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首页> 外文期刊>Journal of materials in civil engineering >Chloride Penetration in Reinforced Concrete Beams under Combined Sustained Loading and Drying-Wetting Cycles
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Chloride Penetration in Reinforced Concrete Beams under Combined Sustained Loading and Drying-Wetting Cycles

机译:持续荷载和干湿循环共同作用下钢筋混凝土梁中的氯离子渗透

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Abstract: In this paper, the spatial and time-variant chloride distribution in RC beams subjected to combined sustained flexural loads and cyclic drying-wetting action is studied. By means of the digital image correlation (DIC) technique, the distribution and evolution of load-induced damage and cracks in beam specimens during four-point bending are mapped and quantified using a damage factor. The influence of damage and cracks on the chloride resistance of beams is elucidated and a numerical model to reproduce the chloride penetration in precracked beams is proposed. The results show that the concrete in the pure bending zone of the beam has the highest rates of chloride ingress and reinforcement corrosion activity, followed by those in the support zone and combined shear-flexure zone. The regression analysis suggests that the apparent chloride diffusion coefficient of concrete increases exponentially, while the corrosion current density increases linearly, with the increasing magnitude of loads applied on the beams. The proposed model can reasonably predict the chloride profiles across the entire RC beams.
机译:摘要:本文研究了承受持续挠曲荷载和循环干湿作用的RC梁中氯的时空分布。借助数字图像相关(DIC)技术,可以绘制四点弯曲过程中梁样本中载荷引起的损伤和裂纹的分布和演变,并使用损伤因子进行量化。阐明了损伤和裂纹对梁抗氯化物性能的影响,并提出了一个数值模型来再现预裂梁中的氯化物渗透。结果表明,在梁的纯弯曲区域中,混凝土的氯化物侵入和增强腐蚀活性最高,其次是在支撑区域和组合的剪切-弯曲区域。回归分析表明,随着梁上荷载的增加,混凝土的表观氯离子扩散系数呈指数增长,而腐蚀电流密度呈线性增长。提出的模型可以合理地预测整个RC梁上的氯化物分布。

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