Magnetic behaviour during the first crystallisation stages in Co-B amorphous alloys: a test of the exchange penetration through interfaces

A Hernando , A González , C Ballesteros , A Zern , D Fiorani , F Lucari , F D’Orazio
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引用次数: 3

Abstract

Two amorphous compositions of the Co-B system, which present quite different magnetic behaviour, have been studied in the as-cast state and after low temperature annealings. The Co80B20 amorphous alloy submitted to thermal treatments undergoes a primary crystallisation which transforms the material into a two phase system composed of nanocrystals of cobalt embedded in a Co-B amorphous matrix. The role of the cobalt grains on the magnetisation processes and the coercive field is analysed for temperature ranging from 77 to 300 K. It is found that the hardening effect of the grains diminishes on increasing the temperature. The large crystalline anisotropy of the Co grains as well as the magnetic state of the grain boundary which transmits the exchange interaction, are mainly responsible for the observed behaviour.

Co-B非晶合金第一次结晶阶段的磁性行为:通过界面交换渗透的测试
在铸态和低温退火条件下,研究了Co-B体系中两种具有完全不同磁性的非晶态组分。热处理后的Co80B20非晶态合金经历一次晶化,将材料转变为嵌套在Co-B非晶态基体中的钴纳米晶组成的两相体系。在77 ~ 300 K的温度范围内,分析了钴晶粒对磁化过程和矫顽力场的影响。结果表明,随着温度的升高,晶粒的硬化作用减弱。Co晶粒的大的晶体各向异性以及传递交换相互作用的晶界磁态是观察到的行为的主要原因。
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