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Modeling of early age behavior of blast furnace slag concrete based on micro-physical properties

机译:基于微观物理特性的高炉矿渣混凝土早期行为建模

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摘要

A multi-scale system called DuCOM was enhanced to model behaviors of blast furnace slag (BFS) concrete. Tests on the strength and micro-hygro-physical properties of BFS concrete and Portland cement concrete were conducted. The current model was found to underestimate the strength of BFS concrete at later ages owing to underestimation of the water content inside C-S-H gel pores. To remedy this, enhanced modeling of porosity allowing proper simulation of the porosity of the BFS paste matrix and higher strength development at later ages is proposed. Furthermore, based on the enhanced porosity model, the moisture loss and pore size distribution of the BFS paste matrix were investigated. The pore size distribution was found to be coarser than the test at later ages in the model, resulting in overestimation of moisture loss. Hence, the pore size distribution was enhanced as well, allowing simulation of a finer pore structure of the BFS matrix. Finally, verifications showed that the enhanced model better predicts water desorption, moisture loss and drying shrinkage behaviors.
机译:增强了一个称为DuCOM的多尺度系统,以对高炉矿渣(BFS)混凝土的行为进行建模。进行了BFS混凝土和波特兰水泥混凝土的强度和微湿物理性能的测试。由于低估了C-S-H凝胶孔内部的水分含量,目前的模型被发现低估了BFS混凝土的强度。为了解决这个问题,提出了增强的孔隙率模型,允许对BFS糊状基质的孔隙率进行适当的模拟,并在以后的年龄中获得更高的强度。此外,基于增强的孔隙率模型,研究了BFS糊状基质的水分损失和孔径分布。发现在模型中较晚的年龄,孔径分布比测试的要粗,导致水分损失的高估。因此,孔径分布也得到了增强,从而可以模拟BFS基质的细孔结构。最后,验证表明,增强的模型可以更好地预测水的解吸,水分损失和干燥收缩行为。

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