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Developing geopolymer concrete by using cold-bonded fly ash aggregate, nano-silica, and steel fiber

机译:利用冷粘结粉煤灰骨料,纳米二氧化硅和钢纤维开发地聚合物混凝土

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This experimental study presents the effect of nano-silica and steel fiber on the transport properties and compressive strength of alkali-activated slag/fly ash concrete incorporated cold-bonded fly ash aggregate. In order to reduce energy consumption and provide environmental impact, the cold-bonded process was used to manufacture cold-bonded fly ash aggregate. Twenty four geopolymer concrete mixtures incorporated cold-bonded fly ash aggregate, nano-silica, and steel fiber were produced with sodium hydroxide concentration of 12 M and cured at ambient temperature. Transport properties of geopolymers were examined through water penetration, water sorptivity, and gas permeability at 28 and 90 days. Results indicate that geopolymer concrete incorporated cold-bonded fly ash aggregate can be produced with compressive strength as high as 28.23 and 36.62 at 28 and 90 days, respectively. However, 2% nano-silica and 1% steel fiber volume fraction were the most significant parameters that caused remarkable improvement of investigated properties. Moreover, the incorporation of waste materials in aggregate and geopolymer concrete production can alleviate environmental problems. (C) 2018 Published by Elsevier Ltd.
机译:该实验研究提出了纳米二氧化硅和钢纤维对掺入冷粘结粉煤灰骨料的碱活化矿渣/粉煤灰混凝土的输送性能和抗压强度的影响。为了减少能耗并提供环境影响,采用了冷粘合工艺来制造冷粘合粉煤灰骨料。制备了24种含有冷粘结粉煤灰骨料,纳米二氧化硅和钢纤维的地质聚合物混凝土混合物,其氢氧化钠浓度为12 M,并在环境温度下固化。通过在28天和90天时的水渗透性,吸水率和透气性检查了地质聚合物的传输特性。结果表明掺入冷粘结粉煤灰骨料的地聚合物混凝土可以在28天和90天时分别具有28.23和36.62的抗压强度。然而,最重要的参数是2%的纳米二氧化硅和1%的钢纤维体积分数,这导致所研究性能的显着改善。而且,在骨料和地质聚合物混凝土生产中掺入废料可以减轻环境问题。 (C)2018由Elsevier Ltd.发布

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