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铝镍钴8合金相分离的相关能量色散X射线光谱断层扫描和原子探针断层扫描

Correlative Energy-Dispersive X-Ray Spectroscopic Tomography and Atom Probe Tomography of the Phase Separation in an Alnico 8 Alloy.

作者信息

Guo Wei, Sneed Brian T, Zhou Lin, Tang Wei, Kramer Matthew J, Cullen David A, Poplawsky Jonathan D

机构信息

1Oak Ridge National Laboratory,Center for Nanophase Materials Sciences,Oak Ridge,TN 37831,USA.

2Ames Laboratory, Division of Materials Science and Engineering,Ames,IA 50011,USA.

出版信息

Microsc Microanal. 2016 Dec;22(6):1251-1260. doi: 10.1017/S1431927616012496.

Abstract

Alnico alloys have long been used as strong permanent magnets because of their ferromagnetism and high coercivity. Understanding their structural details allows for better prediction of the resulting magnetic properties. However, quantitative three-dimensional characterization of the phase separation in these alloys is still challenged by the spatial quantification of nanoscale phases. Herein, we apply a dual tomography approach, where correlative scanning transmission electron microscopy (STEM) energy-dispersive X-ray spectroscopic (EDS) tomography and atom probe tomography (APT) are used to investigate the initial phase separation process of an alnico 8 alloy upon non-magnetic annealing. STEM-EDS tomography provides information on the morphology and volume fractions of Fe-Co-rich and Νi-Al-rich phases after spinodal decomposition in addition to quantitative information of the composition of a nanoscale volume. Subsequent analysis of a portion of the same specimen by APT offers quantitative chemical information of each phase at the sub-nanometer scale. Furthermore, APT reveals small, 2-4 nm Fe-rich α 1 phases that are nucleated in the Ni-rich α 2 matrix. From this information, we show that phase separation of the alnico 8 alloy consists of both spinodal decomposition and nucleation and growth processes. The complementary benefits and challenges associated with correlative STEM-EDS and APT are discussed.

摘要

由于具有铁磁性和高矫顽力,铝镍钴合金长期以来一直被用作强永磁体。了解它们的结构细节有助于更好地预测其磁性能。然而,这些合金中相分离的定量三维表征仍然面临纳米级相空间量化的挑战。在此,我们应用一种双重断层扫描方法,其中相关扫描透射电子显微镜(STEM)能量色散X射线光谱(EDS)断层扫描和原子探针断层扫描(APT)用于研究铝镍钴8合金在非磁性退火后的初始相分离过程。STEM-EDS断层扫描除了提供纳米级体积成分的定量信息外,还提供了旋节线分解后富铁钴相和富镍铝相的形态和体积分数信息。随后通过APT对同一试样的一部分进行分析,可在亚纳米尺度上提供各相的定量化学信息。此外,APT揭示了在富镍α2基体中形核的2-4纳米的小富铁α1相。根据这些信息,我们表明铝镍钴8合金的相分离包括旋节线分解以及形核和生长过程。文中还讨论了相关STEM-EDS和APT的互补优势与挑战。

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