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Effect of Nanocrystallization on Magnetic Properties and GMI Effect of Microwires

机译:纳米晶化对微丝磁性能和GMI效应的影响

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摘要

We studied giant magnetoimpedance (GMI) effect and magnetic properties of FINEMET-type FeCuNbSiB microwires. We observed that the GMI effect and magnetic softness of glass-coated microwires produced by the Taylor–Ulitovski technique can be tailored either controlling magnetoelastic anisotropy of as-prepared FeCuNbSiB microwires or controlling their structure by heat treatment or changing the fabrication conditions. We observed considerable magnetic softening of studied microwires after annealing. This magnetic softening correlates with the devitrification of amorphous samples. Amorphous microwires exhibited low GMI effect (GMI ratio below 5%). Considerable enhancement of the GMI effect (GMI ratio up to 100%) has been observed in heat treated microwires with nanocrystalline structure. Some of as-prepared Fe-rich exhibited nanocrystalline structure and the GMI ratio up to 45%.
机译:我们研究了FINEMET型FeCuNbSiB微线的巨磁阻(GMI)效应和磁性能。我们观察到,通过控制泰勒-尤利托夫斯基技术制备的玻璃涂层微丝的GMI效应和磁软度,可以调整其制备后的FeCuNbSiB微丝的磁弹性各向异性或通过热处理或改变制造条件来控制其结构。我们观察到退火后研究的微丝有相当大的磁性软化。磁性软化与无定形样品的失透相关。非晶微丝表现出低的GMI效应(GMI比低于5%)。在具有纳米晶体结构的热处理微线中,已观察到GMI效应的显着增强(GMI比例高达100%)。一些准备好的富铁表现出纳米晶体结构,GMI比率高达45%。

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