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Ultra-soft magnetic Co-Fe-B-Si-Nb amorphous alloys for high frequency power applications
Author(s) -
Karl Ackland,
Ansar Masood,
Santosh Kulkarni,
Plamen Stamenov
Publication year - 2018
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.5007707
Subject(s) - coercivity , materials science , amorphous metal , melt spinning , amorphous solid , alloy , magnetization , metallurgy , annealing (glass) , curie temperature , amorphous metal transformer , composite material , nuclear magnetic resonance , condensed matter physics , ferromagnetism , spinning , magnetic field , crystallography , chemistry , physics , quantum mechanics
With the continuous shrinkage of the footprint of inductors and transformers in modern power supplies, higher flux, while still low-loss metallic replacements of traditional ferrite materials are becoming an intriguing alternative. One candidate replacement strategy is based on amorphous CoFeBSi soft-magnetic alloys, in their metallic glass form. Here the structural and magnetic properties of two different families of CoFeBSi-based soft magnetic alloys, prepared by arc-melting and subsequent melt spinning (rapid quenching) are presented, targeting potential applications at effective frequencies of 100 kHz and beyond. The nominal alloy compositions are Co67Fe4B11Si16Mo2 representing commercial Vitrovac and Co72-xFexB28-y (where B includes non-magnetic elements such as Boron, Silicon etc. x varies between 4 and 5 % and y is varied from 0 to 2 %) denoted Alloy #1 and prepared as a possible higher performance alternative, i.e. lower power loss and lower coercivity, to commercial Vitrovac. Room temperature mag...

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