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金属学报  1995, Vol. 31 Issue (15): 129-134    
  论文 本期目录 | 过刊浏览 |
Nd_xB_(20-x)Fe_(78)Cu_(0.3)Co_(1.7)系非晶合金初期晶化对磁性的影响
何正明;卢国荣;苏昉;文峰;沈保根
上海大学;中国科技大学;中国科学院物理研究所磁学开放实验室
EFFECT OF INITIAL CRYSTALLIZATION OF Nd_xB_(20-x)Fe_(78)Cu_(0.3)Co_(1.7) AMORPHOUS ALLOYS ON MAGNETIC PROPERTIES
HE Zhengming (Shanghai Universitiy. Shanghai 200072; Structure Research Laboratory; University; of Science and Technology of China; Hefei) LU Guorong; SU Fang; WEN Feng (University of Science and Technology of China; Hefei 230026). SHEN Baogen (Magnetism Laboratory; Institute of Physics; Chinese Academy of Sciences; Beijing 100080)
引用本文:

何正明;卢国荣;苏昉;文峰;沈保根. Nd_xB_(20-x)Fe_(78)Cu_(0.3)Co_(1.7)系非晶合金初期晶化对磁性的影响[J]. 金属学报, 1995, 31(15): 129-134.
, , , , . EFFECT OF INITIAL CRYSTALLIZATION OF Nd_xB_(20-x)Fe_(78)Cu_(0.3)Co_(1.7) AMORPHOUS ALLOYS ON MAGNETIC PROPERTIES[J]. Acta Metall Sin, 1995, 31(15): 129-134.

全文: PDF(442 KB)  
摘要: 本文测量了经不同温度和时间真空退火的非晶合金带Nd_xB_(20-x)Fe_(78)Cu_(0.3)Co_(1.7)(x=0.1,2,3,4,5),在1kHz交流电下的磁化曲线,发现含少量Nd的非晶合金带在晶化温度附近真空退火后、起始导磁率减小,饱和场增大,使材料从软磁性向硬磁性转化;随着Nd含量的增加,这种转化重明显.X射线衍射透射电镜观察及电子衍射分析表明,材料在初期晶化时能析出颗粒大小为5-100nm的针状纳米晶,且随着Nd含量增加,针状纳米晶的数量增多,这一现象与材料磁性测量的结果吻合.
关键词 非晶合金快淬永磁纳米晶    
Abstract:The 1 kHz A.C.magnetic curves of Nd-xB_(20-x)Fe_(78)Cu_(0.3)Co_(1.7) amorphous alloys (x=0,1,2,3,4,5) melted spun ribbons specimens annealed at 430, 450,480 and 500℃ under vacuum for 0.5 or 1 h respectively were measured. With a minor Nd content the initial permeabilities of the amorphous alloys ribbons annealed near the crystallization temperature under vacuum decrease and the saturation magnetic fields increase. The materials may change from soft into hard magnetism and it is more remarkable with increasing of Nd content. Observations under X-ray or electron diffraction and TEM revealed that the nanocrystallites in size of 5-100 nm may precipitate in needle-shape and the more the Nd contains the more the quantity of them may be. These are in agreement with the results measured. Furthermore.a discussion was also made.
Key words amorphous alloy    rapidly quenched permanent magnet    nanocrystallite
    
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