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Structural and magnetic properties of nanocrystalline particles in an amorphous Fe73.5Nb3CuSi13.5B9 matrix

机译:非晶态Fe73.5Nb3CuSi13.5B9基体中纳米晶体颗粒的结构和磁性

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摘要

We report structural and magnetic properties of fine particles embedded in an amorphous magnetic matrix. As-quenched amorphous Fe73.5Nb3CuSi13.5B9 ribbons (FINEMET) were submitted to the thermal treatments of several times (1 <= t <= 240 min) at 570 degrees C using a conventional furnace. The analyses of the X-ray diffraction patterns at room temperature reveal that our samples consist of single phase Fe3Si nanocrystals embedded in a residual amorphous phase. Magnetic measurements show that the saturation moment at T = 450 degrees C increases as a function of annealing time. This behavior is attributed to an increase of the fraction of nanocrystallites in the residual amorphous phase.
机译:我们报告嵌入非晶态磁性基质中的细颗粒的结构和磁性。淬火后的非晶态Fe73.5Nb3CuSi13.5B9薄带(FINEMET)使用常规炉在570摄氏度下进行了几次热处理(1 <= t <= 240分钟)。室温下X射线衍射图的分析表明,我们的样品由嵌入残余非晶相中的单相Fe3Si纳米晶体组成。磁性测量表明,在T = 450℃时的饱和力矩随退火时间的增加而增加。此行为归因于残余非晶相中纳米微晶比例的增加。

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