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Effects of colloidal nanosilica on Theological and mechanical properties of fly ash-cement mortar

机译:胶态纳米二氧化硅对粉煤灰水泥砂浆力学性能的影响

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The present study is aimed at investigating the combined effects of colloidal nanosilica (CNS) and fly ash on the properties of cement-based materials. The fresh and hardened properties of mixtures with CNS of 10 nm size and two Class F fly ashes were evaluated. Results revealed that CNS accelerates the setting of fly ash-cement systems by accelerating cement hydration, while fly ash can offset the reduction in fluidity caused by CNS. The early-age strength gain (before 7 d) of fly ash-cement systems was improved by CNS. However, the strength gain of mixtures with CNS diminished at later ages (after 28 d), where strength was eventually comparable to or exceeded by mixtures without CNS. Results showed that lack of Ca(OH)_2, which results from the high pozzolanic reactivity of CNS at early ages, and the hydration hindrance effect of CNS on cement at later ages can be the critical reasons.
机译:本研究旨在研究胶体纳米二氧化硅(CNS)和粉煤灰对水泥基材料性能的综合影响。评价了具有10 nm尺寸的CNS和两种F级飞灰的混合物的新鲜和硬化性能。结果表明,中枢神经系统通过加速水泥水合作用来加速粉煤灰水泥系统的凝结,而粉煤灰可以抵消中枢神经系统引起的流动性下降。 CNS改善了粉煤灰水泥系统的早期强度增长(7天之前)。然而,具有中枢神经系统的混合物的强度增加在以后的年龄(28天后)减弱,最终强度可与没有中枢神经系统的混合物相比或超过。结果表明,CaS(OH)_2的缺乏是由CNS在早期的高火山灰反应性引起的,而CNS在后期对水泥的水合阻碍作用可能是关键原因。

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