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首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Seismic performance and damage evaluation of a reinforced concrete frame with hysteretic dampers through shake-table tests
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Seismic performance and damage evaluation of a reinforced concrete frame with hysteretic dampers through shake-table tests

机译:带有滞回阻尼器的钢筋混凝土框架的抗震性能和损伤评估,通过振动台试验

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摘要

Passive energy dissipation devices are increasingly implemented in frame structures to improve their performance under seismic loading. Most guidelines for designing this type of system retain the requirements applicable to frames without dampers, and this hinders taking full advantage of the benefits of implementing dampers. Further, assessing the extent of damage suffered by the frame and by the dampers for different levels of seismic hazard is of paramount importance in the framework of performance-based design. This paper presents an experimental investigation whose objectives are to provide empirical data on the response of reinforced concrete (RC) frames equipped with hysteretic dampers (dynamic response and damage) and to evaluate the need for the frame to form a strong column-weak beam mechanism and dissipate large amounts of plastic strain energy. To this end, shake-table tests were conducted on a 2/5-scale RC frame with hysteretic dampers. The frame was designed only for gravitational loads. The dampers provided lateral strength and stiffness, respectively, three and 12 times greater than those of the frame. The test structure was subjected to a sequence of seismic simulations that represented different levels of seismic hazard. The RC frame showed a performance level of 'immediate occupancy', with maximum rotation demands below 20% of the ultimate capacity. The dampers dissipated most of the energy input by the earthquake. It is shown that combining hysteretic dampers with flexible reinforced concrete frames leads to structures with improved seismic performance and that requirements of conventional RC frames (without dampers) can be relieved.
机译:无源消能设备越来越多地应用于框架结构中,以提高其在地震载荷下的性能。设计此类系统的大多数准则保留了适用于不带阻尼器的框架的要求,这阻碍了充分利用实现阻尼器的好处。此外,在基于性能的设计框架中,评估框架和减震器对于不同程度的地震危险所遭受的破坏程度至关重要。本文提出了一项实验研究,其目的是提供有关装备有滞后阻尼器(动态响应和损伤)的钢筋混凝土(RC)框架的响应的经验数据,并评估框架形成坚固的柱弱梁机制的必要性并耗散大量的塑性应变能。为此,在带有滞回阻尼器的2/5比例RC框架上进行了振动台测试。框架仅设计用于重力载荷。减震器的侧向强度和刚度分别是框架的三倍和十二倍。对测试结构进行了一系列地震模拟,这些地震模拟表示了不同程度的地震危害。 RC框架的性能水平为“即时占用”,最大旋转需求低于最终容量的20%。阻尼器消散了地震输入的大部分能量。结果表明,将滞后阻尼器与柔性钢筋混凝土框架结合使用可提高抗震性能,并且可以减轻常规RC框架(无阻尼器)的要求。

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