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Effects of pulverized fuel ash on alkali-silica reaction in concrete

机译:粉煤灰对混凝土碱硅反应的影响

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摘要

The partial replacement of Portland cement (PC) by pulverized fuel ash (PFA) in a series of potentially reactive concretes significantly reduced expansion due to alkali-silica reaction (ASR) in high alkali mixes, whereas, in marginally reactive concretes with lower alkali levels, 25% addition of a high alkali PFA slightly increased the expansion compared with that developed by the equivalent PC mix. This extra expansion, however, was insignificant in terms of the likelihood of causing physical damage. Pore solution analysis indicated a continuing slow release of potassium ions from the PFA but the observed relationships between ASR expansion and pore solution composition of the various concretes studied were somewhat unclear. Petrographic analysis suggested that although no significant expansion-induced microcracking was observed in the cement matrix of PFA concretes, the degree of internal microcracking and gel formation in the reactive aggregate particles was very similar to that seen in the equivalent mixes containing no PFA. This suggests that physical changes to the cement matrix as well as variations in the pore solution alkalinity affect the degree of ASR expansion developed by concretes containing PFA.
机译:在一系列可能具有反应活性的混凝土中,用粉煤灰(PFA)部分替代波特兰水泥(PC)可显着降低由于高碱混合料中的碱-硅反应(ASR)而引起的膨胀,而在碱含量较低的少量反应性混凝土中,与同等PC混合物相比,添加25%的高碱PFA会使膨胀略有增加。但是,就造成物理损坏的可能性而言,这种额外的扩展是微不足道的。孔溶液分析表明钾离子从PFA中持续缓慢释放,但是所研究的各种混凝土的ASR膨胀与孔溶液组成之间观察到的关系有些不清楚。岩相分析表明,尽管在PFA混凝土的水泥基体中未观察到明显的膨胀诱发的微裂纹,但反应性骨料颗粒的内部微裂纹和凝胶形成的程度与不含PFA的等效混合物中所观察到的非常相似。这表明水泥基质的物理变化以及孔隙溶液碱度的变化会影响含PFA的混凝土产生的ASR膨胀程度。

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