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Dynamic characteristics and seismic behavior of prefabricated steel stairs in a full-scale five-story building shake table test program

机译:全尺寸五层建筑振动台测试程序中预制钢楼梯的动力特性和地震行为

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This paper investigates the dynamic characteristics and seismic behavior of prefabricated steel stairs in a full-scale five-story building shake table test program. The test building was subjected to a suite of earthquake input motions and low-amplitude white noise base excitations first, while the building was isolated at its base, and subsequently while it was fixed to the shake table platen. This paper presents the modal characteristics of the stairs identified using the data recorded from white noise base excitation tests as well as the physical and measured responses of the stairs from the earthquake tests. The observed damage to the stairs is categorized into three distinct damage states and is correlated with the interstory drift demands of the building. These shake table tests highlight the seismic vulnerability of modern designed stair systems and in particular identifies as a key research need the importance of improving the deformability of flight-to-building connections. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文在一个完整的五层建筑振动台测试程序中研究了预制钢楼梯的动力特性和抗震性能。首先对测试建筑物进行一系列地震输入运动和低振幅白噪声基准激励,然后将建筑物隔离在其基础上,然后将其固定在振动台压板上。本文介绍了使用白噪声基准激励测试记录的数据识别出的楼梯的模态特征,以及地震测试中楼梯的物理和实测响应。观察到的对楼梯的损坏分为三种不同的损坏状态,并与建筑物的层间漂移要求相关。这些振动台测试凸显了现代设计的楼梯系统的地震脆弱性,尤其是作为一项关键研究需要,其重要性是要提高飞机与建筑物之间连接的可变形性。版权所有(c)2015 John Wiley&Sons,Ltd.

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