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Non-linear damping of FRP-confined damaged reinforced concrete columns

机译:FRP约束受损钢筋混凝土柱的非线性阻尼

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Despite the dynamic property of FRP-confined damaged RC (FRP-C DRC) columns are gaining attention, no non-linear material damping of FRP-C DRC has hitherto been evaluated. In this paper, the hysteretic behavior of two tested FRP-C DRC circular columns was first simulated by the confinement model of FRP-C DRC. Through analyzing the energy dissipation of the FRP-C DRC circular columns under cyclic loading with the validated model, a six parameter stress-dependent damping model for FRP-C DRC circular columns was proposed. Based on the proposed damping model, the non-linear material damping and dynamic response of the FRP-C DRC circular columns were evaluated by an iterative numerical method. The calculated results show that when the columns vibrate at resonance, the loss factor of the FRP-C DRC circular columns increases with an increase of the columns' initial damage, and the increase of their non-linear damping effectively reduces the dynamic response of the FRP-C DRC circular columns.
机译:尽管受到FRP约束的受损RC(FRP-C DRC)柱的动态性能受到关注,但迄今为止,尚未评估FRP-C DRC的非线性材料阻尼。在本文中,首先通过FRP-C DRC的约束模型模拟了两个测试的FRP-C DRC圆柱的滞后行为。通过验证模型分析FRP-C DRC圆柱在循环荷载下的能量耗散,提出了FRP-C DRC圆柱的六参数应力相关阻尼模型。基于所提出的阻尼模型,通过迭代数值方法对FRP-C DRC圆柱的非线性材料阻尼和动力响应进行了评估。计算结果表明,当圆柱共振时,FRP-C DRC圆形圆柱的损耗因数随圆柱初始损伤的增加而增加,非线性阻尼的增加有效地降低了圆柱的动力响应。 FRP-C DRC圆柱。

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