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Experimental investigation on the effect of sulfate attack on chloride diffusivity of cracked concrete subjected to composite solution

机译:硫酸盐侵蚀对复合溶液开裂混凝土氯化物扩散率影响的试验研究。

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The presence of crack and sulfate ion will significantly affect the chloride diffusivity of concrete resulting in the performance degradation of concrete material and structure. This paper experimentally investigated the chloride diffusivity of cracked concrete subjected to the chloride solution and the composite attack of sulfate and chloride ions. The concentration distributions of both the total and free chloride ions in the cracked concrete are tested to evaluate the influences of sulfate and crack on the chloride diffusivity of concrete material. The experimental observation indicated that the presence of crack resulted in a 2-D chloride diffusion in concrete and the crack width has a notable impact on the chloride diffusion rate. It is found that the presence of sulfate ion decelerated the chloride diffusion in cracked concrete with a lower concentration of both free and total chloride ions. This influence of sulfate ion on the chloride diffusion was enhanced with the elapsed immersion time. Moreover, the chloride binding capacity of concrete material was found decreased by the action of sulfate ion in solution. Finally, the evaluation of corrosion products by X-ray diffraction (XRD) during the erosion process provide a sound mechanism validation for the experimental observations. This study laid an experimental foundation for the upcoming numerical modeling of the diffusivity of cracked concrete material. (C) 2019 Elsevier Ltd. All rights reserved.
机译:裂纹和硫酸根离子的存在将显着影响混凝土的氯离子扩散性,从而导致混凝土材料和结构的性能下降。本文通过实验研究了开裂混凝土在氯溶液中的氯扩散系数以及硫酸根和氯离子的复合侵蚀。测试了开裂混凝土中总氯离子和游离氯离子的浓度分布,以评估硫酸盐和裂纹对混凝土材料氯离子扩散性的影响。实验观察表明,裂纹的存在导致混凝土中二维氯离子的扩散,裂纹宽度对氯离子的扩散速度有显着影响。发现硫酸根离子的存在降低了氯离子在开裂混凝土中的扩散,游离和总氯离子的浓度均较低。硫酸盐离子对氯化物扩散的影响随浸入时间的延长而增强。而且,发现溶液中硫酸根离子的作用降低了混凝土材料的氯离子结合能力。最后,在腐蚀过程中通过X射线衍射(XRD)对腐蚀产物的评估为实验观察提供了可靠的机制验证。该研究为即将开裂的混凝土材料的扩散性数值模拟奠定了实验基础。 (C)2019 Elsevier Ltd.保留所有权利。

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