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Chemical admixtures — Chemistry, applications and their impact on concrete microstructure and durability

机译:化学混合物 - 化学,应用及其对混凝土微观结构和耐久性的影响

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An overview of current PCE compositions and synthesis methods is provided, followed by novel applications for PCEs including C-S-H-PCE nano-composites and a description of still unresolved challenges for PCE technology. In addition, the functionality of chemical admixtures in specific applications for low-carbon cements and concrete systems is discussed. The action mechanisms of retarders and the recycling system of sludge water by using retarder are introduced. Furthermore, the influence of fluoride ion and the effectiveness of PCE polymers in blended cements and the effect of non-adsorbed polymer are presented. And the impact of special interface modifying materials, of a refined pore structure and of chemical admixtures, particularly shrinkage-reducing agents, is described. The article concludes that more accurate quantitative micro-analytical methods and modeling tools will be needed to obtain a holistic understanding of factors affecting the microstructure of concrete, with the final goal of achieving a more durable concrete.
机译:当前PCE的组合物和合成方法的概述为包括的PCE C-S-H-PCE纳米复合材料和用于PCE技术尚未解决的挑战的描述提供,随后新的应用。此外,在低碳水泥和混凝土的系统的特定应用化学外加剂的功能进行了讨论。缓凝剂的作用机制和通过使用缓凝剂污泥水的回收系统进行了介绍。此外,氟离子的影响和PCE聚合物在混合水泥的有效性和未吸附的聚合物的效果呈现。和专用接口改性材料的精制孔结构和化学外加剂,特别减缩剂,带来的影响,进行说明。文章的结论是,更准确的定量微观分析方法和建模工​​具,将需要获得的影响混凝土的微观因素全面的了解,以期实现更耐久混凝土的最终目标。

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