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RC frame structures retrofitted by FRP-wrapping: A model for columns under axial loading and cyclic bending

机译:FRP包裹加固的RC框架结构:承受轴向载荷和周期性弯曲的圆柱模型

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摘要

In order to mitigate the seismic risk of existing RC frame structures not designed with seismic criteria, a widespread strengthening strategy is based on increasing strength and ductility of RC columns by means of Fiber Reinforced Polymer wrapping. The existing models for RC cross-sections wrapped by FRP sheets were developed principally considering pure axial loads with uniform confinement pressure. In seismic areas, RC columns are instead usually subjected to axial load and cyclic bending. In the present work, in order to consider the effective loading conditions, an iterative cyclic model for square RC cross-sections wrapped by composite FRP sheets subjected to axial force and cyclic bending is proposed. The model considers the strain gradient-effect over the cross-section due to the bending loads that change significantly the confinement level of RC cross-section. Moreover, the model has been validated by comparing the numerical outcomes with various cyclic experimental results. The model has been also implemented in an open-source software with distributed plasticity finite elements in order to perform pushover analyses of an existing RC frame structure with different retrofitting strategies to improve the ductility of the columns for lateral forces.
机译:为了减轻未按地震标准设计的现有RC框架结构的地震风险,一种广泛的加固策略是基于通过纤维增强聚合物包裹增强RC柱的强度和延展性的。现有的FRP板包裹的RC截面模型主要是考虑纯轴向载荷和均匀约束压力而开发的。在地震地区,RC柱通常承受轴向载荷和周期性弯曲。在目前的工作中,为考虑有效载荷条件,提出了一种复合FRP板在轴向力和周期性弯曲作用下包裹的方形RC截面的迭代循环模型。该模型考虑了由于弯曲载荷而导致的截面应变梯度效应,该载荷显着改变了RC截面的约束水平。此外,该模型已通过将数值结果与各种循环实验结果进行比较而得到验证。该模型还已在具有分布式可塑性有限元的开源软件中实现,以便对现有RC框架结构进行推翻分析,并采用不同的改装策略,以提高横向力柱的延性。

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