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Compositional Models of Glass/Melt Properties and their Use for Glass Formulation

机译:玻璃/熔融性能的组成模型及其用于玻璃配方的用途

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Nuclear waste glasses must simultaneously meet a number of criteria related to their processability, product quality, and cost , factors. The properties that must be controlled in glass formulation and waste vitrification plant operation tend to vary smoothly with composition allowing for glass property-composition models to be developed and used. Models have been fit to the key glass properties. The properties are transformed so that simple functions of composition (e.g., linear, polynomial, or component ratios) can be used as model forms. The model forms are fit to experimental data designed statistically to efficiently cover the composition space of interest. Examples of these models are found in literature. The glass property-composition models, their uncertainty definitions, property constraints, and optimality criteria are combined to formulate optimal glass compositions, control composition in vitrification plants, and to qualify waste glasses for disposal. An overview of current glass property-composition modeling techniques is summarized in this paper along with an example of how those models are applied to glass formulation and product qualification at the planned Hanford high-level waste vitrification plant.
机译:核废料眼镜必须同时满足与其可加工性,产品质量和成本有关的许多标准。必须在玻璃配方和废玻璃化工厂操作中控制的性质往往与允许开发和使用的玻璃性能组合物模型的组成顺畅变化。模型适合关键玻璃性质。转化性质,使得组合物(例如,线性,多项式或组分比率)的简单功能可以用作模型形式。模型形式适合于设计统计上的实验数据,以有效地覆盖其感兴趣的构图空间。这些模型的实例在文献中找到。将玻璃性质 - 组合模型,它们的不确定定义,性质约束和最优性标准组合以配制最佳的玻璃组合物,玻璃化植物中的控制组合物,并限定废眼镜进行处理。本文总结了当前玻璃性能 - 成分建模技术的概述,以及这些模型如何应用于计划的Hanford高水平废玻璃化厂的玻璃制剂和产品资格的示例。

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