Method for preparing high-performance samarium-iron-nitrogen permanent magnet material with high nitriding efficiency
A permanent magnet material and high-performance technology, which is applied in the fields of magnetic materials, magnetic objects, inductors/transformers/magnets, etc., can solve the problems of SmFeN magnetic properties that cannot be achieved, poor alloy nitriding reaction kinetics, and increased temperature to increase nitrogen activity. and other problems, to achieve the effect of stable phase structure, low manufacturing cost, and improved nitriding efficiency
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Embodiment 1
[0060] Put the samarium-iron alloy powder into a high-energy ball mill tank and flush nitrogen for preliminary nitriding treatment, and the samarium-iron alloy coarse powder (Sm 2 Fe 17 ), put into absolute ethanol, put in non-magnetic steel balls, fill with nitrogen, and the air pressure is 0.2MPa; according to the ball-to-material ratio of 10:1, carry out high-energy ball milling in a high-energy ball mill tank, the time is controlled at 3 hours, and the speed is controlled At 150-200r / min, the particle size of the samarium-iron alloy after preliminary nitriding treatment is 1-50 microns;
[0061] The samarium-iron alloy powder obtained from the preliminary treatment is classified and screened, and the screening and classification are 300-2000 meshes, and are divided into four grades according to the particle size. The particle size range of the first grade is 30-48 microns; the particle size range of the second grade is 10-20 microns; The particle size range of the third s...
Embodiment 2
[0073] Putting the samarium-iron alloy powder into a high-energy ball mill tank and flushing with nitrogen gas for preliminary nitriding treatment (the treatment method is the same as in Example 1), the particle size of the samarium-iron alloy after the preliminary nitriding treatment is 1 to 50 microns;
[0074] The samarium-iron alloy powder obtained from the preliminary treatment is classified and screened, and the screening and classification are 300-2000 meshes, and are divided into four grades according to the particle size. The particle size range of the first grade is 30-48 microns; the particle size range of the second grade is 10-20 microns; The particle size range of the third stage is 5-10 microns; the particle size range of the fourth stage is 0-5 microns; different stages of samarium-iron alloy powders are respectively loaded into fine-hole troughs with different meshes, and loaded into four corresponding meshes. Number of fine-hole troughs;
[0075] The above-me...
Embodiment 3
[0085] Putting the samarium-iron alloy powder into a high-energy ball mill tank and flushing with nitrogen gas for preliminary nitriding treatment (the treatment method is the same as in Example 1), the particle size of the samarium-iron alloy after the preliminary nitriding treatment is 1-50 μm;
[0086] The samarium-iron alloy powder obtained from the preliminary treatment is classified and screened, and the screening and classification are 300-2000 meshes, and are divided into four grades according to the particle size. The particle size range of the first grade is 30-48 microns; the particle size range of the second grade is 10-20 microns; The particle size range of the third stage is 5-10 microns; the particle size range of the fourth stage is 0-5 microns; different stages of samarium-iron alloy powders are respectively loaded into fine-hole troughs with different meshes, and loaded into four corresponding meshes. Number of fine-hole troughs;
[0087] The above-mentioned ...
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