微观结构不确定性对砂浆孔隙弹性和扩散性能的影响

A. Socié, Y. Monerie, F. Péralès
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引用次数: 4

摘要

土木工程结构在化学侵蚀作用下的耐久性评估需要建立化学孔隙力学模型。机械和化学降解取决于几个因素,如多孔介质的初始成分。采用多尺度模型来反映砂浆材料多层次的微观结构特性。本文旨在研究形态和局部材料性质的不确定性对砂浆的孔弹和扩散性能的影响。首先,通过对比试验结果和细观力学模型,对不同水泥浆体和砂浆的模型进行了验证。其次,在文献研究的基础上,对多尺度模型的随机预测进行了敏感性和不确定性分析。主要结果强调了水泥基质相(C-S-H)和界面过渡面积在砂浆尺度上的主要影响。此外,敏感性分析强调,材料性能诱导更多的变化比体积分数。
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Effects of the microstructural uncertainties on the poroelastic and the diffusive properties of mortar
The assessment of the durability of civil engineering structures subjected to several chemical attacks requires the development of chemo-poromechanical models. The mechanical and chemical degradations depend on several factors such as the initial composition of the porous medium. A multi-scale model is used to incorporate the multi-level microstructural properties of the mortar material. The present paper aims to study the effect of morphological and local material properties uncertainties on the poroelastic and diffusive properties of mortar estimated with the help of analytical homogenization. At first, the proposed model is validated for different cement paste and mortar by comparison to experimental results and micromechanical models. Secondly, based on a literature study, sensitivity and uncertainty analysis have been developed to assess the stochastic predictions of the multi-scale model. The main result highlights the predominant impact of the cement matrix phases (C-S-H) and interfacial transition area at the mortar scale. Furthermore, the sensitive analysis underlines that the material properties induce more variability than the volume fraction.
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