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Predicting Viscosity and Surface Tension at High Temperature of Porcelain Stoneware Bodies: A Methodological Approach

机译:预测瓷Stone器本体高温下的粘度和表面张力的方法学方法

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摘要

The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understand the viscous flow sintering kinetics of porcelain stoneware. Moreover, the pyroplastic deformation depends on the viscosity of the whole body, which is made up of a suspension of crystals dispersed in the melt. The existing fundamental theoretical background, along with semi-empirical constitutive laws for viscous flow sintering and glass densification, can be exploited through different approaches to estimate the physical properties at high temperatures starting from amount and chemical composition of the melt. In this work, a comprehensive attempt to predict the properties of the liquid phase is proposed by means of a detailed overview of existing models for viscosity and surface tension of glasses and melts at high temperature. The chemical composition of the vitreous phase and its physical properties at high temperature are estimated through an experimental approach based on the qualitative and quantitative chemical and phase analyses (by Rietveld refinement of X-ray powder diffraction patterns) of different porcelain-like materials. Repercussions on the firing behavior of ceramic bodies, are discussed. Comparative examples are provided for porcelain stoneware tiles, vitreous china and porcelain bodies, disclosing differences in composition and properties but a common sintering mechanism.
机译:高温下的剪切粘度和玻璃蒸气表面张力对于了解瓷器的粘性流烧结动力学至关重要。此外,热塑性变形取决于整个主体的粘度,该主体的粘度由分散在熔体中的晶体悬浮液组成。现有的基本理论背景,以及用于粘性流烧结和玻璃致密化的半经验本构定律,可以通过不同的方法来利用,从熔体的量和化学组成出发,估算高温下的物理性能。在这项工作中,通过对玻璃和熔体在高温下的粘度和表面张力的现有模型的详细概述,提出了一种全面的尝试来预测液相的性质。通过基于不同瓷样材料的定性和定量化学和相分析(通过X射线粉末衍射图的Rietveld精炼)的实验方法,估算了玻璃相的化学组成及其在高温下的物理性质。讨论了对陶瓷体烧成行为的影响。提供了对瓷examples砖,瓷质瓷器和瓷器的比较例,揭示了成分和性能的差异,但有一个常见的烧结机理。

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