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Atom probe characterization of an /spl alpha/-Fe/Nd/sub 2/Fe/sub 14/B nanocomposite magnet with a remaining amorphous phase

机译:具有剩余非晶相的/ spl alpha / -Fe / Nd / sub 2 / Fe / sub 14 / B纳米复合磁体的原子探针表征

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摘要

The microstructural features of Nd/sub 8/Fe/sub 76.5/Co/sub 8/B/sub 6/Cu/sub 0.5/Nb/sub 1/ nanocomposite magnet have been studied by a three-dimensional atom probe (3DAP) and transmission electron microscopy (TEM). The as-melt-spun microstructure is composed of /spl alpha/-Fe, Nd/sub 2/Fe/sub 14/B and a large fraction of intergranular amorphous phase. The annealed microstructure with optimum magnetic properties contains the same constituent phases as those in the as-quenched state, but the volume fraction of the Nd/sub 2/Fe/sub 14/B grains is increased by partial crystallization of the remaining amorphous phase. Nb and B are found to be enriched in the remaining amorphous phase. Unlike Fe/sub 3/B/Nd/sub 2/Fe/sub 14/B nanocomposite, Cu additions are not effective in refining the grain size in this system.
机译:利用三维原子探针(3DAP)研究了Nd / sub 8 / Fe / sub 76.5 / Co / sub 8 / B / sub 6 / Cu / sub 0.5 / Nb / sub 1 /纳米复合磁体的微观结构特征透射电子显微镜(TEM)。熔体初生组织由/ splα/ -Fe,Nd / sub 2 / Fe / sub 14 / B和大部分晶间非晶相组成。具有最佳磁性能的退火微结构包含与淬火状态下相同的组成相,但是Nd / sub 2 / Fe / sub 14 / B晶粒的体积分数由于剩余非晶相的部分结晶而增加。发现Nb和B富集在剩余的非晶相中。与Fe / sub 3 / B / Nd / sub 2 / Fe / sub 14 / B纳米复合材料不同,在该系统中添加Cu不能有效地细化晶粒尺寸。

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