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Nonlinear formulation based on FEM, Mazars damage criterion and Fick's law applied to failure assessment of reinforced concrete structures subjected to chloride ingress and reinforcements corrosion

机译:基于有限元,马扎斯损伤准则和菲克定律的非线性公式用于钢筋混凝土结构遭受氯离子侵入和钢筋腐蚀的破坏评估

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摘要

Structural durability is an important design criterion, which must be assessed for every type of structure. In this regard, especial attention must be addressed to the durability of reinforced concrete (RC) structures. When RC structures are located in aggressive environments, its durability is strongly reduced by physical/chemical/mechanical processes that trigger the corrosion of reinforcements. Among these processes, the diffusion of chlorides is recognized as one of major responsible of corrosion phenomenon start. To accurate modelling the corrosion of reinforcements and to assess the durability of RC structures, a mechanical model that accounts realistically for both concrete and steel mechanical behaviour must be considered. In this context, this study presents a numerical nonlinear formulation based on the finite element method applied to structural analysis of RC structures subjected to chloride penetration and reinforcements corrosion. The physical nonlinearity of concrete is described by Mazars damage model whereas for reinforcements elastoplastic criteria are adopted. The steel loss along time due to corrosion is modelled using an empirical approach presented in literature and the chloride concentration growth along structural cover is represented by Fick's law. The proposed model is applied to analysis of bended structures. The results obtained by the proposed numerical approach are compared to responses available in literature in order to illustrate the evolution of structural resistant load after corrosion start.
机译:结构耐久性是重要的设计标准,必须针对每种类型的结构进行评估。在这方面,必须特别注意钢筋混凝土(RC)结构的耐久性。当RC结构位于腐蚀性环境中时,其物理/化学/机械过程会触发钢筋腐蚀,从而大大降低其耐久性。在这些过程中,氯化物的扩散被认为是引起腐蚀现象开始的主要原因之一。为了准确地模拟钢筋的腐蚀并评估RC结构的耐久性,必须考虑一种能同时考虑混凝土和钢的机械性能的力学模型。在这种情况下,本研究提出了一种基于有限元方法的非线性数值表达式,该方法适用于遭受氯离子渗透和钢筋腐蚀的RC结构的结构分析。 Mazars损伤模型描述了混凝土的物理非线性,而钢筋则采用了弹塑性准则。使用文献中提供的经验方法对由于腐蚀引起的钢随时间的损失进行建模,沿结构覆盖层的氯化物浓度增长用菲克定律表示。所提出的模型被应用于弯曲结构的分析。通过提出的数值方法获得的结果与文献中的响应进行了比较,以说明腐蚀开始后结构抗力载荷的变化。

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