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硬磁铁氧体磁取向技术 被引量:1
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作者 赖武铨 易浚 《广西大学学报(自然科学版)》 CAS CSCD 1989年第3期59-63,共5页
本文讨论制造硬磁材料的重要技术——磁取向技术。文章从描述物质的磁畴结构入手,联系到磁性材料实际的生产工艺,对磁取向方法进行了广泛的述评。
关键词 磁取向技术 材料
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Microstructure characteristics and effect of grain orientation on magnetic properties of Fe_(63)Co_(32)Gd_5 alloy ribbons
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作者 姚文静 王楠 LEE Je-hyun 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2014-2019,共6页
By using the melt spinning techniques, the Fe63Co32Gd5 alloy ribbons with 15-50 m in thickness and 3-7 mm in width were prepared at the wheel speeds of 15, 20, 25 and 35 m/s. The rapid solidification microstructures w... By using the melt spinning techniques, the Fe63Co32Gd5 alloy ribbons with 15-50 m in thickness and 3-7 mm in width were prepared at the wheel speeds of 15, 20, 25 and 35 m/s. The rapid solidification microstructures were characterized by three layers, the middle layer of which reaches 80% thickness and forms the column grain of(Fe,Co) solid with Gd solution. Grain refinement takes place with the increase of the wheel speed. And after 0.5 h heat treatment at 823 K, the ribbon thickness becomes larger and the middle layer of column grain is very orderly perpendicular to the ribbon plane. The coercivity of quenched and annealed Fe63Co32Gd5 ribbons both have the inflection point at the wheel speed of 20 m/s, and the tendency is declining. The heat treatment processing makes the coercivity become lower by improving the order of(Fe,Co)17Gd2 compound. The saturation magnetization of quenched ribbons increases with the enhancement of wheel speed, whereas that of annealed ones decreases firstly and then increases. The minimum coercivity is 5.30×103 A/m and the maximum saturation magnetization is 163.62 A·m2/kg, which is obtained in the conditions of the wheel speed of 35 m/s and 0.5 h heat treatment at the temperature of 823 K. 展开更多
关键词 Fe-Co-Gd alloy ribbon rapid solidification phase composition magnetic properties
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