors in the hydride precipitation sequence, they led to contradictory conclusions justifying further analysis of the nucleation of these two types of precipitates. To this aim, we take proper account of the three energy contributions (bulk chemical, interfacial and elastic) involved in Classical Nucleation Theory by incorporating original features such as (i) ζ bulk off-stoichiometry, (ii) anisotropic matrix/hydride interfacial energies and (iii) shape factors of platelike nuclei. These effects turn out to be essential to provide a realistic description of the conditions of temperature and H content leading to preferential γ' or ζ formation. Our work provides a unifying picture of the previous, apparently diverging, works on coherent zirconium hydrides.
机译:我们提出了Zr合金中相干氢化物的详细原子级研究。尽管先前的实验和理论研究强调了γ'(ZrH)和ζ(Zr_2H)相是氢化物沉淀序列中的潜在前体,但它们得出的结论相互矛盾,因此有必要进一步分析这两种沉淀物的形核。为此,我们通过结合原始特征,例如(i)ζ体积非化学计量比,(ii)各向异性基质/氢化物界面能,适当考虑了经典成核理论中涉及的三种能量贡献(本体化学,界面和弹性) (iii)板状核的形状因子。这些效应对于提供对导致优先形成γ'或ζ的温度和H含量条件的现实描述至关重要。我们的工作提供了以前关于相干氢化锆的明显不同的统一照片。

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