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Fatigue damage analysis of reinforced concrete column considering low‐cycle behavior of HRB400 steel

机译:考虑HRB400钢低周性能的钢筋混凝土柱疲劳损伤分析

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摘要

In this study, a damage model-based fatigue behavior is proposed. To consider the fatigue behavior of steel in the damage model, the experimental research on reinforcing steel bar grades HRB400 was presented. The monotonic tension test and low-cycle fatigue test were carried out. The plastic strain amplitude-fatigue cycle (epsilon(p)-2N(f)) curve and plastic strain amplitude-strength loss factor (epsilon(p)-phi(SR)) curve were obtained. The fatigue parameters (C-f, C-d, and alpha) were proposed by nonlinear fitting. The specimens were simulated using the "Reinforcing Steel" material in "OpenSees" program. These fatigue parameters were proved to accurately describe the fatigue behavior of HRB400 rebar. Moreover, to verify the application of fatigue damage model in RC column, fiber-based element models were established based on the quasi-static cyclic test on RC columns. The calculated results agreed well with those of the tests. The damage degree of RC column was calculated by the recorded stress-strain curves of material. The proposed fatigue parameters could be referred in damage model based on material fatigue behavior.
机译:在这项研究中,提出了一种基于损伤模型的疲劳行为。为了在损伤模型中考虑钢的疲劳性能,提出了HRB400级钢筋的试验研究。进行了单调张力试验和低周疲劳试验。得到了塑性应变振幅-疲劳循环(epsilon(p)-2N(f))曲线和塑性应变振幅-强度损失因子(epsilon(p)-phi(SR))曲线。通过非线性拟合提出了疲劳参数(C-f,C-d和alpha)。使用“ OpenSees”程序中的“钢筋”材料对样本进行模拟。这些疲劳参数被证明可以准确地描述HRB400钢筋的疲劳行为。此外,为验证疲劳损伤模型在钢筋混凝土柱中的应用,基于准静态循环试验在钢筋混凝土柱上建立了基于纤维的单元模型。计算结果与测试结果吻合良好。 RC柱的损伤程度通过记录的材料应力-应变曲线计算得出。建议的疲劳参数可以在基于材料疲劳行为的损伤模型中参考。

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