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A coupled diffusion-mechanical model with boundary element method to predict concrete cover cracking due to steel corrosion

机译:基于边界元法的扩散-力学耦合模型预测钢筋锈蚀引起的混凝土覆盖层开裂

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摘要

Concrete cracking caused by steel corrosion is one of the most important durability issues for reinforced concrete structures. A coupled diffusion-mechanical model has been developed in this study to predict the crack propagation in concrete during the steel corrosion process. The spatial and time distribution of corrosion depth around the steel cross section during the corrosion process is first calculated from the chloride diffusion analysis in the corrosion module. In the mechanical module, for each time moment corresponding to a certain degree of corrosion, the non-uniform corrosion distribution obtained from the corrosion module is adopted as geometric input, and governing equations based on boundary element methods are set up to calculate the extent of cracking in the concrete. Based on two indirect boundary element methods, the fictitious stress method and displacement discontinuity method, the mechanical problem of the concrete/rust/steel composite under rust expansion is formulated. Different concrete fracture properties and rust properties are employed as input in the model to examine their effects on the crack width evolution in concrete. A slab with steel reinforcements of different diameters but at the same concrete cover is analyzed as an example to illustrate the applicability of the developed model in predicting crack width in the concrete cover. The delaying effect of rust penetrating into concrete cracks on the crack width evolution is also simulated with the present model. The developed boundary element model coupling the diffusion and mechanical processes shows the potential for realistic prediction of service life of structures suffering from steel corrosion by taking into account of the interaction effects during the corrosion and concrete cracking processes.
机译:由钢腐蚀引起的混凝土开裂是钢筋混凝土结构最重要的耐久性问题之一。在这项研究中,已经建立了一个耦合扩散-力学模型来预测钢腐蚀过程中混凝土中的裂纹扩展。首先根据腐蚀模块中的氯化物扩散分析计算腐蚀过程中钢截面周围腐蚀深度的空间和时间分布。在机械模块中,对于对应于一定程度腐蚀的每个时刻,均采用从腐蚀模块获得的非均匀腐蚀分布作为几何输入,并建立基于边界元方法的控制方程来计算腐蚀程度。在混凝土中开裂。基于虚拟应力法和位移不连续法两种间接边界元法,阐述了锈/锈复合材料在锈胀下的力学问题。模型中采用了不同的混凝土断裂特性和防锈特性作为输入,以检验它们对混凝土裂缝宽度演变的影响。以一个具有不同直径但在相同混凝土盖层的钢筋的平板为例进行了分析,以说明该模型在预测混凝土盖层裂缝宽度方面的适用性。该模型还模拟了锈蚀渗入混凝土裂缝对延迟宽度发展的影响。考虑到腐蚀和混凝土开裂过程中的相互作用,开发的结合扩散和机械过程的边界元模型显示了对遭受钢腐蚀的结构的使用寿命进行实际预测的潜力。

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