首页> 外文期刊>Journal of Materials Science >Fabrication of bulk amorphous Fe67Co9.5Nd3Dy0.5B20 alloy by hot extrusion of ribbon and study of the magnetic properties
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Fabrication of bulk amorphous Fe67Co9.5Nd3Dy0.5B20 alloy by hot extrusion of ribbon and study of the magnetic properties

机译:带状热挤压制备块状非晶态Fe67Co9.5Nd3Dy0.5B20合金及其磁性

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摘要

We report on the preparation of bulk amorphous Fe67Co9.5Nd3Dy0.5B20 by hot extrusion of melt-spun ribbons. X-ray diffraction studies were performed to check the structure of the as-spun ribbons and the consolidated bulk specimens. Differential scanning calorimetry (DSC) analysis of the amorphous ribbons revealed that crystallization proceeds in two stages. The first crystallization step leads to the formation of soft magnetic alpha-(FeCo) and (FeCo)(3)B and the second crystallization step corresponds to the formation of the hard magnetic (NdDy)(2)(FeCo)(14)B phase. The hysteresis loop of the as-spun ribbon reveals soft magnetic properties which change to hard magnetic behavior with enhanced remanence after annealing at 973 K for 7 min. X-ray diffraction analysis proves the presence of both soft and hard magnetic phases in the annealed sample. The viscosity of the powder obtained from crushed ribbons was investigated by parallel plate rheometry, showing a distinct viscosity drop in the supercooled liquid region that allows for easy consolidation of the crushed ribbons. The hot extruded sample that was subsequently annealed at 973 K for 7 min exhibits good hard magnetic properties with coercivity H-c = 218 kA/m, saturation magnetization J(s) = 1.36 T, maximum energy product (BH)(max) = 91.3 kJ/m(3) stop and remanence B-r = 1.18 T (after demagnetization field correction), respectively. (c) 2006 Springer Science+ Business Media, Inc.
机译:我们报告通过熔融纺丝带的热挤压制备块状非晶态Fe67Co9.5Nd3Dy0.5B20。进行了X射线衍射研究,以检查初纺带和固结块状样品的结构。非晶带的差示扫描量热法(DSC)分析表明,结晶过程分为两个阶段。第一结晶步骤导致形成软磁性α-(FeCo)和(FeCo)(3)B,第二结晶步骤对应于形成硬磁性(NdDy)(2)(FeCo)(14)B相。在973 K退火7分钟后,初生带的磁滞回线显示出软磁特性,该磁特性变为硬磁行为,剩磁增强。 X射线衍射分析证明退火样品中同时存在软磁性相和硬磁性相。通过平行板流变法研究了从粉碎的条带获得的粉末的粘度,显示出在过冷液体区域中明显的粘度下降,这使得粉碎的条带易于固结。随后在973 K退火7分钟的热挤压样品表现出良好的硬磁性能,矫顽力Hc = 218 kA / m,饱和磁化强度J(s)= 1.36 T,最大能量乘积(BH)(max)= 91.3 kJ / m(3)停止和剩磁Br = 1.18 T(在退磁场校正后)。 (c)2006年Springer Science + Business Media,Inc.

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