Amorphization, Crystallization, and Magnetic Properties of Melt-Spun Alloys

Liya Li, W. Xie
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引用次数: 1

Abstract

Effects of Cr3C2 content and wheel surface speed on the amorphous formation ability and magnetic properties have been investigated for melt-spun () alloys. Ribbon melt-spun at lower wheel speed (30 m/s) has composite structure composed of mostly SmCo7, a small amount of Sm2Co17, and residual amorphous phases. The grain size of SmCo7 phase decreases with the increase of Cr3C2 content . When melt spinning at 40 m/s, alloys can be obtained in the amorphous state for with intrinsic coercive of the order of 40–70 Oe. DSC analysis reveals that SmCo7 phase first precipitates from the amorphous matrix at 650∘C, followed by the crystallization of Sm2Co17 phase at 770∘C. Optimal coercivity of 7.98 kOe and remanent magnetization of 55.05 emu/g have been realized in magnet subjected to melt spinning at 40 m/s and annealing at 650∘C for 5 min. The domain structure of the annealed ribbon is composed of interaction domains typically 100–400 nm in size, which indicates the presence of a strong exchange coupling between the grains.
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熔融纺丝合金的非晶化、结晶和磁性能
研究了Cr3C2含量和车轮表面转速对熔融纺丝合金非晶态形成能力和磁性能的影响。在较低转速下(30 m/s)熔纺的带状材料具有以SmCo7为主、少量Sm2Co17和残余非晶相组成的复合结构。随着Cr3C2含量的增加,SmCo7相的晶粒尺寸减小。当熔体以40m /s的速度旋转时,可以得到非晶态的合金,其本质矫顽力为40 ~ 70oe。DSC分析显示SmCo7相在650°C时首先从无定形基体中析出,然后在770°C时Sm2Co17相结晶。在40 m/s熔融纺丝和650°C退火5 min的条件下,磁体的最佳矫顽力为7.98 ke,剩余磁化强度为55.05 emu/g。退火带的畴结构由100 ~ 400 nm大小的相互作用畴组成,表明晶粒之间存在强烈的交换耦合。
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