A preparation method of a modified iron-silicon-boron soft magnetic powder core with a magnetic permeability of 50
A technology of soft magnetic powder core and iron silicon boron is applied in the field of preparation of modified iron silicon boron soft magnetic powder core to achieve the effects of easy operation, improvement of noise defects and noise reduction
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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 30% passing through -200~+270 mesh, and a weight content of 40% passing through- Powder particles composed of the second powder of 270~+325 mesh and powder particles composed of the third powder passing through -325~+500 mesh with a weight content of 30%;
[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 iron-silicon-boron soft magnetic powder core provided in this embodiment includes the following steps:
[0054] Step 1, embrittlement treatment: heat treatment of the iron-silicon-boron amorphous metal ribbon at 300° C. for 2 hours to make it embrittled and easy to crush;
[0055] Step 2, pulverizing: pulverizing the embrittled amorphous metal ribbon to obtain amorphous metal powder;
[0056] Step 3, sieving and proportioning: the amorphous metal powder is sieved, and then mixed into a first powder with a weight content of 20 to 40% that passes through a -200 to +270 mesh, and a weight content of 30 to 50. % powder particles composed of the second powder passing through the -270~+325 mesh and powder particles composed of the third powder passing through the -325~+500 mesh with a weight content of 10~50%;
[0057] Step 4, passivation treatment and insulation coating: pour the well-proportioned amorphous powder particles into the mi...
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