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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Nanometer scale tomographic investigation of fine scale precipitates in a CuFeNi granular system by three-dimensional field ion microscopy
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Nanometer scale tomographic investigation of fine scale precipitates in a CuFeNi granular system by three-dimensional field ion microscopy

机译:三维场离子显微镜对CuFeNi颗粒系统中细鳞状沉淀物的纳米级层析成像研究

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摘要

The microstructure of Cu80Fe10Ni10 (at. %) granular ribbons was investigated by means of three-dimensional field ion microscopy (3D FIM). This ribbon is composed of magnetic precipitates embedded in a nonmagnetic matrix. The magnetic precipitates have a diameter smaller than 5 nm in the as-spun state and are coherent with the matrix. No accurate characterization of such a microstructure has been performed so far. A tomographic characterization of the microstructure of melt spun and annealed Cu80Fe10Ni10 ribbon was achieved with 3D FIM at the atomic scale. A precise determination of the size distribution, number density, and distance between the precipitates was carried out. The mean diameter for the precipitates is 4 nm in the as-spun state. After 2 h at 350°C, there is an increase of the size of the precipitates, while after 2 h at 400°C the mean diameter of the precipitates decreases. Those data were used as inputs in models that describe the magnetic and magnetoresistive properties of this alloy.
机译:通过三维场离子显微镜(3D FIM)研究了Cu80Fe10Ni10(原子%)颗粒状带的微观结构。该带由嵌入非磁性基质中的磁性沉淀物组成。在初生状态下,磁性沉淀物的直径小于5 nm,并且与基质相干。迄今为止,尚未对这种微结构进行准确的表征。用原子尺度的3D FIM对熔融纺丝和退火的Cu80Fe10Ni10薄带的显微组织进行了断层扫描表征。进行尺寸分布,数量密度和沉淀物之间距离的精确测定。在初生状态下,沉淀物的平均直径为4 nm。在350°C下2小时后,沉淀物的尺寸增加,而在400°C下2小时后,沉淀物的平均直径减小。这些数据在描述该合金的磁阻和磁阻特性的模型中用作输入。

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