Preparation method for iron-based amorphous magnetic powder core with ultrahigh magnetic conductivity
An iron-based amorphous and magnetic powder core technology, which is applied in the direction of magnetic materials, magnetic objects, and inorganic materials, can solve the problem of large particle gaps, which cannot effectively solve the problem of large-particle amorphous powder compression molding, and cannot meet the needs of motors. Requirements and other issues, to achieve the effect of uniform composition
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Embodiment 1
[0029] The preparation method of the iron-based amorphous magnetic powder core with ultra-high magnetic permeability provided in this embodiment includes the following steps:
[0030] Step 1, for the Fe produced by ultra-rapid solidification technology 78 Si 9 B 13 The iron-based amorphous strip is heat-treated at 400-500°C for 3 hours to make it brittle and easy to crush;
[0031] Step 2, pulverizing the brittle iron-based amorphous ribbon to obtain iron-based amorphous powder;
[0032] Step 3, sieving and proportioning the iron-based amorphous powder, and then mixing it into a coarse powder with a weight content of 40-70% passing through -20~+70 mesh and a weight content of 30-60% passing through - Mixed powders consisting of fine powders of 400 mesh;
[0033] Step 4, using a passivator, a coupling agent, an insulating agent, a binder, and a lubricant to carry out passivation, coupling, insulation coating, and lubrication treatment on the mixed powder in sequence, an...
Embodiment 2
[0046] The preparation method of the iron-based amorphous magnetic powder core with ultra-high magnetic permeability provided in this embodiment includes the following steps:
[0047] Step 1, for the Fe produced by ultra-rapid solidification technology 78 Si 9 B 13 The iron-based amorphous strip is heat-treated at 400-500°C for 3 hours to make it brittle and easy to crush;
[0048] Step 2, pulverizing the brittle iron-based amorphous ribbon to obtain iron-based amorphous powder;
[0049] Step 3, sieving and proportioning the iron-based amorphous powder, and then mixing it into coarse powder with a weight content of 65% passing through -20~+70 mesh and a weight content of 35% passing through -400 mesh Mixed powder composed of fine powder;
[0050] Step 4, using a passivator, a coupling agent, an insulating agent, a binder, and a lubricant to carry out passivation, coupling, insulation coating, and lubrication treatment on the mixed powder in sequence, and then press mol...
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