煤矸石粒度对地聚合物力学性能的影响

B. Figiela, K. Korniejenko, A. Bulut, B. Şahin, G. Azizağaoğlu, K. Pławecka, B. Kozub
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引用次数: 1

摘要

地聚合物是由硅和铝在缩聚反应中合成的无机材料。在这项研究中,来自Wieczorek矿的煤矿废料被用于生产地聚合物。由于物料尺寸大,因此要事先准备、粉碎和碾磨。该物料经过筛分分析,可以区分出三个馏分。下一步是对得到的粉末粒度进行热活化。经热活化后,与碱性溶液结合制备地聚合物。显微结构的照片是为了确定地聚合物的化学成分和研究相组成。粒径在200µm-19 MPa和5.7 MPa之间的地聚合物样品具有最佳的抗压强度和抗弯强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the Size of Milled Coal Gangue Particles on the Mechanical Properties of Geopolymers
: Geopolymers are inorganic materials resulting from the synthesis of silicon and aluminum in a polycondensation reaction. In this study, coal mine waste material from the Wieczorek mine in the ´Sl ˛askie Voivodeship was used to produce geopolymers. The material was prepared, crushed and milled beforehand due to its large dimensions. The material was subjected to sieve analysis, which allowed to distinguish three fractions. The next step was thermal activation of the obtained powder grain sizes. After thermal activation, the material was combined with an alkaline solution to prepare geopolymers. Photographs of the microstructure were taken in order to determine the chemical composition of the geopolymer and to study the phase composition. The best compressive and bending strengths were exhibited by geopolymer samples with particle sizes ranging below 200 µ m—19 MPa and 5.7 MPa, respectively.
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