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The Process of Magnetizing FeNbYHfB Bulk Amorphous Alloys in Strong Magnetic Fields

机译:FeNbYHfB大块非晶态合金在强磁场中的磁化过程

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摘要

The structure of amorphous alloys still has not been described satisfactorily due to the lack of direct methods for observing structural defects. The magnetizing process of amorphous alloys is closely related to its disordered structure. The sensitivity of the magnetization vector to any heterogeneity allows indirect assessment of the structure of amorphous ferromagnetic alloys. In strong magnetic fields, the magnetization process involves the rotation of a magnetization vector around point and line defects. Based on analysis of primary magnetization curves, it is possible to identify the type of these defects. This paper presents the results of research into the magnetization process of amorphous alloys that are based on iron, in the areas called the approach to ferromagnetic saturation and the Holstein–Primakoff para-process. The structure of a range of specially produced materials was examined using X-ray diffraction. Primary magnetization curves were measured over the range of 0 to 2 T. The process of magnetizing all of the tested alloys was associated with the presence of linear defects, satisfying the relationship D < 1 . It was found that the addition of yttrium, at the expense of hafnium, impedes the magnetization process. The alloy with an atomic content of Y = 10% was characterized by the highest saturation magnetization value and the lowest value of the D parameter, which may indicate the occurrence of antiferromagnetic ordering in certain regions of this alloy sample.
机译:由于缺乏观察结构缺陷的直接方法,非晶合金的结构仍未令人满意地描述。非晶态合金的磁化过程与其无序结构密切相关。磁化矢量对任何异质性的敏感性都可以间接评估非晶态铁磁合金的结构。在强磁场中,磁化过程涉及磁化矢量围绕点和线缺陷的旋转。基于对初级磁化曲线的分析,可以确定这些缺陷的类型。本文介绍了基于铁的非晶态合金磁化过程的研究结果,这些领域称为铁磁饱和法和Holstein-Primakoff副过程。使用X射线衍射检查了一系列特殊材料的结构。在0至2 T的范围内测量了一次磁化曲线。磁化所有测试合金的过程与线性缺陷的存在相关,满足关系D <1。发现以钇为代价的钇的添加阻碍了磁化过程。原子含量为Y = 10%的合金具有最高饱和磁化强度值和D参数最低值的特征,这可能表明在该合金样品的某些区域出现了反铁磁有序。

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