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Modeling of time-varying stress in concrete under axial loading and sulfate attack

机译:轴向荷载和硫酸盐侵蚀下混凝土时变应力的建模

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This paper has numerically investigated the changes of loading-induced stress in concrete with the corrosion time in the sulfate-containing environment. Firstly, based on Fick's law and reaction kinetics, a diffusion-reaction equation of sulfate ion in concrete is proposed, and it is numerically solved to obtain the spatial and temporal distribution of sulfate ion concentration in concrete by the finite difference method. Secondly, by fitting the existed experimental data of concrete in sodium sulfate solutions, the chemical damage of concrete associated with sulfate ion concentration and corrosion time is quantitatively presented. Thirdly, depending on the plastic-damage mechanics, while considering the influence of sulfate attack on concrete properties, a simplified chemo-mechanical damage model, with stress-based plasticity and strain-driven damage, for concrete under axial loading and sulfate attack is determined by introducing the chemical damage degree. Finally, an axially compressed concrete prism immersed into the sodium sulfate solution is regarded as an object to investigate the time-varying stress in concrete subjected to the couplings of axial loading and sulfate attack.
机译:本文对含硫酸盐环境中混凝土的荷载诱导应力随腐蚀时间的变化进行了数值研究。首先,基于菲克定律和反应动力学,提出了硫酸根离子在混凝土中的扩散反应方程,并通过有限差分法数值求解了硫酸根离子在混凝土中的时空分布。其次,通过拟合混凝土在硫酸钠溶液中的实验数据,定量给出了混凝土中与硫酸根离子浓度和腐蚀时间有关的化学损伤。第三,根据塑性损伤机理,在考虑硫酸盐侵蚀对混凝土性能的影响的基础上,确定了一种简单的化学-机械损伤模型,该模型具有轴向应力和硫酸盐侵蚀的混凝土基于应力的可塑性和应变驱动损伤。通过介绍化学损害程度。最后,将轴向压缩的混凝土棱镜浸入硫酸钠溶液中作为研究轴向载荷和硫酸盐侵蚀耦合作用下混凝土随时间变化应力的目标。

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