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Shake table assessment of gusset plate connection behaviour in concentrically braced frames

机译:同心支撑框架中节点板连接行为的振动台评估

摘要

Diagonal bracing members and their connections to beams and columns are the key lateral resisting components in concentrically braced frames (CBFs). Although gusset plate connections are widely used to connect bracing and frame members in such systems, their design often involves significant simplifications and idealisations due to the complexity of their behaviour under seismic loading. A conventional approach, which utilises a standard linear clearance zone that permits out-of-plane brace deformation, is typically used in the design of gusset plates. This approach can result in overly large connections with cumbersome details. The desire to achieve an improved balance between the gusset over-strength, on the one hand, and a favourable overall frame performance coupled with practical connection detailing, on the other, has prompted proposals for an improved design approach. However, before new recommendations on the design of gusset plate connections can be provided for use in codified guidance, there is a need to assess the performance of such detailing alternatives under realistic earthquake loading conditions. Accordingly, in this study, the performance of different brace connection configurations and gusset plate designs are examined using shake table testing. The paper describes twelve single-storey full scale shake table tests, which were performed on the AZALEE seismic testing facility at CEA Saclay. In seven of these tests, the gusset plates at the end of the brace members were connected to both beam and column flanges, while in the other five tests these were connected to the beam flange only. Conventional gusset plate design with a standard linear clearance was used for six tests, whereas a more balanced design with a nonlinear elliptical clearance detail was used for the others. The experimental set-up, specimen details, and loading procedures are presented, together with a detailed account of the results and observations. The main findings and their implication on the performance at the local component, as well as the overall frame levels, are highlighted. In particular, it is shown that, provided a number of recommendations are followed, the balanced design approach using a nonlinear clearance can enhance the overall drift capacity, while maintaining control of the failure mode within the bracing member.
机译:对角支撑构件及其与梁和柱的连接是同心支撑框架(CBF)中的关键侧向抵抗组件。尽管在这种系统中,角撑板连接广泛用于连接支撑和框架构件,但由于其在地震荷载下的行为复杂性,其设计通常涉及显着的简化和理想化。在角撑板的设计中通常使用一种常规方法,该方法利用允许平面外支撑变形的标准线性间隙区域。这种方法可能导致连接过多,细节繁琐。一方面,希望在角撑板超强度与良好的整体框架性能之间实现更好的平衡,另一方面还要结合实际的连接细节,这促使人们提出了改进设计方案的建议。但是,在可以将有关扣板连接设计的新建议提供给编码指南之前,需要评估这种细化替代方案在实际地震荷载条件下的性能。因此,在这项研究中,使用振动台测试检查了不同支撑连接配置和角撑板设计的性能。本文描述了十二个单层全尺寸振动台测试,这些测试是在CEA Saclay的AZALEE地震测试设施上进行的。在其中的七个测试中,撑杆构件末端的角撑板同时连接到梁和柱法兰,而在其他五个测试中,仅将它们连接到梁法兰。传统的角撑板设计具有标准的线性间隙,可用于六项测试,而其他方案则采用具有非线性椭圆形间隙细节的更加平衡的设计。介绍了实验设置,标本详细信息和加载程序,以及对结果和观察结果的详细说明。重点介绍了主要发现及其对本地组件性能以及整体帧级别的影响。特别地,表明,只要遵循许多建议,使用非线性间隙的平衡设计方法就可以增强总体漂移能力,同时保持对支撑构件内失效模式的控制。

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