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The effects of ground granulated blast-furnace slag blending with fly ash and activator content on the workability and strength properties of geopolymer concrete cured at ambient temperature

机译:粉煤灰和活化剂含量的高炉矿渣粉对环境温度下固化的地聚合物混凝土的可加工性和强度性能的影响

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摘要

Inclusion of ground granulated blast-furnace slag (GGBFS) with class F fly-ash can have a significant effect on the setting and strength development of geopolymer binders when cured in ambient temperature. This paper evaluates the effect of different proportions of GGBFS and activator content on the workability and strength properties of fly ash based geopolymer concrete. In this study, GGBFS was added as 0%, 10% and 20% of the total binder with variable activator content (40% and 35%) and sodium silicate to sodium hydroxide ratio (1.5-2.5). Significant increase in strength and some decrease in the workability were observed in geopolymer concretes with higher GGBFS and lower sodium silicate to sodium hydroxide ratio in the mixtures. Similar to OPC concrete, development of tensile strength correlated well with the compressive strength of ambient-cured geopolymer concrete. The predictions of tensile strength from compressive strength of ambient-cured geopolymer concrete using the ACI 318 and AS 3600 codes tend to be similar to that for OPC concrete. The predictions are more conservative for heat-cured geopolymer concrete than for ambient-cured geopolymer concrete.
机译:当在环境温度下固化时,将粉状高炉矿渣(GGBFS)与F级粉煤灰一起使用可能会对地质聚合物粘合剂的凝结和强度发展产生重大影响。本文评估了不同比例的GGBFS和活化剂含量对粉煤灰基高分子聚合物混凝土的可加工性和强度性能的影响。在这项研究中,GGBFS的添加量为总粘合剂的0%,10%和20%,其中活化剂含量可变(40%和35%),硅酸钠与氢氧化钠之比(1.5-2.5)。在混合物中,GGBFS较高且硅酸钠与氢氧化钠的比例较低的地聚合物混凝土中,强度显着提高,而可使用性则有所降低。类似于OPC混凝土,抗张强度的提高与环境固化土工聚合物混凝土的抗压强度密切相关。使用ACI 318和AS 3600规范从环境固化的地质聚合物混凝土的抗压强度预测抗拉强度趋于与OPC混凝土相似。对于热固化土聚合物混凝土,其预测要比对环境固化土聚合物混凝土的预测更为保守。

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