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Hydrogen solubility in zirconium intermetallic second phase particles.

机译:氢在锆金属间第二相颗粒中的溶解度。

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摘要

The enthalpies of solution of H in Zr binary intermetallic compounds formed with Cu, Cr, Fe, Mo, Ni, Nb, Sn and V were calculated by means of density functional theory simulations and compared to that of H in α-Zr. It is predicted that all Zr-rich phases (formed with Cu, Fe, Ni and Sn), and those phases formed with Nb and V, offer lower energy, more stable sites for H than α-Zr. Conversely, Mo and Cr containing phases do not provide preferential solution sites for H. In all cases the most stable site for H are those that offer the highest coordination fraction of Zr atoms. Often these are four Zr tetrahedra but not always. Implications with respect to H-trapping properties of commonly observed ternary phases such as Zr(Cr, Fe)2, Zr2(Fe, Ni) and Zr(Nb, Fe)2 are also discussed. © 2013, Elsevier B.V.
机译:通过密度泛函理论模拟计算出了H在Cu,Cr,Fe,Mo,Ni,Nb,Sn和V形成的Zr二元金属间化合物中的溶液焓,并将其与α-Zr中的H进行比较。据预测,所有富Zr的相(由Cu,Fe,Ni和Sn形成)以及由Nb和V形成的相都比α-Zr提供更低的能量和更稳定的H位。相反,含Mo和Cr的相不能为H提供优先的溶液位点。在所有情况下,H的最稳定位点是Zr原子配位分数最高的位点。通常这些是四个Zr四面体,但并非总是如此。还讨论了关于通常观察到的三元相(例如Zr(Cr,Fe)2,Zr2(Fe,Ni)和Zr(Nb,Fe)2)的H俘获性质的含义。 ©2013,Elsevier B.V.

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