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Effects of elevated temperature on pumice based geopolymer composites

机译:高温对浮石基地质聚合物复合材料的影响

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摘要

Aluminosilicate type materials can be activated in alkaline environment and can produce geopolymer cements with low environmental impacts. Geopolymers are believed to provide good fire resistance so the effects of elevated temperatures on mechanical and microstructural properties of pumice based geopolymer were investigated in this study. Pumice based geopolymer was exposed to elevated temperatures of 100, 200, 300, 400, 500, 600, 700 and 800 degrees C for 3 h. The residual strength of these specimens were determined after cooling at room temperature as well as ultrasonic pulse velocity, and the density of pumice based geopolymer pastes before and after exposing to high temperature was determined. Microstructures of these samples were investigated by Fourier transform infrared for all temperatures and SEM analyses for samples that were exposed to 200, 400, 600 and 800 degrees C. Specimens, which were initially grey, turned whitish accompanied by the appearance of cracks as temperatures increased to 600 and 800 degrees C. Consequently, compressive strength losses in geopolymer paste were increased with increasing temperature level. On the other hand, compressive strength of geopolymer paste was less affected by high temperature in comparison with the ordinary Portland cement. As a result of this study, it is concluded that pumice based geopolymer is useful in compressive strength losses exposed to elevated temperatures.
机译:硅铝酸盐类材料可以在碱性环境中活化,并且可以生产对环境影响较小的地质聚合物水泥。人们认为地质聚合物具有良好的耐火性,因此在这项研究中研究了高温对浮石基地质聚合物的机械和微观结构性能的影响。浮石基地质聚合物暴露于100、200、300、400、500、600、700和800摄氏度的高温下3小时。在室温下冷却后以及超声脉冲速度下测定这些样品的残余强度,并测定暴露于高温之前和之后的浮石基地质聚合物浆料的密度。这些样品的微观结构在所有温度下均通过傅里叶变换红外光谱进行了研究,并通过SEM分析了暴露于200、400、600和800摄氏度的样品。最初呈灰色的标本发白,并随温度升高而出现裂纹至600和800℃。因此,随着温度水平的升高,地质聚合物浆中的抗压强度损失增加。另一方面,与普通波特兰水泥相比,地聚合物糊的抗压强度受高温的影响较小。这项研究的结果是,得出的结论是,浮石基地质聚合物在暴露于高温下的抗压强度损失中很有用。

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