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Hysteretic behaviour of steel fibre RC coupled shear walls under cyclic loads: Experimental study and modelling

机译:钢纤维RC剪力墙在循环荷载下的滞回性能:试验研究与建模

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This paper presents the hysteretic behaviour of three 1/3-scale three-storey steel fibre reinforced concrete (SFRC) coupled shear walls (CSWs) under cyclic loads. The deformation, ductility, energy dissipation, stiffness and crack propagation of the specimens are also discussed and analysed. The results show steel fibre improves the ductility and energy dissipation capacity, and restrains the crack propagation of the CSWs, and delays the degradation of their lateral stiffness and force. Based on the experiments, a simple trilinear model is developed to simulate the skeleton curve of lateral force displacement of the SFRC CSWs. Through analysing several typical cycles of the hysteretic of these CSWs, the feature points of the proposed hysteretic model are defined which subsequently is used to evaluate the complete hysteretic behaviour of the CSWs. Using existing experimental data and this study, several representative experimental hysteretic cycles are compared with the proposed model. The result indicates a good agreement is reached between the model and experimental results.
机译:本文介绍了三种1/3比例三层钢纤维增强混凝土(SFRC)耦合剪力墙(CSW)在循环荷载下的滞后行为。还讨论并分析了试样的变形,延展性,能量耗散,刚度和裂纹扩展。结果表明,钢纤维提高了延展性和能量耗散能力,抑制了CSW的裂纹扩展,并延迟了其横向刚度和力的下降。在实验的基础上,建立了一个简单的三线性模型来模拟SFRC CSW横向力位移的骨架曲线。通过分析这些CSW滞后的几个典型周期,定义了所提出的滞后模型的特征点,随后将这些特征点用于评估CSW的完整滞后行为。利用现有的实验数据和本研究,将几个代表性的实验滞后周期与提出的模型进行了比较。结果表明,模型与实验结果吻合良好。

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