Enhancement of glass-forming ability of Fe-based bulk metallic glasses with high saturation magnetic flux density
Author(s) -
Mingxiao Zhang,
Anding Wang,
Baolong Shen
Publication year - 2012
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4733340
Subject(s) - supercooling , materials science , coercivity , amorphous metal , eutectic system , saturation (graph theory) , thermal stability , alloy , casting , permeability (electromagnetism) , metallurgy , analytical chemistry (journal) , condensed matter physics , thermodynamics , chemical engineering , chemistry , biochemistry , physics , mathematics , combinatorics , membrane , engineering , chromatography
The effects of substituting Fe with Ni on thermal properties, glass-forming ability (GFA) and magnetic properties of Fe76-xNixMo3.5P10C4B4Si2.5 (x = 0−30 at.%) alloys were investigated in detail. The breadth of the supercooled liquid region was found to gradually increase from 42 to 55 K with increasing Ni content to 30 at.%. When x = 5 at.%, the alloy composition approached a eutectic point, resulting in an increase in GFA. As a result, FeNiMoPCBSi bulk metallic glasses with critical diameters up to 5.5 mm were successfully synthesized by copper mold casting. These glassy alloys exhibit a high saturation magnetic flux density of 0.75−1.21 T and excellent soft magnetic properties, i.e., low coercive force of 1.1−2.0 A/m, and high effective permeability of 14400−19700 at 1 kHz under a field of 1 A/m. The reasons for the high stability of the supercooled liquid, and the high GFA as well as excellent soft magnetic properties are discussed in this article
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