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首页> 外文期刊>Magnetics, IEEE Transactions on >Structure Properties of the src="/images/tex/20781.gif" alt="{rm YFe}_{11}{rm Mo}"> Intermetallic Compound
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Structure Properties of the src="/images/tex/20781.gif" alt="{rm YFe}_{11}{rm Mo}"> Intermetallic Compound

机译: src =“ / images / tex / 20781.gif” alt =“ {rm YFe} _ {11} {rm Mo}”> 金属间化合物的结构性质

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摘要

The structure, chemistry and magnetic domain configurations of ${rm YFe}_{11}{rm Mo}$ polycrystalline aggregates have been investigated by X-ray diffraction, transmission electron microscopy, energy dispersive X-ray spectroscopy and Lorentz microscopy. Although extensive reports on the magnetic properties of this compound can be found in the literature, its exact equilibrium structure remains elusive. The compound was prepared by arc-melting followed by splat-quenching and subsequent annealing. The quenched material consisted of a ${rm ThMn}_{12}$-type matrix and $alpha$-Fe(Mo) impurity phase. Annealing lead to iron segregation from the matrix, as evidenced by a clear shift to higher angles of the $alpha$ -Fe(Mo) peak observed in the diffraction pattern. Nevertheless, the composition variation in the intermetallic compound was accompanied by an extremely limited evolution of the lattice parameters, suggesting the presence of Fe vacancies after annealing. Rietveld analysis carried out on the annealed material points to Fe vacancies at the $8i$ sites. The present results indicate that the fraction of point defects in the ${rm ThMn}_{12}$-type structure adapts to the processing route and that the stable configuration depends on the temperature. ${rm YFe}_{11}{rm Mo}$ grains present internal domain walls forming stripe/maze patterns characteristic of high anisotropy materials, while residual $alpha$ -Fe(Mo) grains exhibit vortex configurati- ns. Annealing hardly affected the magnetic domain configurations of the ${rm YFe}_{11}{rm Mo}$ and $alpha$-Fe(Mo) aggregates.
机译:$ {rm YFe} _ {11} {rm Mo} $多晶聚集体的结构,化学和磁畴构型已通过X射线衍射,透射电子显微镜,能量色散X射线光谱和Lorentz显微镜进行了研究。尽管可以在文献中找到有关该化合物磁性的大量报道,但其确切的平衡结构仍然难以捉摸。该化合物是通过电弧熔融,随后的骤冷和随后的退火制备的。淬火的材料由$ {rm ThMn} _ {12} $型基体和$ alpha $ -Fe(Mo)杂质相组成。退火导致铁从基体中偏析,这可以通过衍射图中观察到的αα-Fe(Mo)峰明显向较高角度的偏移来证明。然而,金属间化合物的组成变化伴随着晶格参数的极其有限的演变,这表明退火后存在Fe空位。 Rietveld对退火材料进行的分析表明,在$ 8i $处有Fe空位。目前的结果表明,$ {rm ThMn} _ {12} $型结构中的点缺陷分数适应于加工路线,并且稳定的构型取决于温度。 $ {rm YFe} _ {11} {rm Mo} $晶粒存在内部畴壁,形成具有高各向异性材料特征的条纹/迷宫图案,而残留的$ alpha $ -Fe(Mo)晶粒则表现出涡旋构型。退火几乎不会影响$ {rm YFe} _ {11} {rm Mo} $和$ alpha $ -Fe(Mo)聚集体的磁畴构型。

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