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Durability of Concretes Containing Supplementary Cementing Materials Under Hot and Aggressive Environment

机译:高温环境下含辅助胶凝材料的混凝土的耐久性

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摘要

It is well known that supplementary cementing materials can enhance the durability of concrete structures particularly in the hot and severe environment. In this study, concrete specimens containing different supplementary cementing materials, namely; silica fume, slag, a natural pozzolan (trass), and mixtures of cement and two pozzolans have been investigated. The tests conducted include, compressive strength, permeability, chloride diffusion, corrosion of reinforcing bars, and carbonation depth, all at different ages. The variables were cement types, supplementary cementing materials, water-cement ratio, and cover thicknesses. After standard curing, concrete specimens were transferred to the Gulf region and maintained in submerged, wetting and drying and coastal environments. For exposure to alternate cycles of wetting and drying, known as the most severe condition, the superior performance of silica fume was followed by the concrete mixture containing trass. However, all concrete mixtures containing natural or artificial pozzolans showed better performance compared with the portland cement control concrete mixtures.
机译:众所周知,补充胶结材料可以增强混凝土结构的耐久性,特别是在炎热和恶劣的环境下。在这项研究中,混凝土试样包含不同的辅助胶结材料,即:硅粉,矿渣,天然火山灰(草)以及水泥和两种火山灰的混合物已得到研究。所进行的测试包括抗压强度,渗透性,氯化物扩散,钢筋腐蚀和碳化深度,这些都在不同的年龄下进行。变量是水泥类型,辅助胶结材料,水灰比和表层厚度。经过标准固化后,混凝土标本被转移到海湾地区,并保持在浸没,湿润,干燥和沿海环境中。对于暴露于润湿和干燥的交替循环(称为最严酷条件)的情况,二氧化硅烟灰的优异性能是紧随其后的是含traass的混凝土混合物。但是,与波特兰水泥对照混凝土混合物相比,所有包含天然或人造火山灰的混凝土混合物均表现出更好的性能。

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