Neodymium-iron-boron magnet material and raw material composition thereof, and preparation method and application of neodymium-iron-boron magnet material
A raw material composition, neodymium iron boron technology, applied in the direction of magnetic materials, magnetic objects, inductors/transformers/magnets, etc., can solve the problem that the coercivity and remanence of magnet materials cannot be significantly improved
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Embodiment 1
[0126] The preparation method of NdFeB magnet material is as follows:
[0127] (1) Melting and casting process: According to the formula shown in Table 1, take the prepared raw materials and put them in the crucible made of alumina, and put them in a high-frequency vacuum induction melting furnace at 5×10 -2 Vacuum melting is carried out at a temperature below 1500°C in a vacuum of Pa. In the smelting furnace after vacuum smelting, Ar gas is introduced to make the air pressure reach 55,000 Pa, and then casting is carried out at 10 2 ℃ / sec~10 4 °C / sec cooling rate to obtain quenched alloy.
[0128] (2) Hydrogen crushing process: Vacuumize the smelting furnace where the quenched alloy is placed at room temperature, and then pass hydrogen gas with a purity of 99.9% into the hydrogen crushing furnace to maintain the hydrogen pressure at 0.15MPa. After fully absorbing hydrogen, pump it The temperature was raised under vacuum to fully dehydrogenate, and then cooled, and the hydro...
Embodiment 43 and 44
[0135] Embodiment 43 and 44 adopt the preparation technology of Tb grain boundary diffusion method
[0136] The raw material compositions numbered 12 and 16 in Table 1 were first prepared according to the preparation of the sintered body in Example 1 to obtain a sintered body, followed by grain boundary diffusion and aging treatment. Wherein the technology of aging treatment is the same as embodiment 1, and the processing process of grain boundary diffusion is as follows:
[0137] Process the sintered body into a magnet with a diameter of 20mm and a sheet thickness of less than 7mm. The direction of thickness is the orientation direction of the magnetic field. The magnet is dried, and the metal with Tb element is sputtered on the surface of the magnet in a high-purity Ar gas atmosphere, and the temperature of 850°C is diffused and heat-treated for 24 hours. Cool to room temperature.
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