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首页> 外文期刊>International journal of hydrogen energy >Influence of annealing treatment on Laves phase compound containing a V-based BCC solid solution phase―Part Ⅰ: Crystal structures
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Influence of annealing treatment on Laves phase compound containing a V-based BCC solid solution phase―Part Ⅰ: Crystal structures

机译:退火处理对含V基BCC固溶相的Laves相化合物的影响Ⅰ。晶体结构

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摘要

Two multi-component Laves phase hydrogen storage alloys containing a body centered cubic (BCC) solid solution phase were prepared and the effects of annealing treatment on their crystal structures have been studied in this part. It is found by X-ray powder diffraction and energy dispersive X-ray spectrometer analysis that the as-cast alloys mainly consist of two phases: the C14 Laves phase matrix with hexagonal structure and the dendritic V-based solid solution phase with BCC structure. In addition, a small amount of TiNi-based third phase is also found precipitated within both the C14 Laves phase and the V-based solid solution phase. However, the content of the TiNi-based phase is decreased greatly by an appropriate annealing treatment owing to the compositional homogenization. Furthermore, the lattice parameters and unit cell volumes of both the C14 Laves phase and the V-based solid solution phase have all increased after the annealing treatment.
机译:制备了两种含体心立方固溶体相的多组分拉夫斯相储氢合金,并研究了退火处理对其晶体结构的影响。通过X射线粉末衍射和能量色散X射线光谱仪分析发现,铸态合金主要由两相组成:具有六边形结构的C14 Laves相基质和具有BCC结构的树枝状V基固溶体相。此外,还发现少量的基于TiNi的第三相在C14 Laves相和基于V的固溶体相中沉淀。然而,由于成分均质化,通过适当的退火处理,TiNi基相的含量大大降低。此外,退火处理后,C14 Laves相和V基固溶体相的晶格参数和晶胞体积均增加。

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