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Magnetic Properties and Thermal Stability of Sintered Nd-Fe-B Magnet with Dy-Ni Additive 被引量:1

Magnetic Properties and Thermal Stability of Sintered Nd-Fe-B Magnet with Dy-Ni Additive
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摘要 A sintered(Nd_(0.8)Pr_(0.2))_(30.7)FebalB_(0.98)Cu_(0.2) magnet with 3% intergranular Dy_(85)Ni_(15) additive is prepared to study the magnetic properties and thermal stability of the Nd-Fe-B magnet. The results show that the magnet with or without additive obtains its optimum comprehensive magnetic properties at the sintering temperature of 1 030 ℃ and 1 040 ℃, respectively. The maximum coercivity of the magnet with additive reaches 15.16 k Oe, while that of the magnet without additive is just 11.88 k Oe. Further investigation on microstructure indicates that the grains of the magnet with additive form a modified "core shell" structure. Adding Dy_(85)Ni_(15) can significantly enhance the coercivity of Nd-Fe-B magnet and thus decrease its coercivity temperature coefficient. A sintered(Nd_(0.8)Pr_(0.2))_(30.7)FebalB_(0.98)Cu_(0.2) magnet with 3% intergranular Dy_(85)Ni_(15) additive is prepared to study the magnetic properties and thermal stability of the Nd-Fe-B magnet. The results show that the magnet with or without additive obtains its optimum comprehensive magnetic properties at the sintering temperature of 1 030 ℃ and 1 040 ℃, respectively. The maximum coercivity of the magnet with additive reaches 15.16 k Oe, while that of the magnet without additive is just 11.88 k Oe. Further investigation on microstructure indicates that the grains of the magnet with additive form a modified "core shell" structure. Adding Dy_(85)Ni_(15) can significantly enhance the coercivity of Nd-Fe-B magnet and thus decrease its coercivity temperature coefficient.
出处 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2016年第4期339-343,共5页 武汉大学学报(自然科学英文版)
基金 Supported by the National Natural Science Foundation of China(51172168,51072139) the National Basic Research Program of China(973 Program)(2014DFB50130,2011CB612304)
关键词 rare earth magnet sintering temperature thermal stability coercivity rare earth magnet sintering temperature thermal stability coercivity
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  • 1WECKERJ,CERVAH,KUHRTC,etal.Microstruc tureandmagneticpropertiesofmechanicallyalloyedanisotropicNdFeB[].J ApplPhys.1994
  • 2SAGAWAM,HIROSAWAS,YAMAMOTOH,etal.NdFeBpermanentmagnetmaterials[].JapnJ Ap plPhys.1987

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