首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >NANOCRYSTALLIZATION OF FERROMAGNETIC CO-RICH AMORPHOUS ALLOYS AND MAGNETIC SOFTENING
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NANOCRYSTALLIZATION OF FERROMAGNETIC CO-RICH AMORPHOUS ALLOYS AND MAGNETIC SOFTENING

机译:铁磁富钴非晶合金的纳米晶化和磁软化

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Ultra-fine grain structures were obtained in soft Co-based amorphous alloys subjected to suitable heat treatments within a restricted range of temperatures which begins well below the conventional crystallization temperature, T-cr, of the alloy. These structures lead to superior soft magnetic properties and consist of magnetic nanocrystallites with an average grain size in the range 10-12 nm embedded within a residual ferromagnetic amorphous matrix. The results refer to amorphous ribbons of Vitrovac 6025, which were obtained by the single-roller quenching technique and had the nominal composition Co65Fe4Mo2B11.5Si16.5. With regard to the coercive field and the initial reversible permeability, the best softening nanocrystallization effects occurred in toroidal samples heat treated for about half an hour at around 500 degrees C. For the amorphous alloy, the nominal values of Te (the Curie temperature) and T-cr are 210 and 540 degrees C, respectively. The results are interpreted on the basis of the random anisotropy model generalized to two-magnetic-phase systems. [References: 21]
机译:在软Co基非晶合金中,在有限的温度范围内进行了适当的热处理,获得了超细晶粒结构,该温度范围开始远低于合金的常规结晶温度T-cr。这些结构导致优异的软磁性能,并由平均晶粒尺寸在10-12 nm范围内的磁性纳米微晶嵌入到残留的铁磁非晶基质中组成。结果涉及Vitrovac 6025的非晶带,该非晶带是通过单辊淬火技术获得的,其标称成分为Co65Fe4Mo2B11.5Si16.5。关于矫顽场和初始可逆磁导率,最佳的软化纳米晶化效果是在约500摄氏度下热处理约半小时的环形样品中产生的。对于非晶态合金,标称值为Te(居里温度)和T-cr分别为210和540摄氏度。在推广到两相系统的随机各向异性模型的基础上解释了结果。 [参考:21]

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