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Cyclic loading tests of earthquake-resilient prefabricated cross joint with single flange cover plate

机译:单法兰盖板的抗震预制十字节点的循环荷载试验

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Earthquake-resilient functions have become a frontier hot direction in the field of seismic engineering. Based on the concept of damage control, a new type of earthquake-resilient prefabricated cross joint (ERPCJ) with single flange cover plate (FCP) has been proposed. The ERPCJ is composed of a circular tubular steel column with a cantilever beam, a common beam, and a connection device. The plastic hinge will be transferred to the connection device, when the cantilever beam has been strengthened and the FCPs have been reduced. This design only requires replacement of the connection device to achieve recovery after an earthquake. In this study, seven low frequency cyclic loading tests were carried out on six specimens. The failure mode, hysteresis curve, skeleton curve, and other seismic performance indices of the joint were obtained. The influences of the weakened form, thickness and material property of the FCPs, and the gap between the beams on the seismic performance of the joint were mainly investigated. The experiments showed that the ERPCJ with reasonable parameter settings possessed good bearing capacity and hysteresis characteristics. The repair program of replacing the connection device was feasible and the requirements of earthquake resilience could be met. The ERPCJ utilizes the plastic deformation of the FCPs to dissipate the seismic energy and improve its ductility and rotation ability. In addition, thickness and material property of the FCPs, and a gap between the beams significantly affect the seismic performance of the joint. Therefore, the values of these parameters should be designed reasonably. (C) 2019 Elsevier Ltd. All rights reserved.
机译:抗震功能已成为地震工程领域的前沿热点。基于损伤控制的概念,提出了一种新型的带有单法兰盖板(FCP)的抗震预制十字接头(ERPCJ)。 ERPCJ由带有悬臂梁,公共梁和连接装置的圆形钢管柱组成。当加强悬臂梁并减小FCP时,塑料铰链将转移到连接设备上。此设计仅需要更换连接设备即可在地震后恢复。在这项研究中,对六个样本进行了七个低频循环载荷测试。获得了接头的破坏模式,磁滞曲线,骨架曲线以及其他抗震性能指标。主要研究了FCP的弱化形式,厚度和材料性能以及梁之间的间隙对节点抗震性能的影响。实验表明,合理设置参数的ERPCJ具有良好的承载能力和磁滞特性。更换连接装置的维修程序是可行的,可以满足抗震能力的要求。 ERPCJ利用FCP的塑性变形消散地震能量,并改善其延展性和旋转能力。此外,FCP的厚度和材料特性以及梁之间的间隙会显着影响接头的抗震性能。因此,应合理设计这些参数的值。 (C)2019 Elsevier Ltd.保留所有权利。

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