Manufacturing method of dry-type anisotropic strontium ferrite
A strontium ferrite, anisotropic technology, applied in the field of dry anisotropic strontium ferrite manufacturing, can solve the problem that the viscosity and lubricity cannot reach the lubrication and dispersion effect, it is not suitable for industrial production, and it is difficult to decompose, etc. problems, to achieve good lubricity, improve molding and density, and reduce environmental pollution
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Embodiment 1
[0026] Adopt following steps to make product of the present invention:
[0027] (1) Preparation of pre-burned fine powder
[0028] Molebi Fe 2 o 3 : SrCO 3 =5.7:1 Weigh the raw material Fe 2 o 3 and SrCO 3 Mixing, drying and calcining to obtain calcined material. Use a vibration ball mill to coarsely crush the above calcined material into a coarse powder with an average particle size of 2-6 μm, and add 0.8wt% of the weight of the coarse powder to CaCO 3 and 0.3wt% SiO 2 Finally, it is finely crushed into a fine powder with an average particle size of 0.8 μm, and then dried to obtain a pre-calcined fine powder.
[0029] (2) Preparation of mixing concentrate
[0030] Weigh the calcined fine powder obtained in step (1) and mix it with synthetic wax, wherein the synthetic wax accounts for 1 wt%, and the pre-calcined fine powder accounts for 99 wt%, put the mixed material into an internal mixer, and mix while heating. When the temperature rises to 75°C, turn on the coolin...
Embodiment 2
[0036] Adopt the following steps to make product 4 of the present invention:
[0037] (1) Preparation of pre-burned fine powder
[0038] Molebi Fe 2 o 3 : SrCO 3 =5.8:1 Weigh raw material Fe 2 o 3 and SrCO 3 Mixing, drying and calcining to obtain calcined material. Use a vibration ball mill to coarsely crush the above calcined material into a coarse powder with an average particle size of 2-6 μm, and add 1.1wt% of the weight of the coarse powder to CaCO 3 and 0.2wt% SiO 2 Finally, it is finely crushed into a fine powder with an average particle size of 0.72 μm, and then dried to obtain a pre-calcined fine powder.
[0039] (2) Preparation of mixing concentrate
[0040] The calcined fine powder obtained in step (1) was weighed and mixed with synthetic wax, wherein the synthetic wax accounted for 6wt%, and the pre-calcined fine powder accounted for 94wt%, and the mixed material was put into an internal mixer, and mixed while heating. When the temperature rises to 75°C, ...
Embodiment 3
[0046] Adopt following steps to make product of the present invention:
[0047] (1) Preparation of pre-burned fine powder
[0048] Molby Fe 2 o 3 : SrCO 3 =5.9:1 Weigh raw material Fe2 o 3 and SrCO 3 Mixing, drying and calcining to obtain calcined material. Use a vibration ball mill to coarsely crush the above calcined material into a coarse powder with an average particle size of 2-6 μm, and add 1.25wt% of the weight of the coarse powder to CaCO 3 and 0.1wt% SiO 2 Finally, it is finely crushed into a fine powder with an average particle size of 0.65 μm, and then dried to obtain a pre-calcined fine powder.
[0049] (2) Preparation of mixing concentrate
[0050] The calcined fine powder obtained in step (1) was weighed and mixed with synthetic wax, wherein the synthetic wax accounted for 12wt%, and the pre-calcined fine powder accounted for 88wt%, and the mixed material was put into an internal mixer, and mixed while heating. When the temperature rises to 75°C, turn on...
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