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Seismic performance of fiber-reinforced concrete interior beam-column joints

机译:纤维混凝土内部梁柱节点的抗震性能

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Fiber-reinforced concrete (FRC), as an advanced alternative to normal concrete, has been increasingly used to construct beam-column joints which is one of the most congested parts of reinforcements in reinforced concrete (RC) structures because of its potentially beneficial properties. The present work aims to investigate the seismic performance of FRC beam-column joints experimentally and numerically. A total of eight beam-column joints, including both FRC beam-column joints and RC beam-column joint, were conducted to explore its seismically important features under quasi-static reversed cyclic load, mainly including the failure modes, hysteretic response, energy dissipation, stiffness degradation. It was found that the application of FRC can effectively improve the seismic performance of beam-column joints because it leads to higher load-carrying capacity and a greater deformation capability prior to the formation of the major diagonal cracks in the joint core zone. A numerical study, using the Open System for Earthquake Engineering Simulation (OpenSEES), was also conducted to study the seismic performance of beam-column joints deeply after its applicability and accuracy being validated with test data. The prediction from the proposed numerical model shows a good agreement with test data. Furthermore, a parametric study was generated to address and evaluate the effects on the seismic performance of FRC beam-column joints from different parameters, including the axial load ratios, transverse reinforcement ratios and FRC compressive strength. The results indicate that the increment of axial load ratios and FRC compressive strength can enhance the load-carrying capacity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纤维增强混凝土(FRC)作为普通混凝土的高级替代品,由于其潜在的有益性能,已越来越多地用于建造梁柱节点,而梁柱节点是钢筋混凝土(RC)结构中钢筋最密集的部分之一。本工作旨在通过实验和数值研究FRC梁柱节点的抗震性能。总共进行了8个梁柱节点,包括FRC梁柱节点和RC梁柱节点,以探讨准静态反向循环荷载下的抗震重要特征,主要包括破坏模式,滞后响应,能量耗散。 ,刚度下降。研究发现,FRC的应用可以有效地改善梁柱节点的抗震性能,因为它在节点芯区域中形成主要的对角裂缝之前会导致更高的承载能力和更大的变形能力。在使用测试数据验证了其适用性和准确性之后,还使用开放地震工程仿真系统(OpenSEES)进行了数值研究,以深入研究梁柱节点的抗震性能。所提出的数值模型的预测显示出与测试数据的良好一致性。此外,还进行了参数研究,以解决和评估不同参数对FRC梁柱节点的抗震性能的影响,包括轴向载荷比,横向增强比和FRC抗压强度。结果表明,轴向载荷比的增加和FRC的抗压强度可以提高承载能力。 (C)2016 Elsevier Ltd.保留所有权利。

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