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Service Life and Early Age Durability Enhancement due to Combined Metakaolin and Nanosilica in Mortars for Marine Applications

机译:船舶用砂浆中偏高岭土和纳米二氧化硅的结合可延长使用寿命并提高早期耐久性

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摘要

The addition of a range of micro- and nano-particles to high-performance concrete has been the focus of recent research. At present, studies are mainly aimed at designing customised mortars, providing them with specific properties for each application. Improving the durability of mortars is one of the main objectives in such research, as a result of increasing environmental concern. The research presented herein analyses the synergistic effect of nanosilica and metakaolin as additives on the service life of cement-based mortars subject to aggressive environments (i.e., chloride exposure) at early ages. The effects of the additives on the durability properties of submerged samples after two and three days of curing were analysed. Tests were conducted on several different properties: resistivity, porosity, mechanical properties, chloride diffusion, and service life. It is observed that metakaolin and nanosilica exhibit a synergistic effect as additives, which is related to porosity refinement and chloride ion binding capacity, which contributes to enhanced resistance against chloride penetration from very early ages.
机译:在高性能混凝土中添加多种微米和纳米颗粒已成为近期研究的重点。目前,研究主要针对设计定制的砂浆,为每种应用提供特定的性能。由于对环境的日益关注,提高砂浆的耐久性是此类研究的主要目标之一。本文提出的研究分析了纳米二氧化硅和偏高岭土作为添加剂对水泥基砂浆使用寿命的影响,这些水泥基砂浆在较早的环境中处于侵蚀性环境(即,暴露于氯化物中)。分析了添加剂对固化两天和三天后浸没样品的耐久性能的影响。对几种不同的性质进行了测试:电阻率,孔隙率,机械性质,氯化物扩散和使用寿命。观察到偏高岭土和纳米二氧化硅作为添加剂表现出协同作用,这与孔隙率细化和氯离子结合能力有关,这有助于从很早的年龄就增强对氯离子渗透的抵抗力。

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