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Modelling of the interaction between chemical and mechanical behaviour of ion exchange resins incorporated into a cement-based matrix

机译:将离子交换树脂的化学与力学行为相互作用建模掺入水泥基基质中

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In this paper,we present a predictive model,based on experimental data to determine the macroscopic mechanical behavior of a material made up of ion exchange resins solidified into a CEM III cement paste. Some observations have shown that in some cases,a significant macroscopic expansion of this composite material may be expected,due to internal pressures generated in the resin.To build the model,we made the choice to break down the problem in two scale's studies. The first deals with the mechanical behavior of the different heterogeneities of the composite,i.e. the resin and the cement paste. The second upscales the information from the heterogeneities to the Representative Elementary Volume (REV) of the composite. The heterogeneities effects are taken into account in the REV by applying a homogenization method derived from the Eshelby theory combined with an interaction coefficient drawn from the poroelasticity theory. At the first scale,from the second thermodynamic law a formulation is developed to estimate the resin microscopic swelling. The model response is illustrated on a simple example showing the impact of the calculated internal pressure,on the macroscopic strain.
机译:在本文中,我们提出了一种基于实验数据的预测模型,以确定由离子交换树脂的材料的宏观力学行为固化为CEMII水泥浆料。一些观察结果表明,在某些情况下,由于树脂中产生的内部压力,可以预期这种复合材料的显着宏观膨胀。要构建模型,我们选择在两个规模的研究中打破问题。第一种处理复合材料的不同异质性的力学行为,即。树脂和水泥糊。第二个将来自异质性的信息升高到复合材料的代表性基本体积(Rev)。通过施加来自eShelby理论的均质化方法与从多孔痉挛理论汲取的相互作用系数相结合,在Rev中考虑了异质性效应。在第一刻度,从第二热力学定律开发了一种制剂以估计树脂微观膨胀。在宏观菌株上的一个简单示例中示出了模型响应,示出了计算的内部压力的影响。

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