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EN
The process of inducing tranverse magnetic anisotropy in toroidal cores was investigated. Ribbon amorphousness was detrermined by the XRD method. Thermo-magnetic treatment was used to induce transverse magnetic anisotropy. The (Fe1-xCox)73.5Cu1Nb3Si13.5B9 cores containing various amounts of Co (from x=0 to 0.8) were subjected to heat treatment conducted at different temperatures Ta(763-823K) in an extremal magnetic field of 24 to 160 kA/m, perpendicular to the ribbon casting direction. The effect of the chemical composition, annealing temperature and magnetic field intensity on the induced transverse magnetic anisotropy was examined. Dynamic magnetic parameters of the cores (nano, Ps) were measured at the magnetizing field frequency ranging from 50 Hz to 50 kHz. The nanocrystalline cores made from the (Fe1-xCox)73.5Cu1Nb3Si13.5B9 ribbons (x=0.54; 0,8) were applied in a transformer for the 230 VAC/48 VDC rectifier, 400 W in power. The laboratory tests confirmed correct operation of these cores at the temperature of 473 K. It was also found that application of nanocrystalline cores enabled significant reduction of the transformer dimensions.
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