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Fabrication and magnetic properties of Cu50(Fe69Si10B16C5)50 thin microwires
Institution:1. Dpto. Física de Materiales, Fac. Quimicas, Universidad del Pais Vasco, 20009 San Sebastian, Spain;3. Magnetic and Cryoelectronic Systems Ltd., Bozhenko str., 4/1, Moscow 121351, Russia;4. Dpto. Fı´sica Aplicada I, EUPDS, UPV/EHU, Plaza Europa 1, San Sebastián 20018, Spain;5. Instituto de Fı´sica ‘Gleb Wataghin’, Univerdsidade Estatal de Campinas, Sao Paolo, Brazil
Abstract:In this work, we study the granular samples of mixed Cu50(Fe69Si10B16C5)50 composition where half of alloy composition is commonly used amorphous soft magnetic material and the other half-Cu. Glass covered Cu50(Fe69Si10B16C5)50 microwires were produced and their magnetic properties were studied. The evolution of the structure after the annealing was observed using X-ray diffraction with Cu Kα radiation. The as-prepared Cu50(Fe69Si10B16C5)50 microwires present a relatively low coercivity of about 5 Oe and exhibit non-regular hysteresis loop typical behavior for two-phases systems. Annealing resulted in magnetic hardening of the samples with coercivity of about 50 Oe. The variation of the coercivity and remanent magnetization with the temperature at 5–300 K were obtained from those curves. Temperature dependence of magnetization at 5–300 K exhibits significant difference between field-cooled and zero-field cooled behaviour. Observed dependences interpreted in terms of two-phase structure of as-prepared samples and evolution of the structure under annealing.
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