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Thermodynamic modeling in glass-forming melts

机译:玻璃成型熔体中的热力学建模

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摘要

Thermodynamic database computing systems combine extensive databases with general software for calculating the conditions of chemical equilibrium. Databases for non-ideal solution phases are obtained by critical evaluation of available data on sub-systems to obtain optimized parameters of model equations. With the advent of models and evaluated databases for oxide melts/glasses, these computing systems have many applications of interest in glass science and engineering which are demonstrated by sample calculations in the present article. First, the authors' modified quasichemical model for the melt/glass phase is reviewed. Following this, a new critical evaluation/optimization of the Na_2O-CaO-SiO_2 system is presented. Finally, the authors' model for the chemical dissolution of gases as sulfate, sulfide, phosphate, halide and carbonate in oxide melts/glasses is reviewed. Solubilities are calculated a priori, from a knowledge of the thermodynamic activities of the component oxides, with no adjustable parameters. Agreement with measurements is obtained within experimental uncertainty for solubilities in multicomponent oxide melts/glasses over a wide range of components and compositions.
机译:热力学数据库计算系统将广泛的数据库与用于计算化学平衡条件的通用软件结合在一起。通过对子系统上可用数据进行严格评估来获得非理想解决方案阶段的数据库,以获得模型方程的优化参数。随着氧化物熔体/玻璃的模型和评估数据库的出现,这些计算系统在玻璃科学和工程中具有许多令人感兴趣的应用,本文通过样本计算证明了这些应用。首先,回顾了作者针对熔融/玻璃相的改进的准化学模型。在此之后,提出了对Na_2O-CaO-SiO_2系统的新的关键评估/优化方法。最后,回顾了作者关于氧化物熔体/玻璃中气体如硫酸盐,硫化物,磷酸盐,卤化物和碳酸盐的化学溶解模型。根据组分氧化物的热力学活性的知识,先验地计算溶解度,没有可调整的参数。在多种成分和组成范围内的多组分氧化物熔体/玻璃的溶解度的实验不确定性范围内,获得与测量值的一致性。

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