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Comparing the durability of self-compacting concretes and conventionally vibrated concretes in chloride rich environments

机译:在富含氯化物的环境中比较自密实混凝土和传统振动混凝土的耐久性

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Self-compacting concrete (SCC) is an important new concrete technology, with ever increasing uptake in industry. Despite its widespread use, little is known about the durability of SCC in chloride rich environments. This paper seeks to build on existing knowledge in this area by presenting the details and results of an experimental programme which benchmarks the chloride resistance of SCCs against that of the more established traditional vibrated concretes. The comparative study utilised natural chloride migration testing to obtain chloride transport properties, and make service life predictions, for both ordinary Portland cement concretes, and concretes incorporating supplementary cementing materials. The study identified different patterns across the different concrete types considered. The experimental results, together with discussion of existing literature findings, indicate that the chloride resistance of conventional vibrated concretes can in some cases be greater than that of equivalent SCCs, depending on the parameters of the comparative study. (C) 2016 Elsevier Ltd. All rights reserved.
机译:自密实混凝土(SCC)是一项重要的新混凝土技术,并且在工业中的应用日益增加。尽管已广泛使用SCC,但对于富含氯化物的环境中SCC的耐久性知之甚少。本文试图通过提供一个实验程序的细节和结果,以建立在该领域的现有知识基础上,该程序将SCC的耐氯化物性与更成熟的传统振动混凝土的耐氯化物性进行比较。对比研究利用自然的氯离子迁移测试来获得氯离子的传输性能,并对普通波特兰水泥混凝土和掺入辅助胶结材料的混凝土做出使用寿命预测。该研究确定了所考虑的不同混凝土类型的不同模式。实验结果以及对现有文献发现的讨论表明,根据对比研究的参数,在某些情况下,常规振动混凝土的耐氯化物性能可能会比同等的SCC高。 (C)2016 Elsevier Ltd.保留所有权利。

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