A preparation method of a modified iron-silicon-boron soft magnetic powder core with a magnetic permeability of 26
A technology of soft magnetic powder core and iron-silicon-boron, which is applied in the field of preparation of modified iron-silicon-boron soft magnetic powder core, and achieves the effects of simple method, high-frequency magnetic permeability, improved corrosion resistance and service time
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Embodiment 1
[0026] The preparation method of the modified FeSiB soft magnetic powder core provided in this embodiment includes the following steps,
[0027] Step 1, embrittlement treatment: heat-treat the iron-silicon-boron amorphous metal strip at 300°C for 2 hours to make it embrittled and easily crushed;
[0028] Step 2, crushing: crushing the brittle amorphous metal strip to obtain amorphous metal powder;
[0029] Step 3, sieving and proportioning: sieve the amorphous metal powder, and then mix it into a first powder with a weight content of 10% passing through -100~+150 mesh, and a weight content of 40% passing through- Powder particles composed of the second powder of 200~+270 mesh and powder particles composed of the third powder passing through -270~+325 mesh with a weight content of 50%;
[0030] Step 4, passivation treatment and insulation coating: Pour the proportioned amorphous powder particles into the mixer, stir and mix evenly, then add phosphoric acid solution for passiva...
Embodiment 2
[0053] The preparation method of the modified FeSiB soft magnetic powder core provided in this embodiment includes the following steps,
[0054] Step 1, embrittlement treatment: heat-treat the iron-silicon-boron amorphous metal strip at 300°C for 2 hours to make it embrittled and easily crushed;
[0055] Step 2, crushing: crushing the brittle amorphous metal strip to obtain amorphous metal powder;
[0056] Step 3, sieving and proportioning: sieving the amorphous metal powder, and then mixing it into the first powder with a weight content of 10-30% passing through -100-+150 mesh, and a weight content of 20-50 % of the powder particles composed of the second powder passing through the mesh of -200~+270 and the powder particles composed of the third powder passing through the mesh of -270~+325 with a weight content of 40~50%;
[0057] Step 4, passivation treatment and insulation coating: Pour the proportioned amorphous powder particles into the mixer, stir and mix evenly, then a...
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