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Effect of cesium substitution on the thermal evolution and ceramics formation of potassium-based geopolymer

机译:铯替代对钾基地质聚合物的热演化和陶瓷形成的影响

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摘要

The thermal evolution of cesium-substituted potassium-based geopolymer ((K_(1-x)Cs_x)_2O·Al_2O_3·5SiO_2·11H_2O, x = 0, 0.1, 0.2, 0.3, and 0.4) on heating is studied by a variety of techniques. Phase compositions and thermal expansion behaviors of the ceramics derived from the geopolymer are characterized. All of the geopolymer specimens with or without cesium substitution exhibit similar thermal evolution trends. Major weight losses before 600 ℃ from all the geopolymer specimens are observed and are resulted from evaporation of free water and hydroxyl groups. Thermal shrinkage of these specimens can be divided into four stages, i.e. structural resilience, dehydration, dehydroxylation and sintering, according to the dilatometer results. For these specimens, significant difference is observed in the viscous sintering stage and the effect of cesium is to reduce the thermal shrinkage in this stage due to the increased matrix viscosity. In the ceramics derived from geopolymer, the amount of stabilized leucite increases with the amount of cesium and with 20% cesium substitution leucite is fully stabilized in cubic phase.
机译:用多种方法研究了铯取代的钾基地质聚合物((K_(1-x)Cs_x)_2O·Al_2O_3·5SiO_2·11H_2O,x = 0、0.1、0.2、0.3和0.4)的热演化。技术。表征了衍生自地质聚合物的陶瓷的相组成和热膨胀行为。所有具有或不具有铯取代的地聚合物标本都表现出相似的热演化趋势。观察到所有地聚合物样品在600℃之前的主要失重是由于游离水和羟基的蒸发引起的。根据膨胀计的结果,这些样品的热收缩可分为四个阶段,即结构弹性,脱水,脱羟基和烧结。对于这些样品,在粘性烧结阶段观察到显着差异,并且铯的作用是由于基质粘度增加而减少了该阶段的热收缩。在衍生自地质聚合物的陶瓷中,稳定的白云石的数量随铯的数量增加而增加,铯替代率为20%的白云石在立方相中完全稳定。

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