Method for producing Sm-Fe-N permanent magnet alloy powder by reduction diffusion
A technology of permanent magnetic alloy and diffusion method, which is applied in the field of magnetic materials, can solve the problems of high melting point, achieve high-performance anisotropy, reduce volatilization loss, and improve the magnetic properties of powder
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Embodiment 1
[0019] The raw material adopts SmCl 3 , Fe powder (500 orders), calculate the chemical dose of each reactant required by formula (1), SmCl 3 The amount added is 103% of the stoichiometric dose, the metal Ca particle size is 3mm, and the added amount exceeds the stoichiometric dose by 15%, SmCl 3 After vacuum dehydration at 360°C. The reduction diffusion reaction was carried out under the protection of argon, and kept at 820°C for 2 hours. The reaction block was naturally pulverized in water, and the powder was filtered out and dried in vacuum. Alloy powder in NH with a pressure of 0.1Mpa 4 Treated at 450°C for 1 hour in the atmosphere, the magnetic properties of the prepared Sm-Fe-N alloy powder are: Br=9.8kGs, M Hc=8kOe, (BH)m=18MGOe.
Embodiment 2
[0021] The raw material adopts SmCl 3 , Fe powder (500 mesh) and Co powder (500 mesh), according to formula (1) calculate the stoichiometric dose of each reactant required, SmCl 3 The amount added is 105% of the stoichiometric amount, Co replaces 5% of the amount of Fe powder, the particle size of metal Ca is 3mm, and the added amount is 120% of the stoichiometric amount. SmCl 3 After vacuum dehydration at 360°C. The reduction diffusion reaction was carried out under the protection of argon, and kept at 850°C for 2 hours. The reaction block was naturally powdered in water, and the powder was filtered out and dried in vacuum. Alloy powder in NH with a pressure of 0.2Mpa 4 and H 2 (7.5:2.5) in a mixed atmosphere of 450 ° C for 1 hour, the magnetic properties of the prepared Sm-Fe-N alloy powder are: Br=11.2kGs, M Hc = 9.8kOe, (BH)m = 26MGOe.
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