酸浸玻璃粉的粘性烧结

Roger Gomes Fernandes, R. Al-Mukadam, H. Bornhöft, S. Reinsch, Ralf Müller, Susanne Selle, J. Deubener
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引用次数: 0

摘要

粘流烧结过程是一种与玻璃颗粒表面特性密切相关的现象。在这项工作中,我们研究了两种不同粒度分布的钠钙硅酸盐玻璃微珠的酸浸出极端情况及其对粉末密实体非等温粘流烧结的影响。浸出后的化学成分深度剖面图显示,近表面层的碱和碱土离子含量减少,与同时发生的水合作用有关,因为热重仪检测到了质量损失。加热显微镜显示,随着沥滤时间的延长,玻璃的酸处理使烧结曲线向更高温度移动。用聚类模型对收缩进行建模后发现,改变后的表层粘度较高,而对等时烧结过程中流动物种(Na+、Ca2+ 和 H2O)的质量迁移时间尺度进行分析后发现,Na+ 的扩散可以在烧结开始前补偿浓度梯度。此外,交换的水物种可以扩散出改变层,但改变表层中 Ca2+ 的耗竭在烧结间隔期间持续存在,导致玻璃具有更高的粘度,从而导致烧结速度减慢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viscous Sintering of Acid Leached Glass Powders
The process of viscous flow sintering is a phenomenon that is closely linked to the surface properties of the glass particles. In this work, we studied the extreme case of acid-leaching of soda-lime-silicate glass beads of two different particle size distributions and its effects on non-isothermal viscous sintering of powder compacts. Depth profiling of the chemical composition after leaching revealed a near-surface layer depleted in alkali and alkaline earth ions, associated with concurrent hydration as mass loss was detected by thermogravimetry. Heating microscopy showed that acid treatment of glasses shifted the sinter curves to higher temperatures with increasing leaching time. Modelling of the shrinkage with the cluster model predicted a higher viscosity of the altered surface layer, while analysis of the time scales of mass transport of mobile species (Na+, Ca2+ and H2O) during isochronous sintering revealed that diffusion of Na+ can compensate for concentration gradients before sintering begins. Also, exchanged water species can diffuse out of the altered layer, but the depletion of Ca2+ in the altered surface layer persists during the sinter interval, resulting in a glass with higher viscosity, which causes sintering to slow down.
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