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Alkali-silica reactivity of alkali-activated concrete subjected to ASTM C 1293 and 1567 alkali-silica reactivity tests

机译:碱活化混凝土的碱 - 二氧化硅反应性对ASTM C 1293和1567碱 - 二氧化硅反应性试验进行

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This paper presents an experimental investigation of the alkali-silica reactivity of alkali-activated concrete (AAC). Some researchers suggest that the high alkalinity of the pore solution could make AAC more susceptible to alkali-silica reaction (ASR) than comparable ordinary Portland cement (OPC) concrete, perhaps even with aggregates that are normally considered non-reactive. Many have further questioned the suitability of standardized ASR test methods for use with AAC. In an attempt to resolve this controversy, the authors subjected OPC, alkali-activated fly ash (AAF), and alkali-activated slag (AAS) concrete made with both reactive and non-reactive aggregates to accelerated and long-term ASR test protocols (ASTM C1567 and C1293). Paradoxically, some AAS mixtures with non-reactive aggregates showed significant expansion while AAF mixtures with reactive aggregates expanded minimally. AAS mixtures with reactive aggregates underwent extremely high expansions. Microstructural evaluation using scanning electron microscopy revealed significant cracking but did not identify ASR gel in the majority of specimens.
机译:本文提出了碱活化混凝土(AAC)碱 - 二氧化硅反应性的实验研究。一些研究人员表明,孔隙溶液的高碱度可以使AAC更容易受到碱 - 二氧化硅反应(ASR)的易普通植物 - 二氧化硅(OPC)混凝土,也许是通常被认为是非反应性的聚集体。许多人进一步质疑标准化ASR试验方法与AAC一起使用的适用性。试图解决这一争议,作者受到的OPC,碱活化的粉煤灰(AAF)和用反应性和非反应性聚集体制成的碱活化炉渣(AAS)混凝土,以加速和长期ASR测试方案( ASTM C1567和C1293)。矛盾的是,具有非反应性聚集体的一些AAS混合物显示出显着的膨胀,而具有反应性聚集体的AAF混合物最小化。具有反应性聚集体的AAS混合物经历了极高的膨胀性。使用扫描电子显微镜的微观结构评估显示出显着的裂缝,但未识别大多数样本中的ASR凝胶。

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