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Fabrication and Fireproofing Performance of the Coal Fly Ash-Metakaolin-Based Geopolymer Foams

机译:粉煤灰-美高岭土基地聚合物泡沫的制备与防火性能

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摘要

This paper aims to investigate the influence of coal fly ash (CFA) addition on the fireproof properties of the metakaolin-based geopolymer foams. The physical properties, thermal conductivity and fire resistance of the CFA-metakaolin-based geopolymer foams are discussed. The CFA-metakaolin-based geopolymer foams achieve a dry density between 259.43 kg/m and 349.73 kg/m , a porosity between 71.78% and 72.98%, a thermal conductivity between 0.0871 W/(m·K) and 0.0944 W/(m·K) and a compressive strength between 0.38 MPa and 0.56 MPa, exhibiting better physical properties than that of the porous blocks without CFA addition. It is also found that the CFA addition could decrease the viscous sintering temperature and change the phase compositions of sintering products, resulting in the porous structure deterioration in a certain extent and obvious rise of the final reverse-side temperature during the fire-resistance tests. Fortunately, the conversion of the amorphous geopolymer gel to ceramics has helped to maintain the main skeleton structure stability. The CFA-metakaolin-based geopolymer foams still exhibit excellent fire resistance, and the reverse-side temperatures are always within 250 °C after 3 h fire-resistance tests.
机译:本文旨在研究粉煤灰(CFA)的添加对偏高岭土基聚合物泡沫防火性能的影响。讨论了CFA-偏高岭土基地质聚合物泡沫的物理性质,导热性和耐火性。 CFA-偏高岭土基地质聚合物泡沫的干密度在259.43 kg / m至349.73 kg / m之间,孔隙率在71.78%至72.98%之间,热导率在0.0871 W /(m·K)至0.0944 W /(m ·K),抗压强度在0.38 MPa至0.56 MPa之间,与不添加CFA的多孔嵌段相比,具有更好的物理性能。还发现添加CFA可以降低粘性烧结温度并改变烧结产物的相组成,从而在耐火性试验中导致多孔结构在一定程度上劣化并且最终反面温度明显升高。幸运的是,无定形地质聚合物凝胶向陶瓷的转化有助于保持主要骨架结构的稳定性。 CFA-偏高岭土基的地质聚合物泡沫仍显示出优异的耐火性,耐火性测试3小时后,反面温度始终在250°C以内。

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