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Fiber beam-column model for diagonally reinforced concrete coupling beams incorporating shear and reinforcement slip effects

机译:考虑剪力和加固滑移效应的对角钢筋混凝土连接梁的纤维梁柱模型

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Due to the improved energy-dissipation and deformation capacity compared to the conventionally reinforced concrete (RC) coupling beams, diagonally RC coupling beams are recommended by the ACI 318 code especially for a span-to-depth ratio of less than two and thus acquire more and more applications in coupled wall and core tube systems for tall buildings. This paper proposes a sufficiently accurate and efficient displacement-based fiber beam-column model for the nonlinear seismic analysis of diagonally RC coupling beams with span-to-depth ratios ranging between one and five. The model is developed on the platform of a general FEA package MSC.Marc. First, the conventional fiber beam-column element is modified to consider the flexural contribution of diagonal bars. Then the new section shear force-shear distortion and slip deformation rules are proposed and incorporated into the modified fiber element, respectively, since both the shear and reinforcement slip are critical mechanisms influencing the seismic performance of the beam. The equations for critical model parameters including the cracked shear stiffness and chord rotation limit are developed and verified based on the results of sixteen test specimens collected from previous research. The model is utilized to simulate the collected specimens together with a coupled wall system and proves to be a powerful tool for the nonlinear seismic analysis of diagonally RC coupling beams and coupled walls with satisfied accuracy, efficiency and modeling convenience.
机译:与常规的钢筋混凝土(RC)耦合梁相比,由于改善了能量耗散和变形能力,ACI 318代码推荐使用斜向RC耦合梁,尤其是跨度-深度比小于2时,从而获得更多以及在高层建筑的墙体和芯管耦合系统中的更多应用。本文提出了一种基于位移的纤维梁柱模型,该模型足够准确,有效,可以用于跨角深度比为1到5的对角RC耦合梁的非线性地震分析。该模型是在通用FEA软件包MSC.Marc的平台上开发的。首先,对常规的纤维束柱单元进行了修改,以考虑对角钢筋的弯曲作用。然后,提出了新的截面剪力-剪切变形和滑移变形规则,并将其分别并入修改后的纤维单元中,因为剪切滑移和增强滑移都是影响梁抗震性能的关键机制。基于先前研究收集的16个试样的结果,开发并验证了关键模型参数的方程,包括开裂的剪切刚度和弦旋转极限。该模型与耦合墙系统一起用于模拟采集的标本,并被证明是对角RC耦合梁和耦合墙进行非线性地震分析的有力工具,具有满意的精度,效率和建模便利性。

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