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Alteration in the Microstructure of Fly Ash Geopolymers Upon Exposure to Elevated Temperatures

机译:在暴露于升高温度下粉煤灰地质聚合物的微观结构改变

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This paper represents the mechanical and microstructure changes in geopolymeric material synthesized by the alkali activation of locally source fly ash at high temperatures of 400, 600 and 800°C. The high compressive strength of geopolymer cured at 70°C underwent thermal shrinkage and substantial strength losing at temperatures of 400, 600°C caused by the high dehydration of the structural water. Exposure to temperature of 800°C, the geopolymer lost its strength due to extremely densification and expansion processes of the high unreacted silicate phase in the structure. The SEM results showed that the high activator content generated large quantities of unreacted silicate crystals at high temperatures which sintered at range of temperatures of 700-800°C causing system failure.
机译:本文代表了在400,600和800℃的高温下局部源粉煤灰的碱活化合成的地质聚合物材料的机械和微观结构变化。地质聚合物的高抗压强度在70℃下固化的热收缩率和在400,600℃的温度下失去的大量强度,由结构水的高脱水引起。暴露于800℃的温度,由于结构中的高未反应硅酸盐相的极其致密化和膨胀过程,地质聚合物失去了强度。 SEM结果表明,高活化剂含量在高温下产生大量未反应的硅酸盐晶体,其在700-800℃的温度范围内烧结,导致系统衰竭。

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