TY - JOUR
T1 - Coercivity enhancement of NdFeB sintered magnets by low melting point Dy32.5Fe62Cu5.5 alloy modification
AU - Liang, Liping
AU - Ma, Tianyu
AU - Zhang, Pei
AU - Jin, Jiaying
AU - Yan, Mi
PY - 2014/4
Y1 - 2014/4
N2 - To improve coercivity without sacrificing other magnetic performance of NdFeB sintered magnets, a low melting point Dy32.5Fe 62Cu5.5 alloy was introduced as an intergranular additive. Magnetic properties and microstructure of the magnets with different Dy 32.5Fe62Cu5.5 contents were studied. At the optimum addition of 3 wt%, coercivity Hcj was enhanced from 12.7 to 15.2 kOe, the maximum magnetic energy product (BH)max was simultaneously increased from 46.6 to 47.8 MG Oe, accompanied by a slight reduction in remanence Br. Further investigation on microstructure and grain boundary composition indicated that the enhanced Hcj and (BH)max could be attributed to the refined and uniform 2:14:1 phase grains, continuous grain boundaries and a (Nd,Dy)2Fe14B hardening shell surrounding the 2:14:1 phase grains.
AB - To improve coercivity without sacrificing other magnetic performance of NdFeB sintered magnets, a low melting point Dy32.5Fe 62Cu5.5 alloy was introduced as an intergranular additive. Magnetic properties and microstructure of the magnets with different Dy 32.5Fe62Cu5.5 contents were studied. At the optimum addition of 3 wt%, coercivity Hcj was enhanced from 12.7 to 15.2 kOe, the maximum magnetic energy product (BH)max was simultaneously increased from 46.6 to 47.8 MG Oe, accompanied by a slight reduction in remanence Br. Further investigation on microstructure and grain boundary composition indicated that the enhanced Hcj and (BH)max could be attributed to the refined and uniform 2:14:1 phase grains, continuous grain boundaries and a (Nd,Dy)2Fe14B hardening shell surrounding the 2:14:1 phase grains.
KW - Coercivity
KW - Intergranular addition
KW - Low melting point alloy
KW - Sintered NdFeB magnet
UR - https://www.scopus.com/pages/publications/84891588072
U2 - 10.1016/j.jmmm.2013.11.007
DO - 10.1016/j.jmmm.2013.11.007
M3 - 文章
AN - SCOPUS:84891588072
SN - 0304-8853
VL - 355
SP - 131
EP - 135
JO - Journal of Magnetism and Magnetic Materials
JF - Journal of Magnetism and Magnetic Materials
ER -