Wang Xiao-Yong
Department of Architectural Engineering, College of Engineering, Kangwon National University, Chuncheon 200701, Korea.
Materials (Basel). 2017 Jan 26;10(2):115. doi: 10.3390/ma10020115.
Limestone is widely used in the construction industry to produce Portland limestone cement (PLC) concrete. Systematic evaluations of hydration kinetics, compressive strength development, and carbonation resistance are crucial for the rational use of limestone. This study presents a hydration-based model for evaluating the influences of limestone on the strength and carbonation of concrete. First, the hydration model analyzes the dilution effect and the nucleation effect of limestone during the hydration of cement. The degree of cement hydration is calculated by considering concrete mixing proportions, binder properties, and curing conditions. Second, by using the gel-space ratio, the compressive strength of PLC concrete is evaluated. The interactions among water-to-binder ratio, limestone replacement ratio, and strength development are highlighted. Third, the carbonate material contents and porosity are calculated from the hydration model and are used as input parameters for the carbonation model. By considering concrete microstructures and environmental conditions, the carbon dioxide diffusivity and carbonation depth of PLC concrete are evaluated. The proposed model has been determined to be valid for concrete with various water-to-binder ratios, limestone contents, and curing periods.
石灰石在建筑行业中被广泛用于生产波特兰石灰石水泥(PLC)混凝土。对水化动力学、抗压强度发展和抗碳化性能进行系统评估对于合理使用石灰石至关重要。本研究提出了一个基于水化的模型,用于评估石灰石对混凝土强度和碳化的影响。首先,水化模型分析了水泥水化过程中石灰石的稀释效应和成核效应。通过考虑混凝土配合比、胶凝材料性能和养护条件来计算水泥的水化程度。其次,利用凝胶空间比评估PLC混凝土的抗压强度。突出了水胶比、石灰石替代率和强度发展之间的相互作用。第三,根据水化模型计算碳酸盐材料含量和孔隙率,并将其用作碳化模型的输入参数。通过考虑混凝土微观结构和环境条件,评估PLC混凝土的二氧化碳扩散系数和碳化深度。已确定所提出的模型对于具有不同水胶比、石灰石含量和养护期的混凝土是有效的。