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The Magnetic Properties and Effective Magnetic Anisotropy of Fe-Ni Ultrafine Particles

The Magnetic Properties and Effective Magnetic Anisotropy of Fe Ni Ultrafine Particles
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摘要 Fe 100- x Ni x alloys of ultrafine particle with the average grain size of about 10 nm were synthesized by mechanically alloying process. The samples were investigated by X ray diffraction and measurements of the saturation magnetization and coercivity force. Both b.c.c and f.c.c phase exist within a wide range for Fe 100- x Ni x , while x ≤45. The effective magnetic anisotropy K e was measured by applying the law of approach to saturation. The value of K e decreases with an increase of Ni content. It is noticed that the strain anisotropy makes a large contribution to the magnetic anisotropy. The estimation of grain size leads to the determination of the single domain critical size and domain wall energy. The exchange stiffness and exchange integral deduced from the relationship between the effective magnetic anisotropy and domain wall energy are in agreement with that calculated by other methods. Fe 100- x Ni x alloys of ultrafine particle with the average grain size of about 10 nm were synthesized by mechanically alloying process. The samples were investigated by X ray diffraction and measurements of the saturation magnetization and coercivity force. Both b.c.c and f.c.c phase exist within a wide range for Fe 100- x Ni x , while x ≤45. The effective magnetic anisotropy K e was measured by applying the law of approach to saturation. The value of K e decreases with an increase of Ni content. It is noticed that the strain anisotropy makes a large contribution to the magnetic anisotropy. The estimation of grain size leads to the determination of the single domain critical size and domain wall energy. The exchange stiffness and exchange integral deduced from the relationship between the effective magnetic anisotropy and domain wall energy are in agreement with that calculated by other methods.
出处 《Advances in Manufacturing》 2000年第2期155-158,共4页 先进制造进展(英文版)
基金 theScienceFoundationofShanghaiMunicipalCom missionofEducation!( 80 7965 )
关键词 mechanical alloying ultrafine particle effective magnetic anisotropy law of approach to saturation strain anisotropy mechanical alloying , ultrafine particle, effective magnetic anisotropy, law of approach to saturation, strain anisotropy
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