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Plain and Ultrafine Fly Ashes Mortars for Environmentally Friendly Construction Materials

机译:普通和超细粉煤灰砂浆,用于环保型建筑材料

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This paper is aimed to study the rheological and physical performance of mortars manufactured replacing Portland-based cements with low calcium siliceous fly ash (FA) or ultrafine fly ash (UFFA). Five different types of cement (CEM I, CEM II/A-LL, CEM III/A, CEM III/B, and CEM IV according to EN 197-1) were used. Mortars were manufactured with FA or UFFA replacing 5%, 15%, 25%, 35%, and 50% of cement mass. Results indicate that compressive strength of mortars with UFFA is considerably higher than that of mixtures containing traditional FA, both at early and long ages. Moreover, experimental data reveal that replacement of cement with up to 25% of UFFA determines higher compressive strength at 7, 28, and 84 days than plain mortars (containing cement only), regardless of the type of cement used. Mortars manufactured with 35% or 50% of UFFA show slightly lower or similar compressive strength compared to the reference mortar (containing cement only). In addition, the results show values of the strength activity index of mortars made with FA 25%, 23%, and 20% lower than the reference corresponding mortars (cement only) at 7, 28, and 84 days, respectively. The grinding of FA, despite resulting in an increase in production energy and CO 2 emissions compared to unmilled FA, allows a wide use of these SCM (Supplementary Cementitious Materials) in place of cement, reducing the environmental impact of mortars up to 40% at the 28-day strength class. The use of UFFA ensures better resistance in CaCl 2 -rich environments.
机译:本文旨在研究用低钙硅粉煤灰(FA)或超细粉煤灰(UFFA)代替波特兰水泥的砂浆的流变和物理性能。使用了五种不同类型的水泥(根据EN 197-1的CEM I,CEM II / A-LL,CEM III / A,CEM III / B和CEM IV)。用FA或UFFA代替水泥质量的5%,15%,25%,35%和50%制成砂浆。结果表明,在早期和长期使用UFFA的砂浆的抗压强度均明显高于包含传统FA的砂浆的抗压强度。此外,实验数据表明,与普通砂浆(仅包含水泥)相比,用不超过25%的UFFA代替水泥可确定在7、28和84天时的抗压强度更高,而与所用水泥的类型无关。与参考砂浆(仅包含水泥)相比,用35%或50%UFFA制造的砂浆显示出略低或相似的抗压强度。此外,结果显示,分别在7天,28天和84天时,用FA制得的砂浆的强度活性指数值分别比参考相应的砂浆(仅水泥)低25%,23%和20%。尽管与未碾磨的FA相比,FA的碾磨会导致生产能量和CO 2排放量的增加,但可以广泛使用这些SCM(补充胶凝材料)代替水泥,从而将灰浆对环境的影响降低40% 28天的力量训练。 UFFA的使用可确保在富含CaCl 2的环境中具有更好的耐受性。

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