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The Magnetisation Process of Bulk Amorphous Alloys: Fe36+xCo36−xY8B20 Where: x = 0 3 7 or 12

机译:大块非晶合金的磁化过程:Fe36 + xCo36−xY8B20其中:x = 0、3、7或12

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摘要

Amorphous Fe- and Co-based alloys possess so-called soft magnetic properties. Due to the high sensitivity of the magnetisation vector to any inhomogeneities occurring in these alloys, it is possible to assess indirectly structural defects. This paper presents the results of research on the structure and magnetic properties of bulk amorphous alloys with a high content of Fe and Co. The magnetic properties of the produced alloys were tested using a Faraday magnetic balance and a vibrating sample magnetometer (VSM). Analysis of the magnetisation process in the region known as the approach to ferromagnetic saturation was carried out in accordance with Kronmüller’s theorem. Magnetisation in magnetic fields of greater than the effective anisotropy field (Holstein-Primakoff para-process) was also studied. For the studied alloys, it was found that an increase in Fe content causesan increase in saturation magnetisation, and decreases in the values of the coercive field and thespin-wave stiffness parameter, Dspf. A relationship was observed between the width of the amorphous halo and the value of the coercive field. However, no significant links were found between either the presence of structural defects and the properties of these materials, or between the Co content and the value of the coercive field.
机译:非晶态的铁基和钴基合金具有所谓的软磁性能。由于磁化矢量对这些合金中发生的任何不均匀性的高度敏感性,因此可以间接评估结构缺陷。本文介绍了高铁和钴含量的块状非晶合金的结构和磁性能的研究结果。使用法拉第磁天平和振动样品磁力计(VSM)测试了所生产合金的磁性能。根据克伦穆勒定理,对称为铁磁饱和方法的区域中的磁化过程进行了分析。还研究了大于有效各向异性场(Holstein-Primakoff对位过程)的磁场中的磁化强度。对于所研究的合金,发现Fe含量的增加会导致饱和磁化强度的增加,而矫顽场的值和自旋波刚度参数Dspf的减小。观察到无定形晕的宽度和矫顽场的值之间的关系。然而,在结构缺陷的存在与这些材料的性质之间,或者在Co含量与矫顽场的值之间,没有发现明显的联系。

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