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首页> 外文期刊>AIP Advances >Phase transition from fcc to bcc structure of the Cu-clusters during nanocrystallization of Fe85.2Si1B9P4Cu0.8 soft magnetic alloy
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Phase transition from fcc to bcc structure of the Cu-clusters during nanocrystallization of Fe85.2Si1B9P4Cu0.8 soft magnetic alloy

机译:Fe85.2Si1B9P4Cu0.8软磁合金纳米晶化过程中Cu团簇从fcc到bcc的相变

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A role of Cu on the nanocrystallization of an Fe85.2Si1B9P4 Cu 0.8 alloy was investigated by X-ray absorption fine structure (XAFS) and transmission electron microscopy (TEM). The Cu K-edge XAFS results show that local structure around Cu is disordered for the as-quenched sample whereas it changes to fcc-like structure at 613 K. The fcc Cu-clusters are, however, thermodynamically unstable and begin to transform into bcc structure at 638 K. An explicit bcc structure is observed for the sample annealed at 693 K for 600 s in which TEM observation shows that precipitated bcc-Fe crystallites with ~12 nm are homogeneously distributed. The bcc structure of the Cu-clusters transforms into the fcc-type again at 973 K, which can be explained by the TEM observations; Cu segregates at grain boundaries between bcc-Fe crystallites and Fe3(B,P) compounds. Combining the XAFS results with the TEM observations, the structure transition of the Cu-clusters from fcc to bcc is highly correlated with the preliminary precipitation of the bcc-Fe which takes place prior to the onset of the first crystallization temperature, T x1 = 707 K. Thermodynamic analysis suggests that an interfacial energy density γ between an fcc-Cu cluster and bcc-Fe matrix dominates at a certain case over the structural energy between fcc and bcc Cu, ΔG fcc ? bcc , which causes phase transition of the Cu clusters from fcc to bcc structure.
机译:通过X射线吸收精细结构(XAFS)和透射电子显微镜(TEM)研究了Cu在Fe85.2Si1B9P4 Cu 0.8合金纳米晶中的作用。 Cu K-edge XAFS结果表明,淬火后的样品中Cu周围的局部结构无序,而在613 K时变为fcc样结构。然而,fcc Cu团簇在热力学上不稳定,并开始转变为bcc在638 K的温度下观察到bcc结构。在693 K退火600 s的样品中观察到明显的bcc结构,其中TEM观察表明,析出的〜12 nm的bcc-Fe微晶均匀分布。 Cu团簇的bcc结构在973 K时再次转变为fcc型,这可以通过TEM观察来解释。 Cu偏析在bcc-Fe微晶和Fe3(B,P)化合物之间的晶界处。将XAFS结果与TEM观测结果相结合,Cu团簇从fcc到bcc的转变与bcc-Fe在第一个结晶温度开始之前的初步沉淀高度相关,T x1 = 707 K.热力学分析表明,在一定情况下,fcc-Cu团簇与bcc-Fe基体之间的界面能密度γ占主导地位。 bcc,这导致Cu团簇从fcc转变为bcc结构。

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