Abstract:
Nanocrystalline alloys Fe
74Cu
1Nb
3Si
15B
7 and Fe
81Cu
6Nb
1Si
7B
5 were annealed at 570 ℃and 520 ℃, respectively, then they were bonded with acrylate adhesive to prepare multilayer magnetic sheet composites.The effect of different composition on the magnetic properties of nanocrystalline magnetic sheets was studied.The results show that the loss value P
cm of Fe
74Cu
1Nb
3Si
15B
7 in the range of 100-600 mT(f is 100 kHz)is significantly lower than that of Fe
81Cu
6Nb
1Si
7B
5.However, when the frequency is above 1.8 MHz, Fe
81Cu
6Nb
1Si
7B
5 imaginary part permeability μ''is lower, and Fe
81Cu
6Nb
1Si
7B
5 exhibits better characteristics at high frequency.Under the same current, the DC-bias performance of Fe
81Cu
6Nb
1Si
7B
5 is relatively higher.In addition, with the increasing times of magnetic fragmentation, both the real part permeability μ' and attenuation of the two alloys decrease with the frequency increasing.In the frequency range of 100 kHz-30 MHz, the corresponding frequency f of the maximum imaginary part permeability μ'' of the two alloys shifts to high frequency with the increase of magnetic fragmentation times.