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OXYNITRIDE GLASSES AS GRAIN BOUNDARY PHASES IN SILICON NITRIDE: CORRELATIONS OF CHEMISTRY AND PROPERTIES

机译:氮化物玻璃作为氮化硅中的晶界相:化学与性质的相关性

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Silicon nitride is recognized as a high performance material for both wear resistant and high temperature structural applications. Oxide sintering additives, such as yttrium or rare earth oxides plus alumina or magnesia, are used in processing the ceramic to provide conditions for liquid phase sintering. The oxynitride liquid promotes densification and on cooling remains as an oxynitride glass at triple point junctions and also as intergranular films between the elongated hexagonal β-Si_3N_4 grains. The properties of silicon nitride, especially fracture behavior and creep resistance at high temperatures are influenced by the glass chemistry, particularly the concentration of modifier, and the volume fraction within the ceramic. This paper provides an overview of liquid phase sintering of silicon nitride ceramics, grain boundary oxynitride glasses and the effects of chemistry and structure on properties. As nitrogen substitutes for oxygen in bulk oxynitride glasses, increases are observed in glass transition and softening temperatures, viscosities, elastic moduli and thermal expansion coefficient. These property changes are compared with known effects of grain boundary glass chemistry on properties of silicon nitride ceramics.
机译:氮化硅被认为是耐磨和高温结构应用的高性能材料。氧化物烧结添加剂,例如钇或稀土氧化物加氧化铝或氧化镁,用于加工陶瓷以提供液相烧结的条件。氧氮化物液体促进致密化和冷却,在三点交叉点处的氮氧化物玻璃仍然是氧氮化物玻璃,并且在细长六方β-Si_3N_4颗粒之间也是晶间膜。氮化硅的性质,尤其是高温下的裂缝行为和抗蠕变性受玻璃化学的影响,特别是改性剂的浓度,以及陶瓷内的体积分数。本文概述了氮化硅陶瓷,晶界氮化物玻璃和化学和结构对性质的影响的液相烧结概述。作为氧氮化物玻璃中氧的氮替代物,在玻璃化转变和软化温度,粘度,弹性模量和热膨胀系数中观察到增加。将这些性质变化与晶界玻璃化学对氮化硅陶瓷性质进行了已知的效果。

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