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Seismic capacity of retrofitted beam-column connections in high-rise steel frames when subjected to long-period ground motions

机译:高层钢框架中经过长期地震动时加装梁柱连接的抗震能力

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摘要

The seismic capacity of beam-to-column connections in steel high-rise frames is a matter of concern, particularly when they are subjected to long-period ground motions. A previous full-scale shaking table test conducted at the E-Defense National Research Institute for Earth Science and Disaster Prevention in Japan disclosed cracks and fractures in such beam-to-column connections. This paper examines the effects of three types of beam-to-column connection retrofit: supplemental welds, wing plates, and a haunch. Quasi-static member tests and a series of shaking table tests applied to a full-scale specimen are conducted to quantify the respective performances of the retrofit schemes. The performance of a total of 28 connections tested by the member and shaking table tests is evaluated together with that of an additional 12 unretrofitted connections tested in the previous test. When the supplemental welds are applied only to the shear tab to the web, the connection fractures at the same instant as the connection without retrofit. The corresponding cumulative plastic rotation is not improved. When the supplement welds are further applied to the web-to-column connection, strain concentration at the bottom flange, primarily promoted by the presence of the RC floor slab, is significantly reduced, and the cumulative plastic rotation capacity is increased to eight times that of the connection without retrofit. For the wing plate connection and haunch connection, the critical section is moved from the beam end to the beam cross-section corresponding to the tip of the wing plates or haunch, resulting in an improvement of ductility by eight times that of the unretrofitted connection.
机译:在钢制高层框架中,梁到柱连接的抗震能力是一个值得关注的问题,特别是当它们经受长时间的地面运动时。日本E-Defense国家地球科学与灾难预防研究所先前进行的全面振动台测试显示了这种梁柱连接中的裂缝和断裂。本文研究了三种梁到柱连接改造的效果:补充焊缝,翼板和弯头。进行了拟静力构件试验和应用于满量程试样的一系列振动台试验,以量化改造方案的各个性能。评估了该构件和振动台测试总共测试的28个连接的性能,以及先前测试中测试的另外12个未经改装的连接的性能。当仅将辅助焊缝施加到腹板上的剪力舌上时,该连接会在不进行翻新的情况下与连接同时断裂。相应的累积塑性旋转没有得到改善。当补充焊缝进一步应用于腹板对柱连接时,底部凸缘处的应力集中(主要是由于RC楼板的存在而引起的)显着降低,并且累积塑性旋转能力提高到八倍。无需改造的连接方式。对于翼板连接和直角连接,关键部分从梁的末端移动到与翼板或直角的尖端相对应的横梁截面,从而将延展性提高了未经改装的连接的八倍。

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