首页> 外文会议>International Symposium on Metastable, Mechanically Alloyed and Nanocrystalline Materials(ISMANAM 2004); 20040822-26; Sendai(JP) >Quasi-Dislocation Dipole-Type Defects and Low Coercivity of Fe-Based Soft Magnetic Glassy Alloys
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Quasi-Dislocation Dipole-Type Defects and Low Coercivity of Fe-Based Soft Magnetic Glassy Alloys

机译:铁基软磁玻璃态合金的准位错偶极子型缺陷和低矫顽力

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摘要

The density and the magnetization process of the melt-spun glassy Fe-(Al, Ga)-(P, C, B, Si) alloys have been investigated to clarify the origin of low coercivity (H_c) of the glassy alloys. The density differences (Δρ_c) between the crystalline and the amorphous phases of the glassy alloys are much smaller than that of the ordinary amorphous alloys. An analysis of the magnetization process based on the law of approach to ferromagnetic saturation reveals that quasi-dislocation dipole (QDD)-type defects, which are formed by agglomeration of vacancy-type point defects in planar regions, are the main sources of elastic stress and their size is nearly independent of the alloy system. Since H_c originates from elastic stress of QDDs is proportional (Δρ_c)~(1/2), the origin of the low H_c of the Fe-(Al, Ga)-(P, C, B, Si) glassy alloys is the low density of QDDs which corresponds to low density of the domain-wall pinning centers.
机译:研究了熔纺玻璃态Fe-(Al,Ga)-(P,C,B,Si)合金的密度和磁化过程,以阐明玻璃态合金低矫顽力(H_c)的来源。玻璃态合金的结晶相和非晶相之间的密度差(Δρ_c)比普通非晶态合金小得多。根据铁磁饱和度法则对磁化过程的分析表明,由平面区域中空位型点缺陷的聚集形成的准位错偶极(QDD)型缺陷是弹性应力的主要来源它们的尺寸几乎与合金体系无关。由于H_c来自QDDs的弹性应力是成比例的(Δρ_c)〜(1/2),因此Fe-(Al,Ga)-(P,C,B,Si)玻璃态合金的低H_c的起源较低QDD的密度对应于畴壁钉扎中心的低密度。

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