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Comparative Study of Magnetic Properties and Microstructure for As-cast and Square-wave Pulse Current Joule Annealed Wires

机译:铸态和方波脉冲电流焦耳退火线的磁性能和微观结构的比较研究

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We here report on a comparative study of the microstructure and magnetic properties of as-cast and SPCJA-ed Co-based wires for potential sensor applications. Experimental results indicate that both as-cast and SPCJA-ed wires exhibit typical amorphous feature. There also exists the enhanced local ordering degree of atomic arrangement and obvious transformation (maximum magnetic permeability and minimum saturation magnetization) of magnetic properties after SPCJA treatment, resulting from variation of magnetic moment exchange coupling and magnetic anisotropy by coactions of high-density pulsed magnetic field energy and thermal activation energy. Moreover, SPCJA treatment can drastically improve the GMI property of melt-extracted wires. GMI ratio [ΔZ/Z0]max of 166.07% and field response sensitivity ξmax of 413.76%/Oe by more than 2.25 times and 1.73 times of as-cast wire at 5MHz. Therefore, the SPCJA-ed wire exhibits the improved GMI and magnetic properties at 5MHz~10MHz in contrast to AC annealed wire, which is more suitable for GMI sensor applications working at low-applied-frequency and relatively low-working-magnetic field.
机译:我们在此报告了用于潜在传感器应用的铸态和SPCJA-ed Co基导线的微观结构和磁性能的比较研究。实验结果表明,铸态和SPCJA型导线均表现出典型的非晶特征。 SPCJA处理后,由于高密度脉冲磁场共同作用引起的磁矩交换耦合和磁各向异性的变化,原子排列的局部有序度增强,磁性能发生明显的转变(最大磁导率和最小饱和磁化强度)。能量和热活化能。此外,SPCJA处理可以显着改善熔体萃取丝的GMI性能。在5MHz时,GMI比[ΔZ/ Z0] max为166.07%,场响应灵敏度ξmax为413.76%/ Oe,是铸线的2.25倍和1.73倍。因此,与AC退火线相比,SPCJA型焊丝在5MHz〜10MHz处具有改进的GMI和磁性能,更适合在低施加频率和相对低工作磁场下工作的GMI传感器应用。

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