Investigation of Chloride Diffusion into Concrete with Joint

Daniel Mishael, Yongdong Yan
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Abstract

The passive layer shielding the steel reinforcement from corrosion can be attacked by the chloride ions that permeate through the chloride ions that permeate through the pores in the concrete when it is in solution. This paper aims to explore the investigation of chloride diffusion into concrete with joint. Three exposure conditions were taken into consideration in chloride ion diffusion experiments in order to examine the impact of exposure conditions on the chloride ion diffusion property: long-term immersion in a static sodium chloride solution, long-term immersion in a circulating sodium chloride solution, and dry–wet cycles in a circulating sodium chloride solution. According to experimental findings, the age of erosion increased the chloride ion content at a particular depth. Furthermore, concrete subjected to dry-wet cycles of the circulating sodium chloride solution had slightly higher chloride ion content than concrete immersed in the solution for an extended period of time. Fick's second law served as the foundation for the empirical equations that were developed by fitting experimental data to determine the chloride content and diffusion coefficient at the concrete's surface, as well as the correlation coefficient values for various exposure scenarios. The calculation formula's greater applicability was confirmed by comparison with the experiment results. The chloride ion content could be predicted and examined using this method for various exposure scenarios.
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带接缝的混凝土中氯化物扩散情况调查
保护钢筋免受腐蚀的钝化层可能会受到氯离子的攻击,氯离子渗透到混凝土溶液中的氯离子中,氯离子渗透到混凝土孔隙中。本文旨在探讨氯离子在含接缝混凝土中的扩散问题。氯离子扩散实验考虑了三种暴露条件对氯离子扩散特性的影响:长期浸泡在静态氯化钠溶液中、长期浸泡在循环氯化钠溶液中、干湿循环在循环氯化钠溶液中。根据实验结果,侵蚀年龄增加了特定深度的氯离子含量。此外,经受干湿循环氯化钠溶液的混凝土,其氯离子含量略高于长期浸泡在氯化钠溶液中的混凝土。在菲克第二定律的基础上,通过拟合实验数据建立了经验方程,确定了混凝土表面氯化物含量和扩散系数,以及不同暴露情景下的相关系数值。通过与实验结果的对比,证实了该计算公式具有较强的适用性。该方法可用于各种暴露情景下氯离子含量的预测和检测。
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