Prepration and thermal shock resistance property of γ-Y2Si2O7 ceramic coating on surface of porous silicon nitride
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Abstract
Using γ-Y2Si2O7 and Y2O3-Al2O3-SiO2 ternary oxide powders as raw materials, a dense γ-Y2Si2O7 ceramic coating was fabricated on surface of porous Si3N4 by using a combined method of slurry spraying and high-temperature melt infiltration. The effects of the composition of raw materials and sintering temperature on structure, organization and thermal shock resistance of coating were studied systematically by XRD and SEM detection methods. The results show that a coating with double-layer structure of dense γ-Y2Si2O7 layer and transition layer is obtained when amount of substance ratio of SiO2 and Al2O3 is high. A single-layer structure is obtained when amount of substance ratio of SiO2 and Al2O3 is low. The coating with double-layer structure has a better thermal shock resistance property than the coating with single-layer structure.
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