首页> 外文会议>International conference on ion and mass transport in cement-based materials >MULTI-SCALE MICROSTRUCTURAL MODELING TO PREDICT CHLORIDE ION DIFFUSIVITY FOR HIGH PERFORMANCE CONCRETE
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MULTI-SCALE MICROSTRUCTURAL MODELING TO PREDICT CHLORIDE ION DIFFUSIVITY FOR HIGH PERFORMANCE CONCRETE

机译:多尺度微结构建模,以预测高性能混凝土氯离子扩散性

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As durability issues become increasingly prominent in concrete design, the need to predict the transport properties of a given concrete mixture becomes critical. For many degradation scenarios (corrosion, sulfate attack, etc.), the diffusion coefficient of the concrete is a critical parameter that helps determine its service life. The goal of current research at the National Institute of Standards and Technology is to develop predictive equations for the chloride ion diffusivity of concrete based on mixture proportions and expected degree of hydration. The basis for these predictions is a set of multi-scale computer-based microstructural models for cement-based materials. Modeling at the scale of micrometers (cement paste) provides the necessary information on the effects of water-to-cement (w/c) ratio, silica fume addition, and degree of hydration on the volume of capillary porosity, and its connectivity. Modeling at the scale of centimeters (concrete) provides information on the influence of volume fraction and gradation of aggregates, and interfacial transition zone (ITZ) microstructure on the effective diffusivity of the concrete composite. Connecting the models at these two scales allows for the quantitative estimation of the chloride ion diffusivity of a specific concrete. Based on the results of these models, the addition of silica fume is seen to be a very efficient means for reducing concrete diffusivity, particularly for low w/c ratio (< 0.4) systems.
机译:随着耐久性问题在具体设计中越来越突出,预测给定混凝土混合物的运输性能的需要变得至关重要。对于许多劣化情景(腐蚀,硫酸盐攻击等),混凝土的扩散系数是一个关键参数,有助于确定其使用寿命。目前在国家标准和技术研究所研究的目标是基于混合比例和预期的水化程度为混凝土的氯离子扩散率开发预测方程。这些预测的基础是一种用于基于水泥基材料的多尺度计算机基微观结构模型。微米(水泥浆料)的建模提供了有关水 - 水泥(W / C)比率,二氧化硅烟雾的影响以及毛细血管孔隙体积的影响的必要信息及其连通性。以厘米(混凝土)的尺寸建模提供了有关体积分数和聚集体渐变的影响,以及界面过渡区(ITZ)微观结构对混凝土复合材料的有效扩散率的影响。在这两种尺度上连接模型允许定量估计特定混凝土的氯离子扩散率。基于这些模型的结果,观察到二氧化硅烟气被认为是减少混凝土扩散性的非常有效的方法,特别是对于低W / C比(<0.4)系统。

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