Literature DB >> 32069829

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

Katarzyna Błoch1, Marcin Nabiałek1, Przemysław Postawa2, Andrei Victor Sandu3, Agata Śliwa4, Bartłomiej Jeż1.   

Abstract

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.

Entities:  

Keywords:  Kronmüllertheory; bulk amorphous materials; coercive field; curie temperature

Year:  2020        PMID: 32069829     DOI: 10.3390/ma13040846

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  1 in total

1.  Investigation of Mechanical and Magnetic Properties of Co-Based Amorphous Powders Obtained by Atomization.

Authors:  Anna Kuś; Wirginia Pilarczyk; Aleksandra Małachowska; Andrzej Ambroziak; Piotr Gębara
Journal:  Materials (Basel)       Date:  2021-11-30       Impact factor: 3.623

  1 in total

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