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Analysis of Compressive Strength Development and Carbonation Depth of High-Volume Fly Ash Cement Pastes

机译:大量粉煤灰水泥浆抗压强度发展及碳化深度分析

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High-volume fly ash (HVFA) concrete, which typically has 50 to 60% fly ash as the total cementitious material content, is widely used to achieve sustainable development in the concrete industry. Strength development and carbonation are critical research topics for using HVFA concrete. This paper presents a numerical procedure to evaluate the strength development and carbonation depth of HVFA concrete. This numerical procedure consists of a hydra-tion model and a carbonation reaction model. The hydration model analyzes the fly ash dilution effect and the pozzolanic reaction. The amount of carbonatable materials, such as calcium hydroxide (CH) and calcium silicate hydrate (CSH), are calculated using reaction degrees of cement and fly ash. The compressive strength development of cement-fly ash blends are evaluated from CSH contents. The calculation results from the hydration model, such as the amount of carbonatable materials and the porosity, are used as input parameters for the carbonation reaction model. By considering the effects of material properties and environmental conditions, the carbonation reaction model analyzes the diffusivity of carbon dioxide and the carbonation depth of HVFA concrete with different curing conditions, different fly ash contents, and different water-binder (w/b) ratios.
机译:大体积粉煤灰(HVFA)混凝土通常占粉煤灰的总胶凝材料含量为50%至60%,被广泛用于实现混凝土行业的可持续发展。强度发展和碳化是使用HVFA混凝土的关键研究课题。本文提出了一种数值程序来评估HVFA混凝土的强度发展和碳化深度。该数值过程由水合模型和碳酸化反应模型组成。水化模型分析了粉煤灰的稀释作用和火山灰反应。使用水泥和粉煤灰的反应度来计算可碳酸化材料的量,例如氢氧化钙(CH)和水合硅酸钙(CSH)。由CSH含量评估了水泥-粉煤灰混合物的抗压强度。水合模型的计算结果(例如可碳化材料的数量和孔隙率)用作碳酸化反应模型的输入参数。通过考虑材料性能和环境条件的影响,碳化反应模型分析了不同固化条件,不同粉煤灰含量和不同水灰比(w / b)的二氧化碳的扩散率和HVFA混凝土的碳化深度。

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