Abstract:
The Fe
75.9Cu
1Si
13B
8Nb
1.5Mo
0.5Dy
0.1 alloy iron core is designed on the basis of the Finemet alloy FeSiNbBCu series to study the soft magnetic properties of the core. The results show that the commercial amorphous alloy ribbons Fe
75.9Cu
1Si
13B
8Nb
1.5Mo
0.5Dy
0.1 has complete amorphous structure in as-cast state and the α-Fe nanocrystalline phase precipitates on the amorphous matrix after vacuum annealing. The Fe
75.9Cu
1Si
13B
8Nb
1.5Mo
0.5Dy
0.1 alloy has high Δ
Tx value(192 K) and good thermal stability, which can better control the formation of nanocrystalline structure. The transverse magnetic field annealing can greatly increase the
μe of the material and reduce the
Ps, which is more significant for the ribbons. The optimum annealing process of the Fe
75.9Cu
1Si
13B
8Nb
1.5Mo
0.5Dy
0.1 alloy is that the transverse magnetic field of 0.10 T is applied and the temperature is kept at 833 K for 30 min. And the best saturation magnetic induction (
Bs) is 1.39 T, for
Hc is 4.6 A/m,
μe=2.5×10
4 (1 kHz) and 1.52×10
4 (100 kHz). This material has potential application value considering the tendency of electronic component manufacture towards high frequency and miniaturization.