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Influence of wheel speed during planar flow melt spinning on the microstructure and soft magnetic properties of Fe68.5Si18.5B9Nb3Cu1 ribbons

机译:平面流动熔体纺丝过程中轮速对Fe 68.5 Si 18.5 B 9 Nb 3 < / sub> Cu 1 色带

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摘要

The structure and soft magnetic properties of Fe68.5Si18.5B9Nb3Cu1 (at.%) alloy ribbons produced through planar flow melt spinning at different wheel speeds viz. 34, 17 and 12 m/s have been investigated using X-ray diffraction, differential scanning calorimetry, transmission electron microscopy, vibrating sample magnetometer and positron lifetime spectroscopy. Amorphous ribbons formed with different wheel speeds manifested different enthalpy and activation energy of crystallization. The volume fraction of nanocrystalline phase, saturation magnetization and permeability are found to increase whereas coercivity is found to decrease with increasing wheel speed on annealing. A detailed analysis of positron lifetime spectra obtained from the as-spun ribbons has been used to rationalize the variation in microstructure and magnetic properties. The presence of larger number of defects at higher wheel speed increases the volume fraction of nanocrystalline phase on annealing which improves the soft magnetic properties.
机译:Fe 68.5 Si 18.5 B 9 Nb 3 Cu 1 的结构和软磁性能通过在不同的轮速下进行平面流动熔体纺丝生产的亚>(at。%)合金带。使用X射线衍射,差示扫描量热法,透射电子显微镜,振动样品磁力计和正电子寿命光谱法研究了34、17和12 m / s。不同轮速形成的非晶带表现出不同的焓和结晶活化能。发现纳米晶相的体积分数,饱和磁化强度和磁导率会增加,而矫顽力会随着退火时轮速的增加而降低。从初生带获得的正电子寿命谱的详细分析已用于合理化微观结构和磁性能的变化。在较高的车轮速度下存在大量的缺陷会增加退火时纳米晶相的体积分数,从而改善软磁性能。

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