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Study of the seismic behavior of external RC beam-column joints through experimental tests and numerical simulations

机译:通过试验和数值模拟研究钢筋混凝土外部梁柱节点的抗震性能

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摘要

The paper is focused on the analysis of some test results obtained in the framework of a wide experimental program on RC beam-column joints carried out at the Laboratory of Structures of the University of Basilicata in Potenza, Italy. Specifically, cyclic tests on full-scale joint specimens having different earthquake resistant design levels were performed, applying different values of axial force. Test results relevant to 4 specimens have been analyzed and compared with the results of numerical simulations based on an accurate finite element modeling using the DIANA code at the Structural Engineering Dept. of the University of Naples. Experimental results show how the value of the axial load acting on the column can change the collapse mode, spreading damage from the beam to the joint panel. Moreover, a collapse mode due to the failure of beam longitudinal rebars, sometimes neglected in structural codes, has been observed. Numerical simulations were used to evaluate the stress distribution in the joint panel as a function of the axial load and to quantify the beam rebar deformations. The reasons for the specimens' global failure and, specifically, for that of the beam longitudinal rebars were identified and highlighted through a comparison with the experimental results.
机译:本文着重分析在意大利波坦察的巴西利卡塔大学结构实验室进行的钢筋混凝土梁柱节点广泛实验程序框架内获得的一些测试结果。具体地,对具有不同抗震设计水平的全尺寸接头样本进行了循环测试,并应用了不同的轴向力值。在那不勒斯大学结构工程系,使用DIANA代码基于精确的有限元建模,对与4个样品相关的测试结果进行了分析,并与数值模拟结果进行了比较。实验结果表明,作用在圆柱上的轴向载荷值如何改变塌陷模式,从而将破坏从梁扩展到连接面板。而且,已经观察到由于梁的纵向钢筋的失效而导致的坍塌模式,有时在结构规范中被忽略。数值模拟被用来评估作为轴向载荷函数的连接面板中的应力分布,并量化梁钢筋的变形。通过与实验结果的比较,确定并标明了试样整体失效的原因,特别是梁纵向钢筋的失效原因。

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