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Dependence of Effective Anisotropy on Grain Size in Nanocrystalline Nd_2Fe_(14)B Hard Magnetic Material 被引量:1

Dependence of Effective Anisotropy on Grain Size in Nanocrystalline Nd_2Fe_(14)B Hard Magnetic Material
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摘要 Taking nanocrystalline Nd_2Fe_(14)B as a typical sample, based on Herzer′s random anisotropy theory and the cubic grain model, the partial exchange-coupling interaction model was established and the dependence of effective anisotropy constant K_(eff) on grain size was investigated. Calculation results reveal that the exchange-coupling interaction enhances and the effective anisotropy of material K_(eff) decreases with the reduction of grain size. The variation of K_(eff) is basically the same as that of coercivity. The decrease of effective anisotropy is the main reason of the reduction of coercivity for nanocrystalline Nd_2Fe_(14)B permanent magnetic material. Taking nanocrystalline Nd_2Fe_(14)B as a typical sample, based on Herzer′s random anisotropy theory and the cubic grain model, the partial exchange-coupling interaction model was established and the dependence of effective anisotropy constant K_(eff) on grain size was investigated. Calculation results reveal that the exchange-coupling interaction enhances and the effective anisotropy of material K_(eff) decreases with the reduction of grain size. The variation of K_(eff) is basically the same as that of coercivity. The decrease of effective anisotropy is the main reason of the reduction of coercivity for nanocrystalline Nd_2Fe_(14)B permanent magnetic material.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第1期52-54,共3页 稀土学报(英文版)
基金 Project supported by National‘863’Project (2002AA324050 2002AA302602) and Natural Science Foundation of China(50371046) and Doctoral Foundation of China (20040422014)
关键词 metal materials effective anisotropy grain size exchange-coupling interaction COERCIVITY rare earths metal materials effective anisotropy grain size exchange-coupling interaction coercivity rare earths
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  • 1Gao youhui,Zhu Jinghan,Weng Yuqing et al.Domain structure in Fe-implanted Nd2Fe14B magnets, Appl[].Physics Letters.1999
  • 2Schmidts,H. R,Kronmiiler,H.Magnetization process in small ferromagnetic particles with inhomogeneous demagnetizing field and uniaxial anisotropy, J.Magen. Magen[].Mater.1994

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