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Investigations of nonlinear dynamic performance of top-and-seat with web angle connections subjected to sudden column removal

机译:突然拆除立柱时带腹板角连接的顶部和底部的非线性动力性能研究

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It is well known that progressive collapse is a complicated dynamic process with geometry and material nonlinearities. Sudden column removal scenario is a simple yet effective method for analysis and design of structures to mitigate progressive collapse. The main objective of this study is to investigate the dynamic performance of top-and-seat with web angle (TSWA) steel beam-column connections under progressive collapse condition. This type of connection represents typical bolted cleat connections with excellent ductility. Each specimen consisted of two adjoining beams pinned at the far ends and connected to a middle column stub. Five dynamic tests for the TSWA connections subjected to sudden removal of the middle columns were conducted in Nanyang Technological University. Another five corresponding static tests were also carried out for comparison with the dynamic behaviour. Test results showed that the release-time durations of the column support force were around 30 ms for all the five dynamic tests. Transient dynamic responses with free vibrations were observed for the connections following instantaneous removal of the middle columns. The maximum dynamic displacement was significantly increased compared to the static connection response. In addition, numerical simulations were also conducted using the general-purpose finite element software ABAQUS. The three-dimensional finite element model was validated by comparing the simulation results against the test data. Parametric studies were carried out to investigate the full dynamic connection performance and its structural resistance under push-down analysis to simulate progressive collapse. By comparing the full dynamic response with its corresponding quasi-static response, both the displacement-based dynamic increase factor (DIF) and force-based DIF were investigated, respectively. The paper ends with some discussions on practical applications of displacement-based DIF and force-based DIF. (C) 2015 Elsevier Ltd. All rights reserved.
机译:众所周知,渐进坍塌是具有几何和材料非线性的复杂动态过程。突然拆除立柱方案是一种简单但有效的方法,用于分析和设计结构以减轻逐渐塌陷。这项研究的主要目的是研究在渐进倒塌条件下顶板与腹板腹板角(TSWA)钢梁柱连接的动力性能。这种类型的连接代表具有出色延展性的典型螺栓防滑板连接。每个样本由两个钉在远端的相邻梁组成,并连接到中间的柱根。在南洋理工大学进行了五个TSWS连接的动态测试,测试中途突然拆除了中间支撑柱。还进行了另外五个相应的静态测试,以与动态行为进行比较。测试结果表明,对于所有五项动态测试,柱支撑力的释放时间持续时间均约为30毫秒。对于中间柱的瞬时移除后的连接,观察到具有自由振动的瞬态动态响应。与静态连接响应相比,最大动态位移显着增加。此外,还使用通用有限元软件ABAQUS进行了数值模拟。通过将仿真结果与测试数据进行比较,验证了三维有限元模型。进行了参数研究,以研究下推分析下的完整动态连接性能及其结构阻力,以模拟逐渐倒塌。通过比较全动态响应及其相应的准静态响应,分别研究了基于位移的动态增加因子(DIF)和基于力的DIF。本文最后讨论了基于位移的DIF和基于力的DIF的实际应用。 (C)2015 Elsevier Ltd.保留所有权利。

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