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Evaluation of the ASR of waste glass fine aggregate in alkali activated concrete by concrete prism tests

机译:混凝土棱镜试验评价碱活性混凝土中废玻璃细骨料的ASR

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This paper examined the alkali-silica reaction (ASR) of waste glass cullet in alkali activated concrete (AAC), using the ASTM C1293 concrete prism test (CPT), in comparison to that in ordinary Portland cement (OPC) concrete. Test results showed that the 1-year expansions of OPC concrete and ground granulated blast furnace slag (GGBFS) based AAC were 0.21% and 0.13%, respectively, which exceeded the 0.04% limit of the ASTM standard. However, both fly ash (FA) based AAC and FA-GGBFS blended AAC showed 1-year expansions below the recommended limit. The AAC with 60% GGBFS and 40% FA showed the lowest 1-year expansion of all the concretes studied. The expansions showed consistency with the physical appearance, porosity and hydroxyl ion (OH-) concentration in the solution extracted from the concrete samples. Moreover, a detailed microstructural investigation revealed severe deterioration of glass aggregates when used in both OPC concrete and alkali activated GGBFS concrete due to the formation of calcium (Ca) rich expansive ASR gel. However, the gels formed at the aggregate paste interface of alkali activated FA and FA-GGBFS concrete were not typical ASR gels, since they contained high Al/Si ratios and low Ca/Si ratios. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文使用ASTM C1293混凝土棱镜试验(CPT)检测了碱活性混凝土(AAC)中废玻璃Cullet的碱 - 二氧化硅反应(ASR),与普通波特兰水泥(OPC)混凝土相比。试验结果表明,OPC混凝土和地面粒状高炉渣(GGBF)的AAC的1年膨胀分别为0.21%和0.13%,超过ASTM标准的0.04%极限。然而,基于飞灰(FA)的AAC和FA-GGBFS混合AAC显示出低于推荐限额的1年扩展。具有60%GGBF和40%FA的AAC显示了所研究的所有混凝土的最低1年扩展。扩展显示出从混凝土样品中萃取的溶液中的物理外观,孔隙率和羟基离子(OH-)浓度的一致性。此外,在OPC混凝土和碱活化的GGBFS混凝土中使用的情况下,微观结构研究表明玻璃聚集体的严重劣化由于钙(CA)富膨胀ASR凝胶的形成。然而,在碱活性FA和FA-GGBFS混凝土的骨料糊界面处形成的凝胶不是典型的ASR凝胶,因为它们包含高Al / Si比率和低Ca / Si比率。 (c)2020 elestvier有限公司保留所有权利。

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