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Mechanisms of autogenous shrinkage of alkali-activated slag and fly ash pastes

机译:碱活性炉渣和粉煤灰浆料自生收缩机制

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摘要

This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-based alkali-activated materials (AAMs) cured at ambient temperature. The main reaction products in AAMs pastes are C-A-SH type gel and the reaction rate decreases when slag is partially replaced by fly ash. Due to the chemical shrinkage and the fine pore structure of AAMs pastes, drastic drop of internal relative humidity is observed and large pore pressure is generated. The pore pressure induces not only elastic deformation but also a large creep of the paste. Besides the pore pressure, other driving forces, like the reduction of steric-hydration force due to the consumption of ions, also cause a certain amount of shrinkage, especially in the acceleration period. Based on the mechanisms revealed, a computational model is proposed to estimate the autogenous shrinkage of AAMs. The calculated autogenous shrinkage matches well with the measured results.
机译:本研究旨在更好地理解在环境温度下固化的炉渣和粉煤灰基碱活化材料(AAM)的自体收缩。 AAMS浆料中的主要反应产物是C-A-SH型凝胶,当炉渣部分取代时,反应速率降低。 由于化学收缩和AAMS糊的细孔结构,观察到内部相对湿度的激烈滴,产生大的孔隙压力。 孔隙压力不仅诱导弹性变形,而且迫使糊状蠕变。 除了孔隙压力之外,其他驱动力,与离子消耗引起的空间 - 水合力的降低也会导致一定量的收缩,特别是在加速期间。 基于揭示的机制,提出了一种计算模型来估计AAMS的自生收缩。 计算的自生收缩与测量结果良好。

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