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Numerical modelling of degradation of cement-based materials under leaching and external sulfate attack

机译:浸出和外部硫酸盐侵蚀下水泥基材料降解的数值模型

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A finite element model is developed in this paper to simulate the degradation of cement-based materials when subjected to aggressive agents, including deionized water and sodium sulfate solutions. The proposed model includes three main modules, i.e. the ionic diffusion module, the chemical reaction module, and the damage quantification module. A modified Poisson-Nernst-Planck model is developed to model the diffusion of multiple ions in the ionic diffusion module. The cracking suction effect is accounted for the suction action caused by newly-formed unsaturated cracks with potential to accelerate the entire diffusion process. In the chemical reaction module, chemical interactions between ions and cement hydration products are solved based on a local equilibrium assumption. Different approaches in dealing with the simulation of the decalcification process of ill-crystallized Calcium Silicate hydrate (C-S-H) are discussed. The entire reactive diffusion mechanism is achieved by using the operator splitting approach to couple the ionic diffusion and the chemical modules. In the damage quantification module, the diffusivities of material are evaluated at the end of each time step based on the change of porosity and propagation of cracking. Two mechanisms of precipitation of hydration products, i.e. through-solution and topochemical reactions, are discussed in the light of their distinct contributions to the cracking propagation. The proposed model is applied to model the experiments reported in the literature and the computed results are also compared with those obtained from other available models. It is found that the results obtained from the proposed model agree very well with those from experiments and generate more accurate predictions than other models. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文开发了一个有限元模型来模拟水泥基材料在遭受包括去离子水和硫酸钠溶液等侵蚀剂的作用下的降解。提出的模型包括三个主要模块,即离子扩散模块,化学反应模块和损害量化模块。修改后的Poisson-Nernst-Planck模型得以开发,以模拟离子扩散模块中多个离子的扩散。裂纹的吸力效应是由新形成的不饱和裂纹引起的吸力作用,具有加速整个扩散过程的潜力。在化学反应模块中,基于局部平衡假设解决了离子与水泥水合产物之间的化学相互作用。讨论了处理重结晶硅酸钙水合物(C-S-H)脱钙过程的不同方法。整个反应性扩散机制是通过使用算子拆分方法耦合离子扩散和化学模块来实现的。在损伤定量模块中,根据孔隙率的变化和裂纹扩展,在每个时间步结束时评估材料的扩散率。考虑到它们对裂化扩展的独特贡献,讨论了水合产物沉淀的两种机理,即通过溶液和拓扑化学反应。所提出的模型用于对文献中报道的实验进行建模,并将计算结果与从其他可用模型获得的结果进行比较。发现从提出的模型获得的结果与从实验获得的结果非常吻合,并且比其他模型产生更准确的预测。 (C)2015 Elsevier Ltd.保留所有权利。

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