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An experimental study on effect of Colloidal Nano-Silica on tetranary blended concrete

机译:胶体纳米二氧化硅对四甘蓝混合混凝土影响的实验研究

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摘要

The possibility of using a combination of mineral admixtures as a replacement for cement may reduce the CO2 emission which causes global warming and climatic changes on the environment. By using the combination of different by-products from various industries, for replacing cement in concrete leads to saving in energy and natural resources. In this article, an attempt has been made to study the mechanical and water absorption properties of concrete incorporated with combination of Fly ash (FA), Alccofine (ALC) and Collodial Nano Silica (CNS) at 7, 28 and 56 days curing period. Cement has been partially replaced by combination of FA at 25%, ALC at 10% and CNS at 0.5%, 1%, 2% and 3% with water cement ratio of 0.43. The result indicates that the incorporation of combination of FA, ALC and CNS can be very effective in improvement of mechanical and water absorption properties of concrete. The Mix with a combination of 25% FA, 10% ALC and 1% CNS is most effective in improvement of mechanical and water absorption properties as compared with all other mixes.
机译:使用矿物混合物组合作为水泥的替代的可能性可以减少CO2排放,这导致全球变暖和环境的气候变化。通过采用不同行业的不同副产品的组合,用于更换混凝土中的水泥,以节省能源和自然资源。在本文中,已经尝试研究混凝土的机械和吸水性能,其掺入粉煤灰(FA),alcofine(ALC)和胶凝纳米二氧化硅(CNS)的组合,在7,28和56天固化期。水泥已被Fa以25%,ALC的组合部分替换为10%,CNS,水水泥比为0.43的0.5%,1%,2%和3%。结果表明,在改善混凝土的机械和吸水性的改善方面,掺入FA,ALC和CNS的结合可以非常有效。与所有其他混合物相比,具有25%Fa,10%ALC和1%CNS的组合,最有效地改善机械和吸水性。

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