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A study on the chloride diffusion behavior of blended cement concrete in relation to aggregate and ITZ

机译:水泥配合料与ITZ关系的氯离子扩散行为研究。

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The reinforcement corrosion caused by chloride is one of the main threat to structural concrete exposed to marine environment or de-icing salts. The penetration of chloride is highly determined by the pore structure. In this study, the effect of pores on chloride diffusion of concrete made with varied aggregate volume fraction and size distribution was evaluated from the interfacial transition zone (ITZ) point of view. The pore structure was analyzed by using mercury intrusion porosimeter (MIP) in relation to the binder compositions and aggregates. Results show that the diffusivity decreases firstly with increasing aggregate content from 0 to 0.2, and followed by a slight increase in the pure cement group. The diffusivity increases for the specimens made with coarser aggregate. The addition of appropriate amount of blended materials could mitigate the influence of aggregate on the chloride diffusion. Increasing aggregate volume content or reducing the mean particle size, which increase the total intruded volume of pores superior to 100 nm, contribute most to the increase of total porosity. Considering the effect of limestone filler and slag on the pore structure within ITZ and bulk cement paste, the reduction in chloride diffusivity could be mainly due to the densification of the matrix. (C) 2019 Elsevier Ltd. All rights reserved.
机译:氯化物引起的钢筋腐蚀是暴露于海洋环境或除冰盐的结构混凝土的主要威胁之一。氯化物的渗透高度取决于孔结构。在这项研究中,从界面过渡区(ITZ)的角度评估了孔隙对具有不同骨料体积分数和尺寸分布的混凝土中氯离子扩散的影响。通过使用压汞仪(MIP)相对于粘合剂组合物和骨料分析了孔结构。结果表明,扩散率首先随着骨料含量的增加(从0增加到0.2)而降低,然后是纯水泥基团的轻微增加。用粗骨料制成的样品的扩散率增加。添加适量的混合材料可以减轻聚集体对氯化物扩散的影响。增加总体积含量或减小平均粒径,这会增加超过100 nm的孔的总侵入体积,对增加总孔隙率贡献最大。考虑到石灰石填料和矿渣对ITZ和散装水泥浆中孔结构的影响,氯离子扩散率的降低可能主要是由于基质的致密化。 (C)2019 Elsevier Ltd.保留所有权利。

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