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Ultimate Failure Capacity of the Geopolymer and Ordinary Reinforced Concrete Domes Subjected to a Concentrated Load

机译:岩土聚合物和普通钢筋混凝土圆顶对浓缩载荷的最终故障容量

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Geopolymer or alkaline concrete is a modem binder material characterized as an ambient friendly product within the construction field. Present study has investigated the geopolymer concrete mix used in the dome structural members compared with the use of ordinary concrete mix. Geopolymer concrete mixes are produced according to certain molecular ratios govern its design strength, so that present study has adopted molecular ratio of 14 mole (14M) as an alkaline molar concentration forming a binder material for the coarse and fine aggregate. Laboratory tested coarse and fine aggregate were used in both of geopolymer and ordinary concrete mixes. Two models of domes were made using geopolymer concrete mix while other two models were casted by the ordinary concrete mix and both types were reinforced with single layer of steel wire mesh. Later, all models were tested under uniaxial concentrated load subjected vertically on the peak of dome. Results showed that high ultimate failure load could be achieved for the geopolymer reinforced concrete as well as in the ordinary reinforced concrete when they subjected to a concentrated load on the dome's peak.
机译:地缘聚合物或碱性混凝土是一种调制解调器粘合剂材料,其特征在于建筑田内的环境友好产品。目前研究研究了圆顶结构构件中使用的地质聚合物混凝土混合物与使用普通混凝土混合相比。基础聚合物混凝土混合物根据某些分子比率生产其设计强度,因此目前的研究采用了14摩尔(14米)的分子比,作为形成粗细胞和细聚集体的粘合剂材料的碱性摩尔浓度。实验室测试的粗细胞聚集体用于盖聚合物和普通混凝土混合物两种。采用地缘混凝土混合制造了两种圆形圆形圆顶,而其他两种模型被普通的混凝土混合铸造,两种类型用单层钢丝网加固。后来,在垂直于圆顶峰的单轴浓缩载荷下进行所有型号测试。结果表明,在圆顶峰对圆顶峰的浓度荷载时,可以对地质聚合物增强混凝土以及普通钢筋混凝土中的高终极故障负荷。

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