Effect of yttrium substitution on magnetic properties and microstructure of Nd-Y-Fe-B nanocomposite magnets
来源期刊:Journal of Rare Earths2010年第2期
论文作者:陈治安 罗骥 隋延力 郭志猛
文章页码:277 - 281
摘 要:The phase evolution,microstructure and magnetic properties of Nd9-xYxFe72Ti2Zr2B15(x=0,0.5,1,2) nanocomposite ribbons were investigated.It was found that substitution of Y enhanced glass forming ability of the over-quenched ribbons and stabilized the amorphous phase during post annealing treatment.Appropriate content of Y substitution effectively refined the microstructure and enhanced the remanence of the annealed samples.The residual amorphous intergranular phase in the annealed sample improved the squareness of loops,resulting in enhanced maximum energy product.The optimum annealing treatment significantly improved magnetic properties of the Y substituted ribbons.Best magnetic properties,Jr=0.78 T,Hci=923.4 kA/m,(BH)max=98.5 kJ/m3 were obtained from Nd8YFe72Ti2Zr2B15 ribbon spun at Vs =4 m/s,and annealed at 700 °C for 10 min.
陈治安1,罗骥1,隋延力2,郭志猛1
1. Institute of Powder Metallurgy,University of Science and Technology Beijing2. State Key Laboratory for Advanced Metals and Materials,University of Science and Technology Beijing
摘 要:The phase evolution,microstructure and magnetic properties of Nd9-xYxFe72Ti2Zr2B15(x=0,0.5,1,2) nanocomposite ribbons were investigated.It was found that substitution of Y enhanced glass forming ability of the over-quenched ribbons and stabilized the amorphous phase during post annealing treatment.Appropriate content of Y substitution effectively refined the microstructure and enhanced the remanence of the annealed samples.The residual amorphous intergranular phase in the annealed sample improved the squareness of loops,resulting in enhanced maximum energy product.The optimum annealing treatment significantly improved magnetic properties of the Y substituted ribbons.Best magnetic properties,Jr=0.78 T,Hci=923.4 kA/m,(BH)max=98.5 kJ/m3 were obtained from Nd8YFe72Ti2Zr2B15 ribbon spun at Vs =4 m/s,and annealed at 700 °C for 10 min.
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