Abstract

The effects of magnetic field annealing on soft magnetic properties for nanocrystalline (Fe0.5Co0.5)73.5Cu1Nb3-xMoxSi13.5B9 (x=1, 2, 3) alloys are investigated. The results show that the magnetic softness of alloys is improved by the magnetic field annealing. The effective magnetic anisotropy <K> increases due to the arising of uniaxial anisotropy Ku, which is induced by the applied magnetic field. The initial permeability μi is evidently enhanced by decreasing saturation magnetostriction λS, which is attributed to the preferred domain orientation in the process of magnetic field annealing. Furthermore, the optimal high-temperature magnetic softness is obtained for the magnetic annealed sample with x=3, the μi of which maintains a relative higher value above 650°C.

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