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Study on the Preparation and Mechanical Properties of MgAlON Composites

机译:MgAlON复合材料的制备及力学性能研究

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MgAlON composites have been prepared under nitrogen atmosphere, using Dengfeng calcined alumina w(Al2O3) = 85 % and other raw material, in order to reduce the production cost and make full use of the rich bauxite resources in Henan Province. The effects of the different sintering temperature and different matrix content on the preparation and properties of MgAlON composites were investigated. The results indicated that: apparent porosity, linear expansion, and weight gain had increased; the gradual bulk density decreased with an increased amount of MgAlON, but the room temperature flexural strength increased; the bulk density of the specimen decreased slightly; the apparent porosity increased, room temperature flexural strength increased with the temperature; the best sintered performances of the specimen was at 1500 °C. Compared with the bauxite-based MgAlON composite magnesia material, the alumina-based spinel MgAlON composite material had higher density and better strength effect of nitride.
机译:为了降低生产成本,充分利用河南省丰富的铝土矿资源,在氮气氛下,采用登峰煅烧氧化铝(Al2O3)= 85%及其他原料制备了MgAlON复合材料。研究了不同的烧结温度和不同的基体含量对MgAlON复合材料的制备和性能的影响。结果表明:表观孔隙率,线性膨胀和重量增加都增加了。随着MgAlON含量的增加,堆积密度逐渐降低,但室温挠曲强度增加。样品的堆密度略有下降;表观孔隙率增加,室温抗弯强度随温度升高;样品的最佳烧结性能为1500°C。与铝土矿基MgAlON复合氧化镁材料相比,氧化铝基尖晶石MgAlON复合材料具有更高的密度和更好的氮化物强度作用。

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