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Chloride Ion Invasive Behavior of Recycled Aggregate Concrete under Coupling Flexural Loading and Wetting-Drying Cycles

机译:挠性荷载与干湿循环耦合作用下再生骨料中氯离子的侵入行为

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摘要

In this paper, the invasive behavior of chloride ion has been investigated under the coupling action of wetting-drying cycles and flexural load on recycled aggregate concrete (RAC) beams in sodium chloride solution. The permeation properties of chloride in RAC were studied by analyzing the content, binding capacity and diffusion coefficient of chloride. The priority of interfacial transition zone (ITZ) for chloride transport in RAC was analyzed by energy dispersive spectrometer (EDS). Additionally, the distribution of chloride content in concrete was predicted. The results indicated that the micro-pore structure, initial damage and micro-cracks provide more paths for the diffusion of chloride in the RAC. The binding capacity of chloride diminished with the incorporation of recycled coarse aggregate (RCA) and the exertion of flexural load, which increased the chloride diffusion coefficient. The correctness of Fick's second diffusion law was verified via applying it to the data processing. Furthermore, the convection and diffusion zones had the significant influence on the distribution of chloride.
机译:本文研究了氯化钠溶液中湿式干燥循环和弯曲荷载对再生骨料(RAC)梁的耦合作用下氯离子的侵入行为。通过分析氯化物的含量,结合能力和扩散系数,研究了RAC中氯化物的渗透特性。通过能量分散光谱仪(EDS)分析了界面过渡区(ITZ)在RAC中氯离子迁移的优先级。另外,预测了混凝土中氯化物含量的分布。结果表明,微孔结构,初始损伤和微裂纹为氯化物在RAC中的扩散提供了更多的路径。氯化物的结合能力随回收粗骨料(RCA)的加入和弯曲载荷的施加而降低,从而增加了氯化物的扩散系数。通过将菲克第二扩散定律应用于数据处理,验证了其正确性。此外,对流和扩散区对氯化物的分布有重要影响。

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