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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Nonlinear analysis of damaged RC beams strengthened with glass fiber reinforced polymer plate under symmetric loads
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Nonlinear analysis of damaged RC beams strengthened with glass fiber reinforced polymer plate under symmetric loads

机译:对称载荷下玻璃纤维增强聚合物板加固损坏RC梁的非线性分析

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摘要

This study presents a new beam-column model comprising material nonlinearity and joint flexibility to predict the nonlinear response of reinforced concrete structures. The nonlinear behavior of connections has an outstanding role on the nonlinear response of reinforced concrete structures. In presented research, the joint flexibility is considered applying a rotational spring at each end of the member. To derive the moment-rotation behavior of beam-column connections, the relative rotations produced by the relative slip of flexural reinforcement in the joint and the flexural cracking of the beam end are taken into consideration. Furthermore, the considered spread plasticity model, unlike the previous models that have been developed based on the linear moment distribution subjected to lateral loads includes both lateral and gravity load effects, simultaneously. To confirm the accuracy of the proposed methodology, a simply-supported test beam and three reinforced concrete frames are considered. Pushover and nonlinear dynamic analysis of three numerical examples are performed. In these examples the nonlinear behavior of connections and the material nonlinearity using the proposed methodology and also linear flexibility model with different number of elements for each member and fiber based distributed plasticity model with different number of integration points are simulated. Comparing the results of the proposed methodology with those of the aforementioned models describes that suggested model that only uses one element for each member can appropriately estimate the nonlinear behavior of reinforced concrete structures.
机译:该研究介绍了一种新的光束柱模型,包括材料非线性和关节灵活性,以预测钢筋混凝土结构的非线性响应。连接的非线性行为在钢筋混凝土结构的非线性响应方面具有出色的作用。在提出的研究中,认为关节柔韧性被认为是在构件的每个端部施加旋转弹簧。为了导出光束柱连接的时刻旋转行为,考虑了由接头中弯曲加强件的相对滑动产生的相对旋转和光束端的弯曲裂缝。此外,与基于对横向载荷的线性矩分布开发的先前模型不同,所考虑的展开塑性模型包括横向和重力负荷效应。为了确认所提出的方法的准确性,考虑了简单地支持的测试梁和三个钢筋混凝土帧。执行三个数值示例的推送和非线性动态分析。在这些实施例中,模拟了使用所提出的方法的连接和材料非线性的非线性行为以及具有不同数量的元件的线性柔性模型,用于每个构件和基于光纤的分布塑性模型的不同数量的集成点。将所提出的方法的结果与上述模型的结果进行了比较,描述了仅使用每个成员的一个元件的建议模型可以适当地估计钢筋混凝土结构的非线性行为。

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