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Experimental study of earthquake-resilient prefabricated sinusoidal corrugated web beam-column joint

机译:抗震预制正弦波纹腹板梁柱节点的试验研究

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摘要

The functional structure of earthquake-resilient has become a frontier issue in the field of structural seismic performance. For researching the performance of seismic and post-earthquake resilience of earthquake-resilient prefabricated sinusoidal corrugated web beam-column joint (PSCWJ) previously proposed by the author, the low frequency cyclic loading test and the finite element (FE) numerical verification have been carried out on eight specimens in this paper. The hysteretic curve, skeleton curve, strain variation curve, ductility, energy dissipation and other seismic performance indexes of this joint have been obtained. The impact of weakend form, thickness and strength of the flange cover plate (FCP), and the gap between beams on the joint seismic performance as well as the post-earthquake repair performance have been investigated. The results indicate that: the reasonably designed joint does well in bearing capacity, ductility and energy dissipation capability; the quick repair of joint can be realized by installing a new connection device, and the repaired joint can still meet the seismic performance requirements; the FCP weakened by a straight dog-bone profile is better for the joint plastic development and the relocation of plastic hinge at the beam end; the gap properly set between beams can effectively promote the rotation capability of the joint; the yield load of joint is directly decided by the thickness and the strength of the FCP.
机译:抗震的功能结构已经成为结构抗震性能领域的前沿问题。为了研究作者先前提出的抗震预制正弦波纹腹板梁-柱节点(PSCWJ)的抗震性能和震后回弹性能,进行了低频循环荷载试验和有限元(FE)数值验证在本文的八个样本中。得到了该接头的磁滞曲线,骨架曲线,应变变化曲线,延性,能量耗散及其他抗震性能指标。研究了薄弱形式,法兰盖板(FCP)的厚度和强度以及梁之间的缝隙对接头抗震性能以及地震后修复性能的影响。结果表明:合理设计的节点在承载力,延性和能量耗散能力方面表现良好。安装新的连接装置即可实现接头的快速修复,修复后的接头仍能满足抗震性能要求。通过笔直的狗骨形轮廓削弱的FCP有利于接头的塑性发展和梁端部的塑料铰链的重新定位。适当地设置梁之间的间隙可以有效地提高接头的旋转能力。接头的屈服载荷直接取决于FCP的厚度和强度。

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