A method for preparing submicron high-alpha-phase silicon nitride powder by combustion synthesis without additives
A phase silicon nitride powder, sub-micron technology, applied in the field of preparation of high α phase silicon nitride ceramic powder, can solve complex grinding process and other problems, achieve simple equipment, improve reaction activity, and save energy
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Embodiment 1
[0038] Mix 400-mesh silicon powder (purity>99wt%) with alcohol, use silicon nitride balls as the medium, and mill on a planetary ball mill for 36 hours. After the slurry is vacuum filtered, it is pickled with a mixed solution of hydrofluoric acid and hydrochloric acid. , vacuum-dried at 60°C after suction filtration. Finally, ultrafine silicon powder raw materials with an average particle size of 0.58 μm are obtained. Weigh raw materials according to weight ratio, ultrafine silicon powder is 33%, silicon nitride (α phase content is 91wt%, average particle size 2μm) is 67%, after mixing with alcohol, using silicon nitride ball as medium, rolling Ball milled on a ball mill for 12 h, followed by vacuum drying at 60 °C. After passing through a 200-mesh sieve, it is loosely packed in a porous graphite boat and placed in a combustion synthesis device. After vacuuming, fill it with 3MPa high-purity nitrogen. Use titanium powder as the ignition agent to induce combustion synthesis ...
Embodiment 2
[0040] Mix 300-mesh silicon powder (purity>99.5%) with alcohol, use silicon nitride balls as the medium, and mill on a planetary ball mill for 24 hours. After the slurry is vacuum-filtered, it is pickled with hydrofluoric acid solution. Dry under vacuum at 70°C. Finally, ultrafine silicon powder raw materials with an average particle size of 0.74 μm are obtained. Weigh raw materials according to weight ratio, ultrafine silicon powder is 40%, silicon nitride (α phase content is 92wt%, average particle size 2.6μm) is 60%, after mixing with alcohol, using silicon nitride ball as medium, in Ball milled on a planetary ball mill for 12 h, followed by vacuum drying at 70 °C. After passing through a 100-mesh sieve, it is loosely packed in a porous graphite boat and placed in a combustion synthesis device. After vacuuming, fill it with 4MPa high-purity nitrogen. Use titanium powder as the ignition agent to induce combustion synthesis reaction. After the combustion reaction is over,...
Embodiment 3
[0042] Mix 400-mesh silicon powder (purity >99%) with alcohol, use agate balls as the medium, and mill on a planetary ball mill for 28 hours. After the slurry is vacuum filtered, it is pickled with a mixed solution of hydrofluoric acid and sulfuric acid. After filtration, it was dried under vacuum at 60°C. Finally, ultrafine silicon powder raw materials with an average particle size of 0.61 μm are obtained. Weigh raw materials according to weight ratio, ultrafine silicon powder is 36%, silicon nitride (α phase content is 91wt%, average particle size 2μm) is 64%, after mixing with alcohol, using agate balls as the medium, on a rolling ball mill Ball milled for 16 h, followed by vacuum drying at 60 °C. After passing through a 100-mesh sieve, it is loosely packed in a porous graphite boat and placed in a combustion synthesis device. After vacuuming, fill it with 4.5MPa high-purity nitrogen. Use titanium powder as the ignition agent to induce combustion synthesis reaction. Aft...
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