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Atomic scale study of CU clustering and pseudo-homogeneous Fe-Si nanocrystallization in soft magnetic FeSiNbB(CU) alloys

机译:软磁性FeSiNbB(CU)合金中CU团簇和伪均相Fe-Si纳米晶的原子尺度研究

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A local electrode atom probe has been employed to trace the onset of Cu clustering followed by their coarsening and subsequent growth upon rapid (10 s) annealing of an amorphous Fe73.5Si15.5Cu1Nb3B7 alloy. It has been found that the clustering of Cu atoms introduces heterogeneities in the amorphous matrix, leading to the formation of Fe rich regions which crystallizes pseudo-homogeneously into Fe-Si nanocrystals upon annealing. In this paper, we present the data treatment method that allows for the visualization of these different phases and to understand their morphology while still quantifying them in terms of their size, number density and volume fraction. The crystallite size of Fe-Si nanocrystals as estimated from the atom probe data are found to be in good agreement with other complementary techniques like XRD and TEM, emphasizing the importance of this approach towards accurate structural analysis. In addition, a composition driven data segmentation approach has been attempted to determine and distinguish nanocrystalline regions from the remaining amorphous matrix. Such an analysis introduces the possibility of retrieving crystallographic information from extremely fine (2-4 nm sized) nanocrystalline regions of very low volume fraction ( < 5 Vol%) thereby providing crucial in-sights into the chemical heterogeneity induced crystallization process of amorphous materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经使用局部电极原子探针来追踪Cu团簇的发生,然后粗化,然后在非晶态Fe73.5Si15.5Cu1Nb3B7合金快速(10 s)退火后生长。已经发现,Cu原子的团簇在非晶基质中引入了异质性,导致形成富Fe区域,该富Fe区域在退火时伪均质地结晶为Fe-Si纳米晶体。在本文中,我们介绍了一种数据处理方法,该方法可以可视化这些不同的相,并了解它们的形态,同时仍可以根据它们的大小,数量密度和体积分数对其进行量化。根据原子探针数据估算的Fe-Si纳米晶体的微晶尺寸与XRD和TEM等其他互补技术高度吻合,强调了这种方法对精确结构分析的重要性。另外,已经尝试了组成驱动的数据分割方法来确定纳米晶体区域并将其与剩余的非晶基质区分开。这种分析引入了从极低的体积分数(<5 Vol%)的极细(2-4 nm尺寸)纳米晶体区域检索晶体学信息的可能性,从而为非晶态材料的化学异质性诱导结晶过程提供了重要的洞察力。 (C)2015 Elsevier B.V.保留所有权利。

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