Preparation method of iron-based soft magnet with anticorrosive coating layer
A technology of anti-corrosion coating and soft magnets, applied in magnetic objects, inductance/transformer/magnet manufacturing, magnetic materials, etc., can solve the problems of coating failure, low saturation magnetic induction intensity, limited application scope, etc., to avoid coating bulging , Improve the effect of anti-corrosion performance
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Embodiment 1
[0024] The main body of the iron-based soft magnetic soft magnetic body of the present embodiment is made of the alloy with the following atomic ratio: Fe 68.94 C 0.05 Si 0.5 Cu 9.5 P 0.01 Cr 3 al 12 Ni 6 .
[0025] Weigh each element according to the above atomic ratio for batching; Put the batching ingredients into the boron nitride crucible, try to put the alloy steel or alloy elements with high density and low melting point on it, and then put it into the vacuum induction melting cavity In the induction coil, a mechanical pump and a diffusion pump are used to evacuate, and when the vacuum degree reaches 2.0×10-3 Pa, it is filled with 0.04MPa argon gas with a purity of 99.999% as a protective gas. Then start to smelt the master alloy, turn off the power after one smelting, and continue heating and smelting after complete cooling, the process continues four times, and finally prepares the master alloy ingot.
[0026] The master alloy ingot was broken into small sampl...
Embodiment 2
[0032] The main body of the iron-based soft magnetic soft magnetic body of the present embodiment is made of the alloy with the following atomic ratio: Fe 62.37 C 0.1 Si 1 Cu 10 P 0.03 Cr 3.5 al 15 Ni 8 .
[0033] Weigh each element according to the above atomic ratio for batching; Put the batching ingredients into the boron nitride crucible, try to put the alloy steel or alloy elements with high density and low melting point on it, and then put it into the vacuum induction melting cavity In the induction coil, a mechanical pump and a diffusion pump are used to evacuate, and when the vacuum degree reaches 2.0×10-3 Pa, it is filled with 0.04MPa argon gas with a purity of 99.999% as a protective gas. Then start to smelt the master alloy, turn off the power after one smelting, and continue heating and smelting after complete cooling, the process continues four times, and finally prepares the master alloy ingot.
[0034]The master alloy ingot was broken into small samples,...
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