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首页> 外文期刊>Journal of Constructional Steel Research >Full-scale shake table tests of the tension-only concentrically braced steel beam-through frame
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Full-scale shake table tests of the tension-only concentrically braced steel beam-through frame

机译:仅张紧的同心支撑钢制直通框架的全尺寸振动台测试

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The tension-only concentrically braced steel beam-through frame (TCBBF) has the potential to enhance the seismic and post-earthquake performance for low-rise buildings in low to moderate seismic regions. To a better understanding of the dynamic response of TCBBFs, full-scale shake table tests under different seismic hazard levels and aftershocks were conducted on a three-story structural model. From the test results, the damage-control and low-residual-displacement behaviors were verified firstly. Under maximum considered earthquake (MCE), the main frame nearly remained elastic while all the braces yielded and there was almost no residual displacement. Under stronger earthquakes exceeding the MCE, yielding occurred at the beam-column connections, and the main frame demonstrated pinching behavior. Meanwhile, the residual displacement of the structure was still at a very low level. The tension-only braces played a key role in the seismic behavior. The existence of prestress made the braces able to sustain a little compression and thus increased the initial lateral stiffness of the structure. The slackness of the brace would enlarge story drift response and also induce dynamic impact due to the sudden tensioning. This impact effect was effectively controlled because of the high ductility of the braces. Tightening the slack braces was a convenient way to restore the structural behavior if the main frame was not damaged. (C) 2018 Elsevier Ltd. All rights reserved.
机译:仅受拉的同心支撑钢制直通框架(TCBBF)有潜力增强中低地震区低层建筑的抗震和震后性能。为了更好地了解TCBBF的动力响应,在三层结构模型上进行了不同地震危险等级和余震的全尺寸振动台试验。从测试结果中,首先验证了损伤控制和低残留位移行为。在最大考虑地震(MCE)的作用下,主框架几乎保持弹性,而所有支撑均屈服,几乎没有残余位移。在超过MCE的强烈地震下,屈服发生在梁柱连接处,并且主机架表现出挤压行为。同时,结构的残余位移仍处于非常低的水平。仅抗拉支架在地震行为中起关键作用。预应力的存在使支架能够承受少许压缩,从而增加了结构的初始侧向刚度。撑杆的松弛将扩大故事的漂移响应,并由于突然的张紧而引起动态冲击。由于支架的高延展性,有效地控制了这种冲击效果。如果主机架没有损坏,则拧紧松弛的支架是恢复结构性能的便捷方法。 (C)2018 Elsevier Ltd.保留所有权利。

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