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Mossbauer study of nanocrystalline Co60Fe30Ni10 and Co50Fe35Ni15 alloys obtained during mechanical synthesis

机译:机械合成过程中获得的Co60Fe30Ni10和Co50Fe35Ni15纳米晶合金的Mossbauer研究

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摘要

The mechanical alloying method Was used to prepare Co60Fe30Ni10 and Co50Fe35Ni15 alloys from the elemental powders. As X-ray diffraction studies proved the final products of milling were the solid solutions with b.c.c. lattice and the average grain size of about 60 nm. After heating of the alloys up to 993 K, the mixtures of two solid solutions with a b.c.c. and f.c.c. lattices were formed. Annealing of the alloys at 1173 K for 1 h resulted in the formation of solid solutions with an f.c.c. lattice. Mossbauer spectroscopy revealed hyperfine magnetic field distributions which reflected the different surroundings of 57 Fe isotopes by Co, Fe and Ni atoms, depending on the chemical composition of the alloy. The most probable atomic configurations were determined on the basis of a local environment model. The results of the macroscopic magnetic measurements testified that Co60Fe30Ni10 and Co50Fe35Ni15 alloys exhibited relatively good soft magnetic properties. (c) 2008 Elsevier B.V. All rights reserved.
机译:机械合金化方法用于从元素粉末中制备Co60Fe30Ni10和Co50Fe35Ni15合金。 X射线衍射研究证明研磨的最终产物是不列颠哥伦比亚省的固溶体。晶格和平均晶粒尺寸约为60 nm。将合金加热到993 K之后,两种固溶体的混合物在不列颠哥伦比亚省和f.c.c.形成格子。合金在1173 K下退火1 h导致形成了f.c.c的固溶体。格子。 Mossbauer光谱显示超细磁场分布,根据合金的化学成分,该分布反映了Co,Fe和Ni原子反映的57种Fe同位素的不同周围环境。根据当地环境模型确定最可能的原子构型。宏观磁测量结果证明,Co60Fe30Ni10和Co50Fe35Ni15合金表现出相对较好的软磁性能。 (c)2008 Elsevier B.V.保留所有权利。

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