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Studies on the corrosion resistance of reinforced steel in concrete with ground granulated blast-furnace slag—An overview

机译:粒状高炉矿渣混凝土中钢筋的耐蚀性研究概述

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摘要

The partial replacement of clinker, the main constituent of ordinary Portland cement by pozzolanic or latent hydraulic industrial by-products such as ground granulated blast furnace slag (GGBFS), effectively lowers the cost of cement by saving energy in the production process. It also reduces CO_2 emissions from the cement plant and offers a low priced solution to the environmental problem of depositing industrial wastes. The utilization of GGBFS as partial replacement of Portland cement takes advantage of economic, technical and environmental benefits of this material. Recently offshore, coastal and marine concrete structures were constructed using GGBFS concrete because high volume of GGBFS can contribute to the reduction of chloride ingress. In this paper, the influence of using GGBFS in reinforced concrete structures from the durability aspects such as chloride ingress and corrosion resistance, long term durability, microstructure and porosity of GGBFS concrete has been reviewed and discussed.
机译:火山灰或潜在的水力工业副产品(如磨碎的高炉矿渣(GGBFS))部分替代了熟料(普通硅酸盐水泥的主要成分),可通过节省生产过程中的能源来有效降低水泥成本。它还减少了水泥厂的CO_2排放,并为解决工业废物沉积的环境问题提供了一种低价解决方案。将GGBFS用作波特兰水泥的部分替代品可利用这种材料的经济,技术和环境优势。最近,使用GGBFS混凝土建造了近海,沿海和海洋混凝土结构,因为大量的GGBFS有助于减少氯化物的进入。本文从GGBFS混凝土的氯化物浸入和耐蚀性,长期耐久性,微观结构和孔隙率等耐久性方面对GGBFS在钢筋混凝土结构中的影响进行了综述和讨论。

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