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首页> 外文期刊>Key Engineering Materials >VISCOSITIES OF OXYNITRIDE GLASS AND THE EFFECTS ON HIGH TEMPERATURE BEHAVIOUR OF SILICON NITRIDE-BASED CERAMICS
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VISCOSITIES OF OXYNITRIDE GLASS AND THE EFFECTS ON HIGH TEMPERATURE BEHAVIOUR OF SILICON NITRIDE-BASED CERAMICS

机译:氧化玻璃的粘度及其对氮化硅基陶瓷高温性能的影响

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摘要

M-Si-Al-O-N glasses (where M = Y or rare earth cation) are intergranular phases in silicon nitride based ceramics in which the composition and volume fraction of these oxynitride glass phases determine the properties of the material, in particular, high temperature mechanical behaviour. Investigations on oxynitride glass formation and properties have shown that nitrogen increases the glass transition and softening temperatures, viscosity, elastic modulus and hardness. By changing the cation ratios or the type of rare earth cation incorporated, properties such as viscosity can be increased further. This paper provides an overview of oxynitride glasses and outlines the effect of composition on properties such as glass transition temperature and viscosity. These effects have important implications for silicon nitride based ceramics where amorphous intergranular films control high temperature properties such as creep resistance.
机译:M-Si-Al-ON玻璃(其中M = Y或稀土阳离子)是氮化硅基陶瓷的晶间相,其中这些氮氧化物玻璃相的组成和体积分数决定了材料的性能,尤其是高温机械行为。对氧氮化物玻璃的形成和性能的研究表明,氮会增加玻璃化转变和软化温度,粘度,弹性模量和硬度。通过改变阳离子比率或掺入的稀土阳离子的类型,可以进一步提高诸如粘度的性质。本文概述了氮氧化物玻璃,并概述了组成对诸如玻璃化转变温度和粘度等特性的影响。这些影响对于基于氮化硅的陶瓷具有重要意义,其中非晶晶间膜控制高温特性,例如抗蠕变性。

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