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Synthesis, Hydrogenation and Mechanical Milling of Pseudo-Binary Zr(Nb_xV_(1-x)_2 (0≤x≤0.65) Alloys

机译:伪二进制Zr的合成,氢化和机械研磨(Nb_xv_(1-x)_2(0≤x≤0.65)合金

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AB_2 metallic alloys provide large quantities of Laves phases when prepared using conventional thermal routes. In the present work the crystallography, hydrogenation behavior and mechanical milling (MM) effects of the pseudo-binary Zr(Nb_xV_(1-x))2 (0≤x≤0.65) system are studied. It is found that the partial replacement of V by Nb atoms leads to the formation of cubic C15 (0≤x≤0.20) and hexagonal C14 (0.35≤x≤0.65) Laves phases. For x≤0.20, the niobium additions promote a slight increase of the hydrogen storage capacity by the C15 phases. For 0.35≤x≤0.65, the reduction of the molar fraction of the C14 phase promotes an increase of the alloy hydrogen storage capability. Iron incorporation plays a major role on the type of final mechanically-milled Zr-Nb-V alloys obtained: a transformation from Laves phases (C14 and C15) to an fcc (Fm3m) one; while, in the absence of Fe, amorphization of the system was observed, as predicted by Miedema Model. As a general result, the mechanical milling of the Zr-Nb-V alloys results in a reduction of the hydrogen storage capacity, at least for long processing times.
机译:AB_2金属合金在使用常规热途径制备时提供大量的Laves阶段。在本工作中,研究了伪二进制Zr(Nb_xv_(1-x))2(0≤x≤0.65)系统的结晶术,氢化行为和机械研磨(mm)效应。结果发现,Nb原子的部分替代导致立方C15(0≤x≤0.20)和六边形C14(0.35≤x≤0.65)熔胃阶段的形成。对于X≤0.20,铌添加促进C15阶段的储氢容量略微增加。对于0.35≤x≤0.65,C14相的摩尔分数的降低促进了合金储氢能力的增加。铁公司在获得的最终机械研磨的Zr-NB-V合金的类型上发挥着重要作用:从疏浚阶段(C14和C15)转化为FCC(FM3M);虽然在没有Fe的情况下,观察到系统的非形状,如Miedema模型所预测的。作为一般结果,Zr-Nb-V合金的机械研磨导致储氢容量的降低,至少用于长处理时间。

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