Title :
Microstructure, Magnetic Properties, and Electrical Resistivity of Nd-Fe-B/NdF3 Composite Magnets
Author :
Liyun Zheng ; Dawei Zheng ; Honghui Xin ; Wei Li ; Minggang Zhu ; Haibo Feng ; Wei Sun
Author_Institution :
Sch. of Equip. Manuf., Hebei Univ. of Eng., Handan, China
Abstract :
Nd-Fe-B/NdF3 composite magnets have been prepared by two different mixing methods: 1) mixing in agate mortar without lubricant and 2) milling in a planetary ball mill with heptane. The comparison of two mixing methods and their influences on the electrical and magnetic properties of the Nd-Fe-B/NdF3 composite magnets have been investigated. The results show that the microstructures of the composite magnets fabricated by mixing in agate mortar without lubricant were not uniform. But method 1 contributed a better magnetic property compared with method 2. The electrical resistivities of the Nd-Fe-B/NdF3 composite magnets fabricated by method 1 in the direction parallel to the pressing direction increased with increasing NdF3 amounts. The remanence and maximum energy products of the Nd-Fe-B/NdF3 composite magnets prepared by method 1 reduced to some extent with increasing NdF3 amount. Method 2 contributed to obtaining a more homogenous microstructure. Method 2 has little influence on the electrical resistivity when the amounts of NdF3 were kept constant. But, it is detrimental to the magnetic properties of the composite magnets.
Keywords :
ball milling; boron alloys; coercive force; iron alloys; magnetoresistance; mixing; neodymium alloys; neodymium compounds; particle reinforced composites; pressing; NdF3 amounts; NdFeB-NdF3; agate mortar; composite magnets; electrical properties; electrical resistivity; homogenous microstructure; magnetic properties; maximum energy products; mixing methods; planetary ball milling; pressing direction; Magnetic properties; Magnetic separation; Magnetosphere; Perpendicular magnetic anisotropy; Powders; Resistance; Demagnetization; electrical resistivity measurement; fabrication; magnetic properties;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2014.2323965