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Experimental and numerical behaviour of hysteretic and visco-recentring energy dissipating bracing systems

机译:滞回和降粘耗能支撑系统的实验和数值特性

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An extensive program of shaking table tests under the name Project JetPacs (Joint experimental testing on Passive and semi active control systems) has been developed with the goal of assessing the effectiveness of seven different passive and semi-active energy dissipating bracing (EDB) systems in controlling the seismic vibrations of framed buildings. The experimental program, carried out considering a 3D 1/1.5 scaled steel frame, was entirely funded by the Italian Department of Civil Protection as part of the RELUIS 2005-2008 project. The following article focuses on the experimental tests carried out considering only two EDB systems, based on hysteretic dampers (HD) and visco-recentring devices (SMA + VD) respectively. Specially shaped low carbon steel plates were used to provide hysteresis in the HD based devices, while the innovative SMA + VD visco-recentring system was made up of a combination of viscous dampers (VD) and shape memory alloy (SMA) wires. In this paper a displacement focused design procedure based on non linear static analysis has been proposed in order to evaluate the mechanical characteristics of both types of energy dissipating device. The aim of this design procedure is to limit inter-storey drifts after frame yielding. In order to assess the robustness of the design procedure and to evaluate the effects of the viscous and recentring components, two different sets of HD and SMA + VD devices characterized by slight alterations in the mechanical properties have been tested and compared. Finally, the experimental seismic response of the structure equipped with and without the HD and SMA + VD elements is reported and compared with numerical results obtained using non linear time history analysis.
机译:已经开发了一个名为Project JetPacs(无源和半有源控制系统的联合实验测试)的振动台测试程序,目的是评估7种不同的无源和半有源耗能支撑(EDB)系统的有效性。控制框架建筑物的地震振动。该实验程序是在考虑3D 1 / 1.5比例尺钢框架的情况下进行的,完全由意大利民防部资助,作为RELUIS 2005-2008项目的一部分。以下文章重点介绍仅考虑两个EDB系统(分别基于磁滞阻尼器(HD)和粘滞定心设备(SMA + VD))进行的实验测试。特殊形状的低碳钢板用于在基于HD的设备中提供滞后作用,而创新的SMA + VD粘心定心系统由粘滞阻尼器(VD)和形状记忆合金(SMA)线组合而成。本文提出了一种基于非线性静力分析的位移集中设计程序,以评估两种类型的耗能设备的机械特性。此设计过程的目的是限制帧屈服后的层间漂移。为了评估设计程序的稳健性并评估粘性组件和更新组件的影响,已测试并比较了以机械性能略有变化为特征的两组不同的HD和SMA + VD设备。最后,报告了带有和不带有HD和SMA + VD元素的结构的实验地震响应,并与使用非线性时程分析获得的数值结果进行了比较。

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