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Effect of Nano-CaCO3 on the Mechanical Properties and Durability of Concrete Incorporating Fly Ash

机译:纳米CaCO3对粉煤灰混凝土机械性能及耐久性的影响

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Concrete mixtures consisting of nanomaterials and fly ash have been shown to be effective for improving the performance of concrete. This study investigates the combined effects of nano-CaCO3 and fly ash on the mechanical properties and durability of concrete; the mix proportion is optimized through orthogonal experiments. In the first phase, nine concrete mixtures were prepared with three water-to-binder ratios (0.4, 0.5, and 0.6), three fly ash contents (15%, 20%, and 25% replacement of the cement weight), and three nano-CaCO3 contents (1%, 2%, and 3% replacement of the cement weight). Based on the orthogonal analysis, the optimal concrete mix proportion was determined as a water-to-binder ratio of 0.4, 20% fly ash, and 1% nano-CaCO3. In the second phase, further investigations were carried out to examine the superiority of the optimal concrete and evaluate the synergistic effect of nano-CaCO3 and fly ash. The results showed that nano-CaCO3 contributed to increasing the compressive strength of fly ash concrete at the early ages, but its effect was quite limited at later ages. Furthermore, the scanning electron microscopy analysis revealed that the seeding effect, filling effect, and pozzolanic effect were the primary mechanisms for the improvement of concrete performance.
机译:已显示由纳米材料和粉煤灰组成的混凝土混合物可有效改善混凝土的性能。本研究研究了纳米Caco3和粉煤灰对混凝土机械性能和耐久性的综合影响;通过正交实验优化混合比例。在第一阶段,用三种水 - 粘合剂比(0.4,0.5和0.6),三个粉煤灰(15%,20%,25%更换水泥重量)制备九个混凝土混合物,以及三个纳米CaCO 3含量(1%,2%和3%的水泥重量)。基于正交分析,确定最佳的混凝土混合比例为0.4,20%飞灰和1%纳米CaCO 3的水 - 粘合剂比例。在第二阶段,进行了进一步的研究,以检查最佳混凝土的优越性,评价纳米CaCO3和粉煤灰的协同作用。结果表明,纳米CACO3有助于提高粉煤灰混凝土在早期的粉煤灰混凝土的抗压强度,但其效果在后来的年龄非常有限。此外,扫描电子显微镜分析表明,播种效应,灌装效果和波佐效应是改善混凝土性能的主要机制。

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