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Surface magnetic properties and domains observation in as-quenched and annealed FeNbB ribbons

机译:淬火和淬火后的表面磁性能和磁畴观察FeNbB退火带

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摘要

The longitudinal magneto-optical Kerr effect (MOKE) combined with the magneto-optical microscopy is used to investigate the surface magnetic anisotropy and the domain behavior in as-quenched (AQ) and strain-annealed (SA) FeNbB ribbons. X-ray diffraction, conversion electron Mössbauer spectroscopy (CEMS), and scanning electron microscopy (SEM) confirmed the existence of approximately View the MathML source thick magnetically harder layer on the ribbon air side, consisting of crystallites embedded in an amorphous matrix. The underneath bulk phase is amorphous and magnetically soft. Residual anisotropies and the domain patterns (wide in-plane domains with 180ring operator walls and narrow fingerprint domains) corresponding to amorphous phase are mainly caused by the internal stresses originating from the rapid quenching process. In the surface crystalline phase they are gradually overlapped by strip domains with magnetization directions almost perpendicular to the ribbon axis. The anisotropy changes caused by additional annealing and straining of the samples are shown and discussed in detail.
机译:纵向磁光克尔效应(MOKE)与磁光显微镜相结合,用于研究淬火(AQ)和应变退火(SA)FeNbB带的表面磁各向异性和畴行为。 X射线衍射,转换电子穆斯堡尔光谱(CEMS)和扫描电子显微镜(SEM)证实了碳带空气侧存在大约硬磁性较厚的层,该层由嵌入无定形基质中的微晶组成。下方的主体相为非晶态且软磁。残余各向异性和与非晶相相对应的畴模式(具有180ring的操作员壁的宽面内畴和窄的指纹畴)主要是由快速淬火过程产生的内应力引起的。在表面晶相中,它们逐渐被带状畴重叠,其磁化方向几乎垂直于带状轴。示出并详细讨论了由样品的额外退火和应变引起的各向异性变化。

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