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Microstructure-Based Prediction of the Elastic Behaviour of Hydrating Cement Pastes

机译:基于微观结构的水泥浆料弹性行为的预测

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摘要

The development of the elastic properties of a hardening cement paste results from the microstructural evolution due to cement hydration. The elastic behaviour of cement paste can be predicted by a combination of the hydration model and micromechanical analysis, which originates from a microstructural representative volume where the elastic behaviour of different hydrating cement products can be recognised. In this paper, the formation of the microstructural volume is simulated with the computational code HYMOSTRUC3D for cement hydration. The obtained microstructure is an input for a micromechanical modelling. A 3D regular lattice model is proposed to predict the elastic modulus of the microstructure, considering a water-to-cement (w/c) ratio within the range [0.30–0.50]. In addition, the Finite Element Method (FEM) is used to compare and validate the results from the lattice model. Predictions from these two modelling approaches are then compared to the experimental results provided by the EMM-ARM (Elasticity Modulus Measurement through Ambient Response Method) testing technique, the latter allowing measurement of the elastic modulus of hydrating cement pastes. Finally, the above-referred numerical models are used to evaluate the influence of the following features: the particle size distribution of the cement grains, the microstructure discretisation refinement and the elastic modulus of the C-S-H cement hydration product.
机译:硬化水泥的弹性性能的发展粘贴组织演变由于水泥水化的结果。水泥净浆的弹性行为可以通过水化模型和微机械分析的组合,来预测其源自从那里的不同水化水泥产品的弹性行为可以被识别的微观结构代表性体积。在本文中,微观量的形成与模拟计算代码HYMOSTRUC3D对水泥水化。将所得到的微结构为微机械建模的输入。三维规则点阵模型,提出了预测的微观结构的弹性模量,考虑到范围[0.30-0.50]内的水与水泥(W / C)比。此外,有限元法(FEM)被用来比较和验证从晶格模型的结果。来自这两个建模方法的预测进行比较,以检测技术(通过环境响应法弹性模量测定)由EMM-ARM提供的实验结果,水合水泥糊的弹性模量的后者允许测量。最后,上面提到的数值模型被用来评估以下特征的影响:水泥颗粒的粒径分布,微结构离散细化和C-S-H水化水泥产品的弹性模量。

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