首页> 外文会议>International Symposium on Nitrides; 20060403-05; Eskisehir(TK) >Oxynitride Glasses: Preparation, Properties and Implications for Mechanical Behaviour of Silicon Nitride
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Oxynitride Glasses: Preparation, Properties and Implications for Mechanical Behaviour of Silicon Nitride

机译:氧氮化物玻璃:氮化硅的机械性能的制备,性能及其意义

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Oxynitride glasses are found at grain boundaries, i.e. triple point junctions and intergranular films, in silicon nitride based materials as a result of cooling of liquid phases formed by reaction of sintering additives with silicon nitride and silica present on the nitride surface during the densification of the ceramics. The glass chemistry, particularly the content of modifying cation, usually Y or a rare earth (RE) ion, and the volume fractions of these oxynitride glass phases within the ceramic affect the properties of silicon nitride such as fracture toughness and creep at high temperature. As nitrogen substitutes for oxygen in silicate and alumino-silicate glasses, increases are observed in glass transition and softening temperatures, viscosities (by two to three orders of magnitude), elastic moduli and microhardness. If changes are made to the RE:Si:Al ratios or as the size of the rare earth cation decreases, properties such as viscosity can be increased by a further two to three orders of magnitude. These effects have a strong impact on the mechanical properties of silicon nitride based ceramics, especially creep resistance. This paper provides an overview of previous work on oxynitride glasses and outlines the effect of glass composition on their properties and discusses the implications for high temperature behaviour of Si_3N_4 ceramics.
机译:在氮化硅基材料中,由于在烧结致密化过程中烧结添加剂与氮化硅表面上存在的氮化硅和二氧化硅反应而形成的液相冷却,因此在氮化硅基材料的晶界即三点结和晶间膜处发现了氮氧化物玻璃。陶瓷。玻璃的化学性质,尤其是改性阳离子(通常为Y或稀土(RE)离子)的含量,以及陶瓷中这些氮氧化物玻璃相的体积分数,会影响氮化硅的性能,例如断裂韧性和高温蠕变。作为氮替代硅酸盐和铝硅酸盐玻璃中的氧,人们观察到玻璃化转变和软化温度,粘度(增加了两个到三个数量级),弹性模量和显微硬度都有所提高。如果改变RE:Si:Al的比例或随着稀土阳离子的尺寸减小,则粘度等特性可进一步提高2到3个数量级。这些影响对氮化硅基陶瓷的机械性能,特别是抗蠕变性具有很大的影响。本文概述了氧氮化物玻璃的先前工作,并概述了玻璃成分对其性能的影响,并讨论了Si_3N_4陶瓷对高温行为的影响。

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