首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Influence of mechanical alloying on the particle size, microstructure and soft magnetic properties of coarse Fe-based amorphous powders prepared by gas atomization
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Influence of mechanical alloying on the particle size, microstructure and soft magnetic properties of coarse Fe-based amorphous powders prepared by gas atomization

机译:机械合金化对气体雾化制备的粗铁基无定形粉末粒径,微观结构和软磁特性的影响

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The aim of this work is to refine the particle size of the coarse Fe-based amorphous powders by ball milling process without destroying the amorphous characteristics, thermal stability and soft magnetic properties. The gas atomized Fe-based amorphous powders were sieved, and the powders larger than 75 ?m were selected as the raw materials. The effects of ball milling on the particle size, morphology, amorphous rate, thermal stability and soft magnetic properties of the Fe-based amorphous powders were systematically investigated. The results showed that the particle size of the Fe-based amorphous powders decreased as the ball milling time increased, and the mass median diameter (D50) of the powders was reduced by almost 80% after ball milling of 9 h compared with that of the initial powders (D50 reduced from 138.4 ?m to 24.22 ?m). The nanocrystallization and amorphization induced by the microstructural breakdown and intensified inter-diffusion of elements during the ball milling improved the amorphous rate of Fe-based powders. The ball milling reduced the saturation magnetization of the Fe-based amorphous powders, and had little effect on the coercivity. As a result, ball milling not only refined the particle size, but also improved the amorphous phase content of the Fe-based amorphous powders without changing the thermal stability and soft magnetic properties.
机译:本工作的目的是在不破坏非晶特性、热稳定性和软磁性能的情况下,通过球磨工艺细化粗粒铁基非晶粉末。对气相雾化的铁基非晶态粉末进行了筛分,其粒度大于75°?以m为原料。系统研究了球磨对铁基非晶粉末的粒度、形貌、非晶率、热稳定性和软磁性能的影响。结果表明,随着球磨时间的增加,铁基非晶粉末的粒径减小,球磨9h后,粉末的质量中值直径(D50)比初始粉末(D50从138.4?m减小到24.22?m)减小了近80%。球磨过程中微观结构的破坏和元素间的强化扩散导致的纳米化和非晶化提高了铁基粉末的非晶化率。球磨降低了铁基非晶粉末的饱和磁化强度,对矫顽力影响不大。结果表明,球磨不仅细化了铁基非晶粉末的粒径,而且在不改变热稳定性和软磁性能的情况下提高了非晶相含量。

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