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Mechanisms of Alkali-Silica Reaction in Alkali-Activated High-Volume Fly Ash Mortars

机译:碱活化的高掺量粉煤灰砂浆中碱硅反应的机理

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Alkali-activation of high-volume fly ash (HVFA) is a viable approach to produce durable cementitious binders with faster and stronger strength development than its water-activated counterparts. However, the use of alkaline activator increases the risk of alkali-silica reaction (ASR) in these systems. In this work, the compressive strength and ASR susceptibility of alkali-activated fly ash-OPC mortars containing reactive aggregate are studied. The results show that in comparison to plain water-activated fly ash-OPC mixture, the alkali incorporation at a low concentration improves strength development only when the fly ash replacement ratio is higher than about 80%; however, excessive alkali has an adverse influence. Regardless of activator type and dosage, alkali-activated fly ash-OPC mortars are ASR innocent as assessed in the accelerated mortar bar test and scanning electron microscopic analysis, provided that the fly ash percentage higher than about 40%. The mechanism for the insignificant ASR expansion and damage in alkali-activated HVFA mortars is likely attributed to the low calcium content that prevents gelation of deleterious and expansive ASR products.
机译:高容量粉煤灰(HVFA)的碱活化是一种生产耐用水泥胶结剂的可行方法,与水活化的胶结剂相比,胶结剂的强度发展更快,更强。但是,在这些系统中使用碱活化剂会增加碱硅反应(ASR)的风险。在这项工作中,研究了含活性骨料的碱活化粉煤灰-OPC砂浆的抗压强度和ASR敏感性。结果表明,与普通水活化的粉煤灰-OPC混合物相比,低浓度的碱引入仅在粉煤灰替代率高于约80%时才改善强度发展。但是,过量的碱有不利影响。无论活化剂的类型和用量如何,碱化粉煤灰-OPC砂浆在加速砂浆棒试验和扫描电子显微镜分析中均无毒,只要粉煤灰百分比高于40%。碱活化的HVFA砂浆中ASR膨胀和损伤微不足道的机理很可能归因于钙含量低,阻止了有害和膨胀的ASR产品胶凝。

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