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Influence of annealing temperature and atmosphere on surface microstructure and magnetism in FINEMET-type FeSiNbCuB ribbons

机译:退火温度和气氛对FINEMET型FeSiNbCuB薄带的表面微观结构和磁性的影响

摘要

Paper is primarily devoted to the surface investigations of the FINEMET-type Fe73.5Si13.5Nb3Cu1B9 ribbons. As-quenched (AQ) samples were subsequently annealed at different temperatures from 733 K to 923 K in vacuum and hydrogen in order to follow the influence of both treatment parameters on microstructure and magnetic properties. Two-phase magneto-optical (MO) hysteresis loops observed at AQ ribbons correspond to an amorphous structure composed of clusters of the size in units of nm (calculated from XRD). The annealing temperatures are responsible for the origin of the α-Fe and/or α-Fe(Si) nanocrystals of various size formed at the surface and consequently penetrating into the ribbon volume while the atmospheres influence surface oxidation. An interesting occurrence of the asymmetric reversal of longitudinal magnetization, clearly observed after annealing at 733 K and 743 K, is discussed from the viewpoint of quadratic magneto-optical effects. The loop asymmetry decreases with increasing annealing temperature and disappears at 923 K.
机译:论文主要用于FINEMET型Fe73.5Si13.5Nb3Cu1B9碳带的表面研究。淬火(AQ)样品随后在真空和氢气中在733 K至923 K的不同温度下进行退火,以跟踪两种处理参数对微观结构和磁性能的影响。在AQ色带处观察到的两相磁光(MO)磁滞回线对应于一种非晶结构,该非晶结构由大小单位为nm的簇组成(根据XRD计算)。退火温度负责形成在表面的各种尺寸的α-Fe和/或α-Fe(Si)纳米晶体的起源,并因此渗透到带状体积中,而大气则影响表面氧化。从二次磁光效应的角度,讨论了在733 K和743 K退火后清楚观察到的纵向磁化强度不对称逆转的有趣现象。回路不对称性随退火温度的升高而降低,并在923 K时消失。

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