Iron-based amorphous and nano-crystalline soft magnetic alloy and preparation method thereof
A nanocrystalline soft magnetic, iron-based amorphous technology, applied in the direction of magnetic materials, magnetic objects, electrical components, etc., can solve the problems of low saturation magnetic induction, unfavorable development, and increased material costs, etc., to achieve high saturation magnetic induction, Excellent soft magnetic properties and low coercive force
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[0056] The present invention also provides a method for preparing an iron-based amorphous nanocrystalline soft magnetic alloy, comprising the following steps:
[0057] A) After smelting iron, silicon, boron source, phosphorus iron, copper and carbon iron, an alloy ingot is obtained;
[0058] The boron source includes boron and / or ferroboron;
[0059] B) stripping the alloy ingot obtained in the above steps after being broken to obtain an amorphous alloy strip;
[0060] C) Under the conditions of vacuum or protective atmosphere, heat-treat the amorphous alloy ribbon obtained in the above steps to obtain an iron-based amorphous nanocrystalline soft magnetic alloy.
[0061] In the present invention, an alloy ingot is obtained by first smelting iron, silicon, boron source, ferrophosphorus, copper and carbon iron; the boron source includes boron and / or ferroboron.
[0062] The present invention has no special limitation on the name and purity of the above-mentioned raw materials,...
Embodiment 1
[0081] Fe 84.7 Si 1.5 B 9 P 4 Cu 0.5 C 0.3
[0082] Iron-based amorphous nanocrystalline alloy, the chemical composition of the alloy is Fe 84.7 Si 1.5 B 9 P 4 Cu 0.5 C 0.3 .
[0083] see figure 1 , figure 1 It is a schematic flow chart of the process for preparing iron-based amorphous nanocrystalline soft magnetic alloy in the present invention.
[0084] Preparation steps:
[0085] (1) Master alloy raw material preparation: according to Fe 84.7 Si 1.5 B 9 P 4 Cu 0.5 C 0.3 The chemical formula converts atomic percentage to mass percentage, and weighs Fe (99.9%), FeB (17.6%) alloy, FeP (17%) alloy, FeC (2.25%) alloy, Si (99.9%) block and Cu block in proportion .
[0086] (2) Master alloy smelting: Put the prepared raw materials into the vacuum arc melting furnace, and evacuate the furnace body to 5×10 -3 Then fill it with argon / nitrogen atmosphere for protection, and close the filling valve when the pressure in the furnace is 0.01Mpa higher than the atmos...
Embodiment 2
[0096] Fe 84.2 Si 2 B 9 P 4 Cu 0.5 C 0.3
[0097] Iron-based amorphous nanocrystalline alloy, the chemical composition of the alloy is Fe 84.2 Si 2 B 9 P 4 Cu 0.5 C 0.3 .
[0098] Preparation steps:
[0099] (1) Master alloy raw material preparation: according to Fe 84.2 Si 2 B 9 P 4 Cu 0.5 C 0.3 The chemical formula converts atomic percentage to mass percentage, and weighs Fe (99.9%), FeB (17.6%) alloy, FeP (17%) alloy, FeC (2.25%) alloy, Si (99.9%) block and Cu block in proportion .
[0100] (2) Master alloy smelting: Put the prepared raw materials into the vacuum arc melting furnace, and evacuate the furnace body to 5×10 -3 Then fill it with argon / nitrogen atmosphere for protection, and close the filling valve when the pressure in the furnace is 0.01Mpa higher than the atmospheric pressure. Heat and smelt the raw material. After the raw material is completely melted, continue to smelt for 3 minutes, then cool to solidify, quickly turn it over and repeat...
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