Preparation method of porous BN/Si3N4 composite ceramic hole sealing layer
A composite ceramic and hole sealing technology, which is applied in the field of surface sealing technology of porous BN/Si3N4 composite ceramics, can solve the problems of large influence of dielectric properties, difficulty in meeting high temperature use requirements, etc., and achieves low cost and good industrial application prospects. , the effect of increasing the use temperature
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specific Embodiment approach 1
[0031] Specific implementation mode 1: In this implementation mode, a porous BN / Si 3 N 4 The preparation method of the composite ceramic sealing layer is specifically carried out according to the following steps:
[0032] 1. Mix the ceramic powder and sintering aid evenly to obtain a mixed powder, wherein the ceramic powder is Si 3 N 4 Powder and SiO 2 Mixture of powders, Si 3 N 4 Powder and SiO 2 The molar ratio of the powder is 0.5-1.5, and the amount of sintering aid added is 5%-15% of the mass of the ceramic powder;
[0033] 2. Add the wetting agent and dispersant to deionized water to obtain a premixed solution, then adjust the pH value of the premixed solution to 8.5-10.5, then add the mixed powder obtained in step 1, and then ball mill and mix to obtain a sealing slurry. Control the solid phase volume content of the sealing slurry to 5-25%; among them, the amount of dispersant added is 0.2%-0.6% of the mass of ceramic powder, and the amount of wetting agent added...
specific Embodiment approach 2
[0036] Specific embodiment two: the difference between this embodiment and specific embodiment one is: the sintering aid in step one is Al 2 o 3 and Y 2 o 3 mixture of Al 2 o 3 The average particle size is 100nm, Y 2 o 3 The average particle size is 50nm, Al 2 o 3 with Y 2 o 3 The volume ratio is 1:2. Others are the same as in the first embodiment.
specific Embodiment approach 3
[0037] Specific embodiment three: the difference between this embodiment and specific embodiment one is: Si in step one 3 N 4 The average particle size of the powder is 0.5μm, SiO 2 The average particle size of the powder was 0.7 μm. Others are the same as in the first embodiment.
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