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Influence of fictive temperature and composition of silica glass on anomalous elastic behaviour

机译:虚构温度和石英玻璃成分对反常弹性行为的影响

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In order to determine the influence of the thermal history (fictive temperature) and OH content on the elastic properties of silica glass, we have investigated high resolution in situ Brillouin experiments on SiO2 glass from room temperature to the supercooled liquid at 1773 K across the glass transition. The well known anomalous increase of elastic modulus in the glassy state and in the supercooled liquid regime is observed. No change in the slope of the elastic moduli of silica appears as a characteristic of the glass transition, in contrast to what happens in various other glasses. We show that thermal history has a weak effect on elastic moduli in the glass transition regime for silica glass. The effect of the water content in silica glass is greater than the fictive temperature effect and gives larger changes in the amplitude of the elastic modulus for the same thermal dependence. A singular decrease above 1223 K is also observed in the shear moduli for hydrated samples. Different models explaining the temperature dependence of the elastic properties in relationship with frozen-in density fluctuations or with the structure are discussed.
机译:为了确定热历史(虚构温度)和OH含量对石英玻璃弹性性能的影响,我们研究了在室温下从SiO2玻璃到整个玻璃中1773 K的过冷液体的高分辨率原位布里渊实验。过渡。观察到在玻璃态和过冷液体状态下弹性模量的异常增加。与其他各种玻璃相比,二氧化硅的弹性模量斜率没有变化是玻璃转变的特征。我们表明,热历史对石英玻璃的玻璃化转变过程中的弹性模量影响很小。石英玻璃中水含量的影响大于虚拟温度的影响,并且在相同的热依赖性下,弹性模量的幅度会发生较大变化。在水合样品的剪切模量中也观察到了高于1223 K的奇异降低。讨论了不同的模型,这些模型解释了弹性特性随冻结密度波动或结构的温度依赖性。

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