首页> 外文会议>International Conference on Structural Engineering, Mechanics and Computation; 20070910-12; Cape Town(ZA) >Special Concretes: Enhancement of Resistance to Aggressive Media Using Fly Ash and Admixtures Featuring Pozzuolana Characteristics
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Special Concretes: Enhancement of Resistance to Aggressive Media Using Fly Ash and Admixtures Featuring Pozzuolana Characteristics

机译:特殊混凝土:使用粉煤灰和具有Pozzuolana特性的掺合料增强对侵蚀性介质的抵抗力

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摘要

This paper presents findings of testing focused on resistance enhancement of special concretes (SCC, HPC, RPC) as well as common concrete (C) through application of secondary raw material (fly ash) and admixtures featuring pozzuolana characteristics (metakaolin). The tests were aimed at examination, comparison, analyzing and evaluation of admixture of fly ash and/or metakaolin respectively at influence thereof on above mentioned special concretes exposed to various chemical aggressive media. Analyzed concretes were stored in aggressive liquid media (SO_4~(2-), Cl~-, engine lubrication oil), gaseous media (simulated concentration of CO_2, SO_2 under various relative humidity), along with reference samples in aqueous media as specified by appropriate standards. After 3, 6, 9 and 12 months, particular concretes passed through physico-mechanical and physico-chemical analyses i.e. the concretes were tested as to physico-mechanical and physico-chemical properties, appearance, and condition after the exposure to particular aggressive media. After 12 months of such treatment, no physico-mechanical parameters of special concretes modified by fly ash and metakaolin were deteriorated. Surprisingly, SCC modified by fly ash and HPC modified by metakaolin achieved markedly better parameters when compared with identical concretes without application of fly ash and metakaolin. RPC modified by fly ash, when compared with unmodified RPC, featured inferior to a certain extent nevertheless, these properties did not reduce resistance of that concretes to particular chemical aggressive media. However, common concretes made with fly ash admixture achieved markedly inferior physico-mechanical parameters that demonstrated themselves through diminished resistance to the tested chemical aggressive media.
机译:本文介绍了通过应用次生原料(粉煤灰)和具有火山灰特性的混合料(偏高岭土)来提高特殊混凝土(SCC,HPC,RPC)以及普通混凝土(C)的抗性的测试结果。这些测试旨在分别检查,比较,分析和评估粉煤灰和/或偏高岭土的混合物对上述各种暴露于各种化学侵蚀性介质的特殊混凝土的影响。将分析后的混凝土存储在腐蚀性液体介质(SO_4〜(2-),Cl〜-,发动机润滑油),气态介质(在各种相对湿度下模拟的CO_2,SO_2浓度)以及参考样品的水性介质中,适当的标准。在3、6、9和12个月后,特定的混凝土通过了物理机械和物理化学分析,即在暴露于特定的侵蚀性介质后测试了混凝土的物理机械和物理化学性质,外观和状况。经过12个月的处理,粉煤灰和偏高岭土改性的特殊混凝土的物理机械参数没有变差。令人惊讶的是,与不使用粉煤灰和偏高岭土的相同混凝土相比,用粉煤灰改性的SCC和用偏高岭土改性的HPC取得了明显更好的参数。与未改性的RPC相比,粉煤灰改性的RPC在一定程度上具有劣等的性能,这些性能并未降低混凝土对特定化学侵蚀性介质的抵抗力。但是,用粉煤灰掺合料制成的普通混凝土的物理机械参数明显较差,这通过减小对测试化学侵蚀性介质的抵抗力来证明。

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