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Study on the development of the micro structure in cement-based materials by means of numerical simulation and ultrasonic pulse velocity measurement

机译:数值模拟和超声脉冲速度测量研究水泥基材料微结构的发展

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摘要

The formation of microstructure in cementitious materials was simulated with a numerical model. Simulation results have been verified by measuring the evolution of the ultrasonic pulse velocity (UPV). In this contribution, the applied computer-based cement hydration model is presented. The UPV measurements are also presented and evaluated. Experiments were performed on concrete mixtures with water/cement ratio 0.40, 0.45 and 0.55. The concrete was cured isothermally at 10, 20. 30 and 40 deg C. Correlations between the development of the microstructure and the evolution of UPV were found. Two critical processes were individuated. The first is the percolation threshold of the solid phase. The second is the full connectivity of the solid phase. Both in the experiments and in the numerical simulations it was possible to distinguish these critical stages. These stages are discussed and conclusions are drawn regarding the potential of numerical simulation models in the study of early age cementitious materials for quantitative analysis of hydration processes.
机译:用数值模型模拟了胶凝材料中微观结构的形成。通过测量超声脉冲速度(UPV)的演变,已经验证了仿真结果。在此贡献中,提出了基于计算机的水泥水化模型。还显示并评估了UPV测量值。对水灰比为0.40、0.45和0.55的混凝土混合物进行了实验。将混凝土在10、20、30和40摄氏度下等温固化。发现微观结构的发展与UPV的发展之间的相关性。分为两个关键过程。第一个是固相的渗透阈值。第二个是固相的完全连通性。在实验和数值模拟中,都有可能区分这些关键阶段。讨论了这些阶段,并得出了有关数值模型在水凝过程定量分析的早期胶凝材料研究中的潜力的结论。

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