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首页> 外文期刊>Journal of Materials Science >Enhanced thermal stability in K2O-metakaolin-based geopolymer concretes by Al2O3 and SiO2 fillers addition
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Enhanced thermal stability in K2O-metakaolin-based geopolymer concretes by Al2O3 and SiO2 fillers addition

机译:Al 2 O 3 和SiO 2 填料增强K 2 O-偏高岭土基地质聚合物混凝土的热稳定性加成

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摘要

Based on the principle of stability of geopolymer gel as refractory binder, a geopolymeric paste in the K2O–Al2O3–SiO2 system was developed and used to produce refractory concretes by adding various amount of α-quartz sand (grain size in the range 0.1 μm to 1 mm) and fine powder alumina (grain size in the range 0.1–100 μm). The consolidated samples were characterized before and after sintering using optical dilatometer, DSC, XRD and SEM. The total shrinkage in the range of 25–900 °C was less than 3%, reduced with respect to the most diffused potassium or sodium based geopolymer systems, which generally records a >5% shrinkage. The maximum shrinkage of the basic geopolymer composition was recorded at 1000 °C with a 17% shrinkage which is reduced to 12% by alumina addition. The temperature of maximum densification was shifted from 1000 °C to 1150 or 1200 °C by adding 75 wt% α-quartz sand or fine powder alumina respectively. The sequences of sintering of geopolymer concretes could be resumed as dehydration, dehydroxylation, densification and finally plastic deformation due to the importance of liquid phase. The geopolymer formulations developed in this study appeared as promising candidates for high-temperature applications: refractory, fire resistant or insulating materials.
机译:根据地聚合物凝胶作为耐火粘结剂的稳定性原理,在K 2 O–Al 2 O 3 –SiO <开发了sub> 2 系统,并通过添加各种数量的α-石英砂(粒度在0.1μm至1 mm之间)和细粉氧化铝(粒度在0.1–100之间)来生产耐火混凝土微米)。固结的样品在烧结之前和之后使用光学膨胀计,DSC,XRD和SEM进行表征。在25-900°C范围内的总收缩率小于3%,相对于扩散最广的钾或钠基地质聚合物体系而言,收缩率通常降低5%以上。在1000℃下记录了基本地质聚合物组合物的最大收缩率,其中17%的收缩率通过添加氧化铝而降低至12%。通过分别添加75 wt%的α-石英砂或细粉氧化铝,最大致密化温度从1000°C变为1150或1200°C。由于液相的重要性,地聚合物混凝土的烧结过程可以恢复为脱水,脱羟基,致密化以及最终的塑性变形。在这项研究中开发的地聚合物配方似乎是高温应用的有前途的候选材料:耐火,耐火或绝缘材料。

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