Kohout Jan, Koutník Petr, Hájková Pavlína, Kohoutová Eliška, Soukup Aleš
ORLEN UniCRE a.s., Revoluční 1521/84, 400 01 Ústí nad Labem, Czech Republic.
Department of Material Science, Faculty of Mechanical Engineering, Technical University of Liberec, Studentská 1402/2, 461 17 Liberec, Czech Republic.
Polymers (Basel). 2021 Oct 29;13(21):3754. doi: 10.3390/polym13213754.
A metakaolinite-based geopolymer binder was prepared by using calcined claystone as the main raw material and potassium as the alkaline activator. Chamotte was added (65 vol%) to form geopolymer composites. Potassium hydroxide (KOH) was used to adjust the molar ratio of K/Al and the effect of K/Al on thermo-mechanical properties of geopolymer composites was investigated. This study aimed to analyze the effect of K/Al ratio and exposure to high temperatures (up to 1200 °C) on the compressive and flexural strengths, phase composition, pore size distribution, and thermal dilatation. With an increasing K/Al ratio, the crystallization temperature of the new phases (leucite and kalsilite) decreased. Increasing content of K/Al led to a decline in the onset temperature of the major shrinkage. The average pore size slightly increased with increasing K/Al ratio at laboratory temperature. Mechanical properties of geopolymer composites showed degradation with the increase of the K/Al ratio. The exception was the local maximum at a K/Al ratio equal to one. The results showed that the compressive strength decreases with increasing temperature. For thermal applications above 600 °C, it is better to use samples with lower K/Al ratios (0.55 or 0.70).
以煅烧粘土岩为主要原料、钾为碱性激发剂制备了偏高岭土基地质聚合物粘结剂。添加了65体积%的烧粘土以形成地质聚合物复合材料。使用氢氧化钾(KOH)来调节K/Al摩尔比,并研究了K/Al对地质聚合物复合材料热机械性能的影响。本研究旨在分析K/Al比以及高温(高达1200℃)暴露对抗压强度、抗弯强度、相组成、孔径分布和热膨胀的影响。随着K/Al比的增加,新相(白榴石和钾霞石)的结晶温度降低。K/Al含量增加导致主要收缩起始温度下降。在实验室温度下,平均孔径随K/Al比增加而略有增大。地质聚合物复合材料的力学性能随K/Al比增加而下降。例外情况是在K/Al比等于1时出现局部最大值。结果表明,抗压强度随温度升高而降低。对于600℃以上的热应用,最好使用较低K/Al比(0.55或0.70)的样品。