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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural and magnetic transformations in amorphous ferromagnetic microwires during thermomagnetic treatment under conditions of directional crystallization
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Structural and magnetic transformations in amorphous ferromagnetic microwires during thermomagnetic treatment under conditions of directional crystallization

机译:在定向结晶条件下热磁性处理期间无定形铁磁微线的结构和磁性变换

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摘要

As produced glass-coated ferromagnetic microwires typically have an amorphous state and demonstrate ultra-soft magnetic properties. For many applications, microwires with strong hard magnetic properties are of interest. A giant increase in coercivity has been recently reported for microwires subjected to directed crystallization. This paper confirms the coercivity increase up to 42 kA/m for wires of composition Fe4.3Co67.7Si11B14Cr3 after magnetic-field assistant directed crystallization. To understand the effect of the directional crystallization on wire magnetic properties and to develop the reliable annealing technology the structural and mechanical transformation occurring during various stages of the annealing processes were investigated. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于所生产的玻璃涂覆的铁磁微射线通常具有非晶态并证明超软磁性。 对于许多应用,具有强硬磁性的微线是感兴趣的。 最近据报道,矫顽力的巨大增加用于对定向结晶的微线。 本文证实磁场辅助指向结晶后的组合物Fe4.3CO67.7SI11B14CR3电线的矫顽力增加到42ka / m。 为了了解定向结晶对线磁性的影响并开发可靠的退火技术,研究了退火过程的各个阶段发生的结构和机械变换。 (c)2016 Elsevier B.v.保留所有权利。

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