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Effect of Particle Size on Physical and Mechanical Properties of Fly Ash Based Geopolymers

机译:粒径对粉煤灰基地质物理性能的影响

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摘要

The particle size of fly ash has influenced the physical and mechanical properties of geopolymers. Fly ash completely was ground to different pre-decided sizes, sieve sizes 180 mu m, 90 mu m and 45 mu m (80 mesh, 170 mesh, 325 mesh) for formulation of geopolymer paste, and two activators were used: 8(M) NaOH and 1:1 mixture of NaOH and Na2SiO3. The heat evolution increased with increasing fineness of fly ash. The increase in ambient temperature enhanced the extent of geopolymerization. The maximum heat flow was obtained with the finest fly ash particle of size 45-mu m (325 mesh). The microstructures of the various geopolymers revealed the compactness of the structure which had the finest 45-mu m (325 mesh) particle size and silicate-activated geopolymers. Apparent porosity was found to decrease with increasing fineness and addition of sodium silicate. Mercury intrusion porosimetry (MIP) revealed the total porosity; median pore size and average pore diameter were found to decrease with increasing fineness. However, mesopores were seen to be more in 45-mu m (325 mesh) fly ash geopolymers compared to 180-mu m (80 mesh) fly ash geopolymers. Compressive strengths of geopolymer formed by 45-mu m (325 mesh) particle size had greater compressive strength in comparison with the coarser one. Inclusion of sodium silicate in the activator solution was helped in enhancing the compressive strength.
机译:粉煤灰的粒径影响了地质聚合物的物理和力学性能。粉煤灰完全接地为不同的预定定位尺寸,筛尺寸为180μm,90μm和45μm(80目,170目,325目)用于配制地缘聚合物浆料,并使用两个活化剂:8(m )NaOH和1:1 NaOH和Na2SiO3的混合物。随着粉煤灰的细度的增加,热进化增加。环境温度的增加增强了地缘聚合物的程度。获得最大粉煤灰粒径45-mu m(325目)的最大热流。各种地质聚合物的微观结构揭示了具有最好的45μm(325目)粒径和硅酸盐活化的地质聚合物的结构的紧凑性。发现表观孔隙率随着细度的增加和加入硅酸钠而降低。汞侵入孔隙瘤(MIP)揭示了总孔隙率;发现中位孔径和平均孔径随着细度的增加而降低。然而,与180-mu m(80目)粉煤灰地质聚合物相比,观察到45亩(325目)粉煤灰地质聚合物更少于45亩。与较粗构物相比,由45-mu m(325目)粒度形成的缘聚合物的抗压强度具有更大的抗压强度。在活化剂溶液中包含硅酸钠在增强压缩强度方面得到了帮助。

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