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Numerical simulation on time-dependent mechanical behavior of concrete under coupled axial loading and sulfate attack

机译:轴向荷载和硫酸盐侵蚀作用下混凝土时变力学行为的数值模拟

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This paper numerically simulates time-dependent mechanical behaviors, such as stress redistribution and bearing capacity degradation, of concrete subjected to the coupled axial loading and sulfate attack. Based on Fick's law and chemical reaction kinetics, a diffusion-reaction model was proposed to obtain the spatial and time-dependent concentration distribution of sulfate ion, gypsum and ettringite. From previous study, a chemical damage, characterized by the volumetric expansion from ettringite formation, is introduced to reflect the influence of sulfate attack on concrete performance. Furthermore, using the plasticity theory and damage mechanics, a coupled chemo-mechanical damage constitutive model was determined by introducing the chemical damage. Finally, a concrete prism is regarded as a research object, to investigate the time-dependent stress and bearing capacity degradation of concrete structures subjected to the coupled axial compression and sulfate attack.
机译:本文数值模拟了轴向载荷和硫酸盐侵蚀共同作用下混凝土随时间变化的力学行为,例如应力再分布和承载能力下降。根据菲克定律和化学反应动力学,提出了一种扩散反应模型,以求得硫酸根离子,石膏和钙矾石的时空浓度分布。根据先前的研究,引入了以钙矾石形成的体积膨胀为特征的化学损伤,以反映硫酸盐侵蚀对混凝土性能的影响。此外,利用可塑性理论和损伤力学,通过引入化学损伤来确定化学-机械耦合的损伤本构模型。最后,以混凝土棱镜为研究对象,研究混凝土结构在轴向压缩和硫酸盐侵蚀作用下随时间的应力和承载能力的下降。

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