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Seismic performance of a 3D full-scale high-ductility steel-concrete composite moment-resisting structure-Part I: Design and testing procedure

机译:3D全尺寸高延性钢-混凝土复合抗弯结构的抗震性能-第一部分:设计与试验程序

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A multi-level pseudo-dynamic (PSD) seismic test programme was performed on a full-scale three-bay two-storey steel-concrete composite moment-resisting frame built with partially encased composite columns and partial-strength connections. The system was designed to provide strength and ductility for earthquake resistance with energy dissipation located in ductile components of beam-to-column joints including flexural yielding of beam end-plates and shear yielding of the column web panel zone. In addition, the response of the frame depending on the column base yielding was analysed. Firstly, the design of the test structure is presented in the paper, with particular emphasis on the ductile detailing of beam-to-column joints. Details of the construction of the test structure and the test set-up are also given. The paper then provides a description of the non-linear static and dynamic analytical studies that were carried out to preliminary assess the seismic performance of the test structure and establish a comprehensive multi-level PSD seismic test programme. The resulting test protocol included the application of a spectrum-compatible earthquake ground motion scaled to four different peak ground acceleration levels to reproduce an elastic response as well as serviceability, ultimate, and collapse limit state conditions, respectively. Severe damage to the building was finally induced by a cyclic test with stepwise increasing displacement amplitudes.
机译:在由部分包裹的复合柱和部分强度的连接杆构成的全尺寸三托架两层钢混凝土复合抗弯框架上执行了多级拟动力(PSD)地震测试程序。该系统的设计旨在为抗震提供强度和延展性,同时将能量耗散置于梁对柱节点的延性组件中,包括梁端板的挠曲屈服和柱腹板面板区域的剪切屈服。另外,分析了取决于柱基础产量的框架响应。首先,在本文中介绍了测试结构的设计,特别着重于梁-柱节点的延性细节。还给出了测试结构的构造和测试设置的详细信息。然后,本文提供了对非线性静态和动态分析研究的描述,这些研究旨在初步评估测试结构的抗震性能并建立全面的多层PSD地震测试程序。最终的测试协议包括应用频谱兼容的地震地面运动,将其缩放到四个不同的峰值地面加速度水平,以分别再现弹性响应以及可使用性,极限和崩溃极限状态条件。建筑物的严重损坏最终是通过循环试验逐步增大位移幅度引起的。

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