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Influence of cracks on chloride diffusivity in concrete: A five-phase mesoscale model approach

机译:裂缝对混凝土中氯离子扩散性的影响:五阶段中尺度模型方法

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This paper presents a mesoscale numerical approach to investigate the chloride diffusivity in cracked concrete. Concrete is treated as a five-phase material, including cement paste, aggregate, interfacial transition zone (ITZ), crack, and damaged zone (DZ), for its heterogeneity. In the mesoscale model, the randomly distributed aggregates were treated as impermeable, whereas all other phases are assumed permeable but with different diffusion coefficients. It is assumed that the crack is located in the middle of the DZ, and there is a liner relationship of the chloride diffusion coefficients between the DZ and the crack. The developed mesoscale model is validated by comparing the simulation results with the experimental data. Finally, the influence of the DZ, such as the chloride diffusion coefficient, the width and length of the DZ, the width and length of the crack, on the penetration of chlorides in cracked concrete is examined and discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种中尺度数值方法来研究开裂混凝土中氯离子的扩散率。由于混凝土的异质性,混凝土被视为五相材料,包括水泥浆,集料,界面过渡区(ITZ),裂缝和损坏区(DZ)。在中尺度模型中,将随机分布的聚集体视为不可渗透的,而所有其他相均假定为可渗透的,但具有不同的扩散系数。假定裂纹位于DZ的中间,并且DZ与裂纹之间的氯化物扩散系数存在线性关系。通过将仿真结果与实验数据进行比较,验证了开发的中尺度模型。最后,研究并讨论了DZ对氯离子在开裂混凝土中的渗透的影响,例如氯的扩散系数,DZ的宽度和长度,裂缝的宽度和长度。 (C)2018 Elsevier Ltd.保留所有权利。

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