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Polygonal loop model for hysteretic behaviour of frame structures with recycled aggregate concrete

机译:回收骨料混凝土框架结构滞后行为的多边形回路模型

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摘要

On the basis of shaking table tests on the recycled aggregate concrete (RAC) precast frame structure subjected to excitations of Wenchuan wave (WCW, 2008, N-S), El Centro wave (ELW, 1940, N-S) and Shanghai artificial wave (SHW), this study employed a new polygonal loop model (PLM) with its two core characteristics, that is, stiffness and strength degradation to describe the hysteretic behaviour of RAC frames. The implementation of the PLM model underwent different stages such as backbone curve, pivot points and unloading/reloading rules. The validation by shaking table tests on the precast RAC frame and application of the PLM to one cast-in-place RAC frame structure revealed that the hysteresis loops generated by the proposed PLM model not only traced the hysteretic trend but also fitted well with the tested hysteretic curves. Given these findings, it may be concluded that the new PLM model can be used to predict the seismic behaviour of RAC frame structures.
机译:在摇晃的综合混凝土(RAC)预制框架结构对汶川波(WCW,2008,NS),EL中心波(ELW,1940,NS)和上海人工波(SHW)进行振动框架结构的基础上。 本研究采用了一种新的多边形环模型(PLM),其两个核心特性,即刚度和强度降解,以描述RAC帧的滞后行为。 PLM模型的实现接受了不同阶段,如骨干曲线,枢轴点和卸载/重新加载规则。 验证通过握住PROPT RAC框架和PLM的应用到一个铸造RAC框架结构的验证表明,由所提出的PLM模型产生的磁滞回路不仅追溯了滞后趋势,还与测试合理合理 滞后曲线。 鉴于这些发现,可以得出结论,新的PLM模型可用于预测RAC框架结构的地震行为。

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