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Effect of nanocrystallization on Giant magnetoimpedance effect of microwires

机译:纳米晶化对微丝巨磁阻抗效应的影响

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We studied GMI effect and magnetic properties of Finemet-type FeCuNbSiB microwires. We observed that GMI magnetic field and frequency dependences and magnetic softness of composite 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. High GMI effect has been observed in as-prepared Fe-rich and heat treated microwires with nanocrystalline structure.
机译:我们研究了Finemet型FeCuNbSiB微丝的GMI效应和磁性能。我们观察到,泰勒-乌利托夫斯基(Taylor-Ulitovski)技术生产的复合微丝的GMI磁场和频率依赖性以及磁柔软度可以通过控制制备的FeCuNbSiB微丝的磁弹性各向异性,或者通过热处理或改变制造条件来控制其结构。在制备的具有纳米晶结构的富铁和热处理微线中观察到了高GMI效应。

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