Surface crystallization in ferromagnetic amorphous ribbons produces a perpendicular magnetic anisotropy, with consequent improvement of some magnetic properties. The development of a crystalline phase in amorphous Fe78B14Si8 has been checked by means of different techniques on both surfaces of the ribbons. The effect of thermal treatments on power losses has been determined. Isothermal measurements of the power losses show a minimum displaced towards low times at high annealing temperatures. A more complete crystallization process produces an increase in losses and a general deterioration of soft magnetic properties. The effect of partial crystallization in the amorphous matrix on the power losses is discussed in terms of the current models.

Magnetic-properties of Partially Crystallized Fe78b14si8 Amorphous-alloys / M., Baricco; F., Vinai; Allia, PAOLO MARIA EUGENIO ICILIO; C., Antonione. - In: PHILOSOPHICAL MAGAZINE. B. PHYSICS OF CONDENSED MATTER. STRUCTURAL, ELECTRONIC, OPTICAL AND MAGNETIC PROPERTIES. - ISSN 0958-6644. - 61:4(1990), pp. 579-586. [10.1080/13642819008219295]

Magnetic-properties of Partially Crystallized Fe78b14si8 Amorphous-alloys

ALLIA, PAOLO MARIA EUGENIO ICILIO;
1990

Abstract

Surface crystallization in ferromagnetic amorphous ribbons produces a perpendicular magnetic anisotropy, with consequent improvement of some magnetic properties. The development of a crystalline phase in amorphous Fe78B14Si8 has been checked by means of different techniques on both surfaces of the ribbons. The effect of thermal treatments on power losses has been determined. Isothermal measurements of the power losses show a minimum displaced towards low times at high annealing temperatures. A more complete crystallization process produces an increase in losses and a general deterioration of soft magnetic properties. The effect of partial crystallization in the amorphous matrix on the power losses is discussed in terms of the current models.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2498147
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