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Diffusion of Multi-Ionic Species in Recycled Aggregate Concrete

机译:再生离子混凝土中多种离子的扩散

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摘要

In recent years, recycled aggregate concrete has been used in reinforced concrete structures. Concrete structures exposed to chloride environment often encounter a premature deterioration due to corrosion of steel reinforcement. In order to avoid unplanned maintenances or repairs, it is necessary to develop a reliable prediction model for the chloride diffusion in concrete. The basic formulation of the transport theory will be presented first and then its application to Recycled Aggregate Concrete (RAC) will follow. Chloride diffusion in RAC is different from the diffusion in regular concrete, because the material parameters of RAC such as chloride diffusion coefficient are different from those of regular concrete. In this paper, a multi-scale and multi-phase model will be developed to characterize the internal structure of the recycled aggregate with a layer of residual cement paste on the surface of natural aggregate and another layer of surface treatment material on the surface of the residual cement paste. The multi-scale and multi-phase model will also be used to characterize the chloride diffusion coefficient of RAC. The numerical analysis of the diffusion equations is performed by using finite element method.
机译:近年来,再生骨料混凝土已用于钢筋混凝土结构中。暴露于氯化物环境的混凝土结构经常会由于钢筋腐蚀而过早老化。为了避免计划外的维护或修理,有必要针对混凝土中氯化物的扩散建立可靠的预测模型。首先将介绍运输理论的基本公式,然后将其应用于再生骨料混凝土(RAC)。 RAC中的氯离子扩散与普通混凝土中的氯离子扩散不同,因为RAC的材料参数(例如氯离子扩散系数)与普通混凝土中的不同。在本文中,将建立一个多尺度,多阶段的模型,以表征再生骨料的内部结构,在天然骨料表面上形成一层残余水泥浆,而在骨料表面上形成另一层表面处理材料。残留的水泥浆。多尺度和多相模型也将用于表征RAC的氯离子扩散系数。扩散方程的数值分析是使用有限元方法进行的。

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