Zirconia-reinforced silicon nitride/quartz-based ceramic composite material and preparation method thereof
A ceramic composite material and silicon nitride technology, applied in the field of special ceramics, can solve the problems of poor dielectric and thermal shock resistance, low strength, etc., and achieve the effect of good ablation resistance, meeting application requirements and easy implementation.
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Embodiment 1
[0037] Raw materials used:
[0038] α-Si in silicon nitride powder 3 N 4 The weight content is 95%, f si 50 0.6μm;
[0039] In quartz powder, SiO 2 The weight content is 99%, amorphous, median particle size D 50 = 4.7 μm;
[0040] Nano ceramic powder is nano SiO 2 , amorphous, SiO 2 The weight content is 99%;
[0041] Zirconia powder, analytically pure, ZrO 2 The weight content is 99.1%, and the median particle size is 0.8μm;
[0042] Sintering aid is Y 2 o 3 , analytically pure, with a median particle size of 1.1 μm.
[0043] Weigh 130g of quartz powder, 54g of silicon nitride powder, 6g of sintering aid, 10g of nano-ceramic powder, 30g of zirconia powder, use deionized water as a dispersant, mix by ball milling, pass through a 180-mesh sieve, and pass through a centrifugal drying granulator Granules with a particle size of 100-500μm, and then evenly loaded into a special oil-resistant rubber mold, and molded in a wet cold isostatic press with a molding pressure ...
Embodiment 2
[0045] Raw materials used:
[0046] α-Si in silicon nitride powder 3 N 4 The weight content is 96%, f si 50 0.7μm;
[0047] In quartz powder, SiO 2 The weight content is 99%, amorphous, median particle size D 50 = 10 μm;
[0048] Nano ceramic powder is nano SiO 2 , amorphous, SiO 2 The weight content is 99.6%;
[0049] Zirconia powder, analytically pure, ZrO 2 The weight content is 99.5%, and the median particle size is 1 μm;
[0050] Sintering aid is Al 2 o 3 , analytically pure, with a median particle size of 0.9 μm.
[0051]Weigh 130g of quartz powder, 54g of silicon nitride powder, 6g of sintering aid, 10g of nano-ceramic powder, 20g of zirconia powder, use deionized water as a dispersant, mix by ball milling, pass through a 180-mesh sieve, and pass through a centrifugal drying granulator Granules with a particle size of 100-500μm, and then evenly loaded into a special oil-resistant rubber mold, and molded in a wet cold isostatic press with a molding pressure ...
Embodiment 3
[0053] Raw materials used:
[0054] α-Si in silicon nitride powder 3 N 4 The weight content of 93%, f si 50 0.6μm;
[0055] In quartz powder, SiO 2 The weight content is 99%, amorphous, median particle size D 50 = 6 μm;
[0056] Nano ceramic powder is nano SiO 2 , amorphous, SiO 2 99.1% by weight;
[0057] Zirconia powder, analytically pure, ZrO 2 The weight content is 99.1%, and the median particle size is 1 μm;
[0058] Sintering aid is Y 2 o 3 , analytically pure, with a median particle size of 1.3 μm.
[0059] Weigh 130g of quartz powder, 54g of silicon nitride powder, 6g of sintering aid, 10g of nano-ceramic powder, 20g of zirconia powder, use deionized water as a dispersant, mix with a ball mill, pass through a 180-mesh sieve, dry, and press to produce a particle size 100-500μm, and then evenly loaded into a special oil-resistant rubber mold, and molded in a wet cold isostatic press with a molding pressure of 150MPa. The formed test pieces were fired in a p...
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