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- W3002422011 abstract "Fe78.8Co6Si4B8P2.5Cu0.7, Fe78.3Co6Si4B8P3Cu0.7, Fe78.3Co6Si4B8.5P2.5Cu0.7, and Fe78.3Co6Si4.5B8P2.5Cu0.7 alloys were fabricated through the melt-spun technique, and their glass formation and magnetic properties were investigated. Results showed that a fully amorphous structure could be formed by substituting Fe with 0.5 at.% metalloids (B, P, Si) in the Fe78.8Co6Si4B8P2.5Cu0.7 alloy. The substitution of minor metalloids delayed the precipitation of the α-Fe phase, but had minimal effect on the precipitation of Fe-(B, P) compounds. Among the three amorphous alloys, Fe78.3Co6Si4B8.5P2.5Cu0.7 presented the best magnetic properties in both as-cast and annealed states (833 K). In the as-cast condition, Ms and Hc of the Fe78.3Co6Si4B8.5P2.5Cu0.7 alloy were 171 Am2/kg and 5.1 A/m respectively. After annealing at 833 K for 10 min, the magnetic properties were obviously optimized, Ms was 208 Am2/kg, and Hc was 3.5 A/m." @default.
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- W3002422011 date "2020-04-01" @default.
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- W3002422011 title "Minor-metalloid substitution for Fe on glass formation and soft magnetic properties of Fe–Co–Si–B–P–Cu alloys" @default.
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- W3002422011 doi "https://doi.org/10.1016/j.jnoncrysol.2020.119937" @default.
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