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首页> 外文期刊>Физиκа и химия стеκла >THERMODYNAMIC MODELING OF THE BaO-SiO2 AND SrO-SiO2 BINARY MELTS
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THERMODYNAMIC MODELING OF THE BaO-SiO2 AND SrO-SiO2 BINARY MELTS

机译:BaO-SiO2和SrO-SiO2二元熔体的热力学模型

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The evaluation of the thermodynamic properties and the phase diagrams for the binary BaO-SiO2 and SrO-SiO2 systems is carried out using a structural model for silicate melts and glasses. This thermodynamic model is based on the assumption that an addition of metal oxides to silica results in the depolymerization of the silicon-oxygen network, with a characteristic free energy change. A least squares optimization program permits all available thermodynamic and phase diagram data to be optimized simultaneously. In this manner, data for the above binary systems have been analysed and represented with a small number of parameters. The resulting equations represent the thermodynamic and phase diagram data for the alkaline-earth oxide-silica systems within en'or limits for most of the experimental data. In particular, the measured limiting liquidus slope, at X_(SiO2) = 1, is well reproduced.
机译:使用硅酸盐熔体和玻璃的结构模型对二元BaO-SiO2和SrO-SiO2系统的热力学性质和相图进行了评估。该热力学模型基于以下假设:向二氧化硅中添加金属氧化物会导致硅氧网络解聚,并具有特征性的自由能变化。最小二乘优化程序允许同时优化所有可用的热力学和相图数据。以这种方式,已经分析了上述二进制系统的数据并用少量参数表示。所得方程式代表了大部分实验数据在一定范围内的碱土金属氧化物-二氧化硅系统的热力学和相图数据。特别是,在X_(SiO2)= 1时测得的极限液相线斜率得到了很好的再现。

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