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Glass transition and alpha relaxation in Y-Si-Al-O-N glasses and in Si3N4 ceramics studied by mechanical spectroscopy

机译:机械光谱法研究Y-Si-Al-O-N玻璃和Si3N4陶瓷中的玻璃化转变和α弛豫

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摘要

Y-Si-Al-O-N glasses, with composition approaching that of the intergranular amorphous phase of Si3N4 ceramics processed with sintering aids, have been studied by mechanical spectroscopy, through the glass transition. The cr-relaxation peak of the Y-Si-Al-O-N glasses was found to be similar to the relaxation peak observed in the mechanical loss spectrum of silicon nitride ceramics. The silicon nitride peak is therefore attributed to the alpha relaxation of the bulk regions of intergranular glassy phase present in the material. The viscoelastic behaviour of the Y-Si-Al-O-N glasses can be well described by a formalism of hierarchically correlated molecular mobility through the glass transition. In particular, this formalism explains the observation of an unusually high apparent activation energy. This formalism has been applied to simulate the cu-relaxation peak of the Y-Si-Al-O-N glasses and the mechanical loss peak in the silicon nitride spectrum.
机译:Y-Si-Al-O-N玻璃的组成已接近通过烧结助剂处理过的Si3N4陶瓷的晶间非晶相的组成,并通过玻璃化转变进行了机械光谱学研究。发现Y-Si-Al-O-N玻璃的cr松弛峰类似于在氮化硅陶瓷的机械损耗谱中观察到的弛豫峰。因此,氮化硅峰归因于材料中存在的晶间玻璃态相的大部分区域的α弛豫。 Y-Si-Al-O-N玻璃的粘弹性行为可以通过玻璃化转变通过层次相关的分子迁移率的形式来很好地描述。特别地,这种形式主义解释了观察到异常高的表观活化能的观察。这种形式已被用于模拟Y-Si-Al-O-N玻璃的cu弛豫峰和氮化硅光谱中的机械损耗峰。

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