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Experimental analysis of beam-to-column joints equipped with sprayed aluminium friction dampers

机译:装有喷涂铝制减振器的梁对柱节点的试验分析

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In this paper, the results of an experimental analysis regarding beam-to-column joints equipped with friction dampers are presented. Even though the overall concept is not new, the connection structural detail and the friction pad material are different from previous proposals. In particular, the beam is connected to the column with a classical fixed T-stub fastening the upper flange and a friction damper located at the beam lower flange. The friction damper is composed of a stack of steel plates conceived to assure symmetrical friction. The friction pads are made of steel plates coated with thermally sprayed aluminium, The friction damper is designed in order to slide for a force level equal to or lower than the ratio between the nominal flexural resistance of the connected beam and the lever arm, i.e. the distance between the top T-stub and the friction damper. In this way, it is possible to obtain connections able to dissipate the seismic input energy almost without any damage to the steel elements, provided that all the joint components are designed with sufficient over-strength with respect to the actions corresponding to the friction damper sliding force. In this paper, such approach is validated reporting the results of an experimental campaign. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,给出了有关装有摩擦阻尼器的梁到柱节点的实验分析结果。即使总体概念不是新概念,连接结构细节和摩擦垫材料也与以前的建议有所不同。特别是,横梁通过经典的固定T型短管连接到立柱,该T型短管紧固了上凸缘,而摩擦阻尼器位于横梁的下凸缘处。摩擦阻尼器由一叠钢板构成,可确保对称摩擦。摩擦垫由涂有热喷涂铝的钢板制成。摩擦阻尼器的设计目的是使其滑动力等于或小于连接梁与杠杆臂的标称抗弯强度之比,即顶部T型短管与摩擦阻尼器之间的距离。以此方式,可以实现几乎消散地震输入能量而几乎不破坏钢构件的连接,前提是所有铰接部件都设计成相对于摩擦阻尼器滑动的作用具有足够的超强度力。在本文中,这种方法已得到验证,可以报告实验活动的结果。 (C)2018 Elsevier Ltd.保留所有权利。

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