Preparation method of permanent magnetic ferrite material
A permanent magnet ferrite and raw material technology, which is applied in the field of permanent magnet ferrite material preparation, can solve the problems of poor chemical uniformity, high energy consumption and cost, and low density of the mixture, and achieve high density, low energy consumption, Effect of Microstructural Optimization
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preparation example Construction
[0011] The preparation method of the permanent magnet ferrite material provided in this specific embodiment specifically includes the following steps:
[0012] Step 1, according to the main phase of permanent magnet ferrite MO·nFe 2 o 3 The molar ratio is weighed to configure the raw materials, where Fe 2 o 3 Purity≧99.2%, M means SrCO 3 And the purity is ≧98.0%, and the primary additive added to the raw material is SiO 2 , CaCO 3 or Bi 2 o 3 at least one of;
[0013] Step 2, put the raw materials into the intensive mixer and mix for 3 to 10 minutes, then put the mixture into the vibration mill and mix for 1 to 5 minutes;
[0014] Step 3, making pellets from the mixed raw materials, and pre-burning in the air, the pre-burning temperature is 1150-1250 °C, and the temperature is kept for 1-4 hours;
[0015] Step 4, pulverizing the pre-calcined raw materials through a ball mill to obtain coarse powder, and performing particle size screening on the coarse powder, the part...
Embodiment 1
[0025] Ingredients: According to Fe 2 o 3 with SrCO 3 The molar ratio of n=5.8 is used for the main material preparation, and the primary additive SiO 2 =0.3%wt, CaCO 3 =0.2wt%, where Fe 2 o 3 Purity≥99.2%, SrCO 3 Purity≥98.0%.
[0026] Mixing: Put the weighed raw materials into the intensive mixer and mix for 5 minutes. Put the mixture into a vibrating mill and mix for 3 minutes.
[0027] Pre-burning: The raw material powder obtained in the mixing process is pelletized, and pre-fired in air at a temperature of 1200°C for 2 hours.
[0028] Coarse crushing: crush the calcined material with a ball mill to obtain a coarse powder, and carry out particle size screening at the same time, and the particle size of the coarse powder is close to 4um.
[0029] Fine grinding: Add secondary additives to the coarse powder obtained by coarse grinding and use a ball mill for fine grinding, using water as the dispersion medium to obtain a fine grinding slurry. After the slurry is drie...
Embodiment 2
[0035] Ingredients: According to Fe 2 o 3 with SrCO 3 The molar ratio of n=5.8 is used for the main material preparation, and the primary additive SiO 2 =0.3%wt. where Fe 2 o 3 Purity≥99.2%, SrCO 3 Purity≥98.0%.
[0036]Mixing: Put the weighed raw materials into the intensive mixer and mix for 5 minutes. Put the mixture into a vibrating mill and mix for 3 minutes.
[0037] Pre-calcination: The raw material powder obtained in the mixing process is pelletized, and pre-fired in air at a pre-calcination temperature of 1170°C for 2 hours.
[0038] Coarse crushing: crush the calcined material with a ball mill to obtain a coarse powder, and carry out particle size screening at the same time, and the particle size of the coarse powder is close to 4um.
[0039] Fine grinding: Add secondary additives to the coarse powder obtained by coarse grinding and use a ball mill for fine grinding, using water as the dispersion medium to obtain a fine grinding slurry. After the slurry is d...
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Abstract
Description
Claims
Application Information
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