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The effect of nitrogen on viscosity of La-Si-Mg-O-N glasses by compressive creep and dilatometry

机译:压缩蠕变和膨胀法研究氮对La-Si-Mg-O-N玻璃粘度的影响

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Viscosity as a function of temperature and nitrogen content and the glass transition temperature (T-g) were investigated in 20La-6OSi-20Mg-O-N glasses with nitrogen contents varying from 0 to 28 eq.% (e/o) using compressive creep and dilatometric experiments. Although T-g obtained from dilatometry were 6-12 degreesC lower than the lower limit of the transition temperature range from creep, both methods revealed identical and linear dependencies of T-g on N content. The average activation energy was 1184 +/- 36 kJ/mol and viscous flow remains the deformation mechanism in all glasses regardless of nitrogen content. Addition of 28 e/o N in oxide glass resulted in an increase of T-g by 94-105 degreesC and an increase in viscosity of around 5 orders of magnitude. These changes are greater than those reported in similar Al-containing glasses. Linear increase of T-g and compactness of the glass with nitrogen content result from enhanced cross-linking of the glass network. (C) 2005 Springer Science + Business Media, Inc.
机译:使用压缩蠕变和膨胀实验研究了氮含量在0至28 eq。%(e / o)之间变化的20La-6OSi-20Mg-ON玻璃中粘度随温度,氮含量和玻璃化转变温度(Tg)的变化的函数。 。尽管从膨胀法获得的T-g比蠕变转变温度范围的下限低6-12℃,但是两种方法都显示出T-g对N含量的相同和线性依赖性。平均活化能为1184 +/- 36 kJ / mol,粘性流在所有玻璃中都保持变形机理,而与氮含量无关。在氧化物玻璃中添加28 e / o N导致T-g增加94-105℃,粘度增加约5个数量级。这些变化大于在类似的含铝玻璃中报道的变化。 T-g的线性增加和含氮量的玻璃的致密性归因于玻璃网络交联的增强。 (C)2005年Springer Science + Business Media,Inc.

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