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Modeling of the chloride diffusivity of ultra-high performance concrete with a multi-scale scheme

机译:多尺度方案建模超高性能混凝土氯化物扩散性

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The chloride diffusivity of ultra-high performance concrete (UHPC) is the key parameter that determines the service life of UHPC structures in chloride environments. In this study, a multi-scale model, which considered the structural information at micro and meso-scale, was proposed to predict macro property, i.e. chloride diffusivity, of UHPC. At micro-scale, the chloride diffusivity of UHPC paste was predicted based on an extended HYMOSTRUC3D model and a finite element method. At meso-scale, Anm model and finite element method were applied to calculate the chloride diffusivity of UHPC mortar. At macro-scale, the chloride diffusivity of UHPC was determined with a two phase model. The chloride diffusivity at a lower scale was used as input to predict the chloride diffusivity at the higher scale. Non-steady chloride diffusion tests were performed to validate the proposed model. The results showed that the proposed multi-scale model gave a little higher chloride diffusivity of UHPC than experiment results. However, the proposed model is still helpful for the durability design of UHPC structure in chloride environments.
机译:超高性能混凝土(UHPC)的氯化物扩散性是确定氯化物环境中UHPC结构的使用寿命的关键参数。在该研究中,提出了一种考虑微型和中间标度结构信息的多尺度模型,以预测UHPC的宏观性,即氯化物扩散性。在微级,基于扩展的Hymostruc3D模型和有限元方法预测UHPC浆料的氯化物扩散性。在中间级,应用ANM模型和有限元方法来计算UHPC砂浆的氯化物扩散性。在宏观级,用两相模型测定UHPC的氯化物扩散率。用较低规模的氯化物扩散率作为输入以预测较高标度的氯化物扩散率。进行非稳定的氯化物扩散试验以验证所提出的模型。结果表明,所提出的多尺度模型比实验结果给出了UHPC的氯化物扩散性较高。然而,所提出的模型仍然有助于氯化物环境中UHPC结构的耐用性设计。

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