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Application of Gurson–Tvergaard–Needleman Constitutive Model to the Tensile Behavior of Reinforcing Bars with Corrosion Pits

机译:Gurson-Tvergaard-Needleman本构模型在腐蚀坑钢筋抗拉性能中的应用

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摘要

Based on meso-damage mechanics and finite element analysis, the aim of this paper is to describe the feasibility of the Gurson–Tvergaard–Needleman (GTN) constitutive model in describing the tensile behavior of corroded reinforcing bars. The orthogonal test results showed that different fracture pattern and the related damage evolution process can be simulated by choosing different material parameters of GTN constitutive model. Compared with failure parameters, the two constitutive parameters are significant factors affecting the tensile strength. Both the nominal yield and ultimate tensile strength decrease markedly with the increase of constitutive parameters. Combining with the latest data and trial-and-error method, the suitable material parameters of GTN constitutive model were adopted to simulate the tensile behavior of corroded reinforcing bars in concrete under carbonation environment attack. The numerical predictions can not only agree very well with experimental measurements, but also simplify the finite element modeling process.
机译:基于细观损伤力学和有限元分析,本文旨在描述Gurson-Tvergaard-Needleman(GTN)本构模型描述腐蚀钢筋的拉伸性能的可行性。正交试验结果表明,通过选择不同的GTN本构模型材料参数,可以模拟不同的断裂模式和相关的损伤演化过程。与破坏参数相比,这两个本构参数是影响抗拉强度的重要因素。标称屈服强度和极限抗拉强度均随本构参数的增加而显着降低。结合最新数据和反复试验方法,采用合适的GTN本构模型材料参数,模拟了碳化环境下混凝土中锈蚀钢筋的拉伸性能。数值预测不仅可以与实验测量非常吻合,而且可以简化有限元建模过程。

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