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Investigation of seismic rehabilitation of steel buildings with semi-rigid connections

机译:半刚性连接钢结构房屋的抗震研究

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摘要

The Khorjinee connection is a special connection that was widely used in the construction of low-rise steel structures in Iran before the national seismic code was established. However, catastrophic experiences from recent earthquakes have shown that these connections are highly vulnerable to seismic loads. In fact, it is recognised that such connections should be classified as non-seismic, semi-rigid connections with unknown rotational stiffness. As a result of this issue, many structures with these connections may need to be rehabilitated to ensure their safety in future earthquakes. In this study the dynamic properties of a half-scale model of a four-storey steel structure with Khorjinee connections were determined by a forced vibration test. The structure was then separately rehabilitated by means of four different bracing configurations (X bracing, chevron bracing, eccentrically braced frames (EBFs) and knee braces) and the structural responses were investigated. The results, which include the natural frequencies, mode shapes and damping ratios for each case, present a realistic approach to enable engineers to select the best way of strengthening steel structures with Khorjinee connections according to diverse structural limitations. The structural displacement ratios were found to be significantly larger in structures with EBFs and knee bracing systems when the number of braced spans is high compared with the first mode.
机译:Khorjinee连接是一种特殊连接,在建立国家地震法规之前已广泛用于伊朗的低层钢结构建筑。但是,最近地震的灾难性经验表明,这些连接极易受到地震载荷的影响。实际上,已经认识到,这种连接应被分类为具有未知旋转刚度的非地震半刚性连接。由于此问题,可能需要修复许多具有这些连接的结构,以确保其在未来地震中的安全。在这项研究中,通过强制振动测试确定了具有Khorjinee连接的四层钢结构半比例模型的动力学特性。然后通过四种不同的支撑配置(X支撑,人字形支撑,偏心支撑框架(EBF)和膝盖支撑)分别修复该结构,并研究了结构响应。结果包括每种情况的固有频率,振型和阻尼比,提出了一种切实可行的方法,使工程师可以根据各种结构限制选择采用Khorjinee连接加固钢结构的最佳方法。与第一模式相比,当支撑跨度高时,发现在带有EBF和膝盖支撑系统的结构中,结构位移比明显更大。

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