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首页> 外文期刊>Journal of the European Ceramic Society >Grain boundary glasses in silicon nitride: A review of chemistry, properties and crystallisation
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Grain boundary glasses in silicon nitride: A review of chemistry, properties and crystallisation

机译:氮化硅中的晶界玻璃:化学,性质和结晶的评论

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摘要

Silicon nitride for engineering applications is densified by liquid phase sintering using oxide additives such as yttria and alumina. The oxynitride liquid remains as an intergranular glass. This paper provides a review of microstructural development in silicon nitride, grain boundary oxynitride glasses and effects of chemistry on properties. Nitrogen increases T_g, viscosities, elastic moduli and microhardness. These property changes are compared with known effects of grain boundary glass chemistry in silicon nitride ceramics where significant improvements in fracture resistance of silicon nitride can be achieved by tailoring the intergranular glass chemistry. Crystallisation of the grain boundary Y-Si-Al-O-N glass phase can improve properties. Nucleation and crystallisation of a Y-Si-Al-O-N glass, similar to that found in grain boundaries of silicon nitride densified with yttria and alumina, can be optimised to form different Y-disilicate polymorphs at different temperatures. One solution to provide a single disilicate phase over a range of temperatures is discussed.
机译:用于工程应用的氮化硅通过使用氧化钇和氧化铝等氧化物添加剂的液相烧结进行了致密化。氮氧化物液体保留为晶间玻璃。本文概述了氮化硅,晶界氧氮化物玻璃的微观结构发展以及化学性质对化学结构的影响。氮会增加T_g,粘度,弹性模量和显微硬度。将这些性能变化与氮化硅陶瓷中晶界玻璃化学作用的已知效果进行了比较,在该效果中,通过调整晶间玻璃化学性质可以显着提高氮化硅的抗断裂性。晶界Y-Si-Al-O-N玻璃相的结晶可以改善性能。可以优化Y-Si-Al-O-N玻璃的成核和结晶,类似于在氧化钇和氧化铝致密的氮化硅的晶界中发现的那样,可以在不同温度下形成不同的Y-二硅酸盐多晶型物。讨论了在一定温度范围内提供单一二硅酸盐相的一种解决方案。

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