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Chloride transport in partially saturated cementitious material: influence of hydric state and binding chloride

机译:部分饱和胶结材料中氯离子的运输:氢态和结合氯的影响

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This study investigated the influence of saturation state on the ingress of chloride ions into a cementitious material. The chloride concentration profiles were determined experimentally for different degrees of saturation, while ensuring optimal contact between the material and saline solution. The experimental profiles were adjusted to a particular solution of Fick's law of diffusion to obtain the corresponding diffusion coefficient. The results showed that the transfer of chlorides depends on the saturation state. It was found that a decrease in moisture content from 97% to 76% led to higher chloride content in the material. Furthermore, for a hydric state with a relative humidity of 76%, the penetration depth of chloride ions was important while their binding to the cementitious matrix was low. This caused the concentration of free chlorides (harmful chlorides for construction) to be larger in the pore solution, meaning that the material was more vulnerable with regard to corrosion.
机译:这项研究调查了饱和状态对氯离子进入胶凝材料的影响。实验确定了不同饱和度的氯化物浓度曲线,同时确保了物料与盐溶液之间的最佳接触。将实验曲线调整为菲克扩散定律的特定解,以获得相应的扩散系数。结果表明,氯化物的转移取决于饱和状态。发现水分含量从97%降低到76%导致材料中更高的氯化物含量。此外,对于相对湿度为76%的水合状态,氯离子的渗透深度很重要,而它们与胶结基质的结合力却很低。这导致孔隙溶液中游离氯化物(对施工有害的氯化物)的浓度更高,这意味着该材料更容易受到腐蚀。

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