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首页> 外文期刊>MATEC Web of Conferences >Combined Effect of Initial Curing Temperature and Crack Width on Chloride Penetration in Reinforced Concrete Beams
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Combined Effect of Initial Curing Temperature and Crack Width on Chloride Penetration in Reinforced Concrete Beams

机译:初始固化温度和裂缝宽度对钢筋混凝土梁中氯离子渗透的综合影响

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Reinforced concrete (RC) structures are gradually being degraded all over the world, largely due to corrosion of the embedded steel bars caused by an attack of chloride penetration. Initial curing would be regarded as one factor influencing chloride diffusion in concrete in combination with cover cracking that is also of great attention for reinforced structures. In this study, a non-steady state diffusion test of chloride ion involving RC beam specimens with a water-to-cement ratio of 0.5, initial curing temperatures of 5°C or 20°C and three types of crack widths ranging from 0 to 0.2mm was performed. Chloride content at 5°C or was determined. The results show that the higher chloride content was obtained in condition of crack width large than 0.1mm with low initial curing temperature and there are no obvious differences in chloride content when the crack width was not larger than 0.1mm.
机译:钢筋混凝土(RC)结构在世界范围内逐渐退化,这主要是由于氯化物渗透引起的嵌入式钢筋的腐蚀。初始固化与覆盖层开裂相结合,将是影响混凝土中氯离子扩散的一个因素,这对于钢筋结构也非常重要。在这项研究中,氯离子的非稳态扩散测试涉及水凝比为0.5,初始固化温度为5°C或20°C且裂纹宽度从0到0的三种类型的RC梁样品。进行0.2mm。测定5℃或50℃下的氯化物含量。结果表明,在初始固化温度低的情况下,裂纹宽度大于0.1mm时,氯化物含量较高,当裂纹宽度小于0.1mm时,氯化物含量无明显差异。

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