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Cyclic Tests on External RC Beam-Column Joints: Role of Seismic Design Level and Axial Load Value on the Ultimate Capacity

机译:外部RC梁柱节点的循环试验:抗震设计水平和轴向载荷值对极限承载力的作用

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摘要

A wide experimental program on beam-column RC joints carried out in the framework of the DPC-Reluis Project (DPC: Department of Civil Protection, Reluis: Network of University Laboratories of Earthquake Engineering) is presented. All the experimental tests were performed at the Laboratory of Structures of the University of Basilicata, Potenza, Italy. The main objective of the experimental campaign is to study and compare the post-elastic behavior of beam-column joints with different earthquake-resistant design levels, indicating the role of some structural parameters such as the axial load value acting on the column, beam dimensions, and steel type, on the joint performances and failure mechanism. The analyses have mainly been devoted to improving the assessment procedures regarding existing buildings but also to verifying the prediction capability of the capacity models relevant to beam-column joints contained in literature and in the new seismic codes. Following a short description of the experimental methodologies used in other campaigns, the experimental program is presented, providing a detailed description of the specimens and of the testing set-up. This is followed by a report of the main results of the cyclic tests performed on the beam-column specimens that highlight the role played by axial load and seismic design level in determining the failure mechanism and the global response of the joints.
机译:提出了在DPC-Reluis项目(DPC:民防部,Reluis:地震工程大学实验室网络)框架内进行的有关梁柱RC节点的广泛实验程序。所有实验测试均在意大利波坦察的巴西利卡塔大学结构实验室进行。实验活动的主要目的是研究和比较具有不同抗震设计水平的梁柱节点的后弹性行为,表明某些结构参数的作用,例如作用在柱上的轴向载荷值,梁​​尺寸,以及钢种,对接头性能和破坏机理的影响。这些分析主要致力于改善有关现有建筑物的评估程序,还旨在验证文献和新的地震法规中所包含的与梁柱节点相关的承载力模型的预测能力。在简短介绍了其他活动中使用的实验方法之后,介绍了实验程序,并提供了标本和测试设置的详细说明。接下来是一份对梁柱试样进行循环试验的主要结果的报告,这些试验突出了轴向载荷和抗震设计水平在确定节点的破坏机理和整体响应方面所起的作用。

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