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Effects of Chemical Admixture on Flow and StrengthProperties of Calcined Clay Used as aSupplementary Cementitious Material

机译:化学外加剂对煅烧黏土作为胶凝材料的流动性和强度性能的影响

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Well-proportioned cement-based materials create durable, long-lasting infrastructure which benefit society. However lack of knowledge, availability, and interest result in many West African, Asia, and South American countries using natural or modified pozzolans without chemical admixtures. This study investigated powdered waste clay brick as a pozzolanic supplementary cementitious material (SCM). The calcined clay material was used to replace cement by weight at 10%, 20%, 30% and 40%. Consistent flow was achieved using a polycarboxylate high range water reducing admixture (HRWR). The results indicate that the application of HRWR increased the flow of calcined clay and Portland cement mortar mixtures. The maximum strength obtained for mixtures between Portland cement and calcined clay mortars was 30% replacement of cement by the calcined clay product. The study showed that a well-proportioned mortar mixture could reduce Portland cement content and CO2 significantly without compromising the strength and flow properties of the original mixture.
机译:比例匀称的水泥基材料可创造持久,持久的基础设施,从而造福社会。然而,由于缺乏知识,可用性和兴趣,许多西非,亚洲和南美国家使用了没有化学添加剂的天然或改性火山灰。这项研究调查了粉状废粘土砖作为火山灰补充胶凝材料(SCM)。煅烧的粘土材料用于代替重量为10%,20%,30%和40%的水泥。使用聚羧酸盐高范围减水剂(HRWR)可获得一致的流动。结果表明,HRWR的应用增加了煅烧粘土和波特兰水泥砂浆混合物的流量。波特兰水泥和煅烧粘土砂浆之间的混合物获得的最大强度为煅烧粘土产品替代水泥的30%。研究表明,比例均匀的砂浆混合物可以显着降低波特兰水泥含量和二氧化碳含量,而不会损害原始混合物的强度和流动性。

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