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Effect of Seismic Load History on Deformation Limit States for Longitudinal Bar Buckling in RC Circular Columns

机译:地震荷载历史对钢筋混凝土圆柱纵向钢筋屈曲变形极限状态的影响

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This paper investigates the impact of seismic load history on longitudinal bar buckling in reinforced concrete (RC) bridge columns. Previous research has shown that reinforcing bars are prone to buckling upon reversal from tensile strain. To quantify this effect, a hybrid analysis method using both fiber and solid elements is developed and implemented to assess the impact of seismic load history on reinforcing bar buckling. Forty earthquake ground motions are utilized to conduct nonlinear time history analysis of bridge columns using a fiber-based model. The longitudinal bar strain history from the fiber-based model is then utilized as the input to the finite element model. A parametric study is conducted for the purpose of developing design equations that provide strain limits prior to the onset of bar buckling. Simple design approaches are proposed based on the design equations. (C) 2014 American Society of Civil Engineers.
机译:本文研究了地震荷载历史对钢筋混凝土(RC)桥柱中的纵向钢筋屈曲的影响。先前的研究表明,钢筋由于拉伸应变的逆转而易于弯曲。为了量化这种影响,开发了一种同时使用纤维和固体元素的混合分析方法,以评估地震荷载历史对钢筋屈曲的影响。利用基于纤维的模型,利用四十次地震地震动来进行桥梁柱的非线性时程分析。然后,将基于纤维的模型的纵向钢筋应变历史用作有限元模型的输入。进行参数研究是为了开发设计方程,该方程在钢筋屈曲发生之前提供应变极限。根据设计方程提出了简单的设计方法。 (C)2014年美国土木工程师学会。

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