首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Composition design of high B-s Fe-based amorphous alloys with good amorphous-forming ability
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Composition design of high B-s Fe-based amorphous alloys with good amorphous-forming ability

机译:具有良好非晶形成能力的高B-s Fe基非晶合金的成分设计

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The composition design rules for high B-s amorphous alloys are introduced from the binary phase diagram, atomic size and the effects of amorphous forming elements on magnetic performance and ribbon manufacturability. The effects of metalloid elements on amorphous-forming ability and magnetic properties as well as origin of the excellent properties for high Fe content Fe-83(Si,B,P,C)(17) amorphous alloys are explored. Based on the similar Fe content of Fe B, Fe P and Fe C eutectic alloys, the alloy systems with the combination of Fe, B, P, C and Si are beneficial to the achievement of high B-s and amorphous-forming ability. With the addition of Si, P and C in Fe83B17, the amorphous-forming ability and the soft-magnetic properties improve clearly. The critical wheel speed decrease from 54 m/s to 12 m/s and the maximum thickness increase to 76 mu m. The improvement of the amorphous-forming ability is discussed in term of the competition effect and the eutectic theory. (C) 2015 Elsevier B.V. All rights reserved.
机译:从二元相图,原子尺寸以及非晶形成元素对磁性能和薄带可制造性的影响,介绍了高B-s非晶合金的成分设计规则。探索了准金属元素对非晶形成能力和磁性能的影响,以及高铁含量的Fe-83(Si,B,P,C)(17)非晶合金优异性能的起因。基于Fe B,Fe P和Fe C共晶合金中相似的Fe含量,Fe,B,P,C和Si组合的合金体系有利于实现高B-s和非晶形成能力。通过在Fe83B17中添加Si,P和C,非晶形成能力和软磁性能明显提高。临界车轮速度从54 m / s降低到12 m / s,最大厚度增加到76μm。从竞争效应和共晶理论的角度讨论了非晶形成能力的提高。 (C)2015 Elsevier B.V.保留所有权利。

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