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Predicting the longitudinal axial strain in the plastic hinge regions of reinforced concrete beams subjected to reversed cyclic loading

机译:预测循环荷载作用下钢筋混凝土梁塑性铰区域的纵向轴向应变

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The longitudinal axial strain in the plastic hinge regions of reinforced concrete (RC) structures has a significant influence on the behavior of RC structures subjected to reversed cyclic loading. This strain affects energy dissipation in the hysteretic response by causing the sliding along interconnecting wide flexural cracks. In addition, the strain also reduces the effective compressive strength of cracked concrete of the RC members, such as coupling beams, dominated by shear action. The research reported in this paper proposes a model to predict the axial strain in the plastic hinge regions of RC beams. The proposed model includes four path types: Path 1, pre-flexural yielding or unloading region; Path 2, post-flexural yielding region; Path 3, slip region; and Path 4, repeated loading region. In addition, this paper provides an equation to predict the longitudinal axial strain in the plastic hinge regions subjected to reversed cyclic loading of various patterns. To verify the longitudinal strain in the plastic hinge region by the proposed method, twelve RC beams were tested under reversed cyclic loading. The observed longitudinal strains in the plastic hinge regions of the tested beams agreed reasonably with the calculated longitudinal strains.
机译:钢筋混凝土(RC)结构的塑料铰链区域中的纵向轴向应变对承受反向循环荷载的RC结构的性能具有重大影响。该应变通过引起沿相互连接的宽弯曲裂纹的滑动而影响滞后响应中的能量耗散。另外,应变还降低了RC构件开裂的混凝土的有效抗压强度,例如以剪切作用为主的耦合梁。本文报道的研究提出了一个模型来预测RC梁塑性铰区域的轴向应变。所提出的模型包括四种路径类型:路径1,弯曲前屈服或卸载区域;路径1。路径2,弯曲后屈服区域;路径3,滑移区域;路径4,重复加载区域。此外,本文提供了一个方程来预测承受各种样式的反向循环载荷的塑料铰链区域的纵向轴向应变。为了通过提出的方法验证塑料铰链区域的纵向应变,在反向循环载荷下测试了十二个RC梁。在测试梁的塑料铰链区域中观察到的纵向应变与计算的纵向应变合理地吻合。

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