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Stress-strain model for FRP-confined concrete subject to arbitrary load path

机译:任意荷载路径下FRP约束混凝土的应力应变模型

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摘要

Most existing stress-strain models for fiber reinforced polymer (FRP) confined concrete are applicable to monotonic loading or complete cyclic loading where unloading/reloading is a continuous process between envelope curve and zero stress. However, load cycling is mostly incomplete or partial in practical problems where reverse of loading occurs before the previous load cycle is completed, and this unloading and reloading process is random. Cyclic model allowing for random partial load cycling is rare, if any, due to the lack of experimental data, and the insufficient understanding on the behavior of confined concrete under partial cyclic loading. In this study, FRP confined concrete cylinders were tested under six typical cyclic load patterns. The test results reveal that the partial cyclic stress-strain behavior is different from that under full cyclic loading. The key parameters determining unloading/reloading curves, such as reloading modulus, plastic strain, and tangent unloading modulus are related to loading history and axial stress level. It is found that the key parameters will change, or accumulative damage to concrete will occur, only under certain condition which is defined as effective partial cyclic loading in this work. A simple method is proposed to define the effective partial cyclic loading. Based on an existing complete cyclic model, a stress-strain model for FRP confined concrete under random partial cyclic loading is developed in this work. The proposed model performs well under different load patterns.
机译:现有的大多数纤维增强聚合物(FRP)约束混凝土应力应变模型都适用于单调加载或完整循环加载,其中卸载/再加载是包络线和零应力之间的连续过程。但是,在实际问题中,负载循环大部分是不完整的或部分的,在实际问题中,在前一个负载循环完成之前会发生反向加载,并且此卸载和重新加载过程是随机的。由于缺乏实验数据,并且对局部循环荷载作用下的承压混凝土性能缺乏足够的了解,因此很少有允许随机局部荷载循环的循环模型。在这项研究中,FRP约束混凝土圆柱体在六个典型的循环载荷模式下进行了测试。测试结果表明,部分循环应力-应变行为与完全循环载荷下的行为不同。确定装卸曲线的关键参数,例如装卸模量,塑性应变和切线装卸模量,与装卸历史和轴向应力水平有关。发现关键参数将改变,或者仅在特定条件下会发生混凝土的累积损坏,在此工作中定义为有效的局部循环荷载。提出了一种简单的方法来定义有效的局部循环荷载。在现有的完整循环模型的基础上,建立了随机部分循环荷载作用下的FRP承压混凝土的应力应变模型。所提出的模型在不同的负载模式下表现良好。

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