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首页> 外文期刊>Journal of materials in civil engineering >Influence of Limestone Mineral Addition in Cements on the Efficacy of SCMs in Mitigating Alkali-Silica Reaction Assessed by Accelerated Mortar Bar Test
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Influence of Limestone Mineral Addition in Cements on the Efficacy of SCMs in Mitigating Alkali-Silica Reaction Assessed by Accelerated Mortar Bar Test

机译:水泥矿物添加水泥对加速砂浆杆试验评估碱 - 二氧化硅反应效果的影响

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This study evaluates the effect of limestone mineral addition in cement on the efficacy of supplementary cementitious materials (SCMs) in mitigating alkali-silica reaction (ASR) using the accelerated mortar bar test (AMBT). Mortars with and without SCMs were prepared by substituting portions of 0% limestone general portland (GP) cement with increasing amounts of limestone. Mortars with SCMs (25% fly ash or 65% slag) exhibit negligible expansion regardless of the limestone content in the binder, whereas mortars without SCMs exhibit high and almost identical expansion for all limestone substitutions. The expansion results show that limestone does not aggravate ASR, has no detrimental effect on the efficacy of SCMs in ASR mitigation, and likewise has no observable ASR-mitigating properties under the test conditions. The calcium silicate hydrate (C-S-H) composition is not affected by the amount of limestone, which suggests that limestone has no influence on the alkali uptake in the C-S-H. This is supported by the pore solution analysis results where SCMs (both fly ash and slag) have drastically reduced the pore solution alkali concentration over time, whereas limestone substitution only resulted in an alkali reduction equivalent to the substitution (dilution). Moreover, the carboaluminate phases formed when limestone is present were observed to decompose under AMBT conditions; thus, their influence on ASR mitigation is not possible to discern from this study.
机译:本研究评估石灰石矿物添加在水泥上减轻使用加速砂浆棒试验(AMBT)碱 - 二氧化硅反应(ASR)补充胶凝材料(SCMS)的输出的效力的影响。使用和不使用的SCM砂浆通过用增加石灰石的量代0%的石灰石一般波特兰(GP)水泥的部分制备的。用的SCM(25%的飞灰或65%的炉渣)迫击炮表现出可忽略的膨胀而不管在粘合剂中的石灰石的内容,而如果没有的SCM迫击炮表现出对所有石灰石取代高且几乎相同的膨胀。扩展结果表明,石灰石不确实加剧ASR,对的SCM缓解ASR效力没有不利影响,并且同样具有在测试条件下没有观察到ASR缓和特性。的硅酸钙水合物(C-S-H)组合物不受石灰石的量,这表明石灰石对在C-S-H的碱的摄取没有影响。这是由孔溶液分析结果,其中的SCM(包括飞灰和炉渣)已经显着降低随时间的孔隙溶液的碱浓度的支持,而石灰石替代仅导致碱还原等价于取代(稀释)。此外,当本观察AMBT条件下分解石灰石形成carboaluminate相;因此,他们对ASR缓解的影响是不可能的从这项研究辨别。

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