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Loss-of-stability vs yielding-type collapse mode in 3D steel structures under a column removal scenario: an analytical method of assessing the collapse mode

机译:柱移除场景下3D钢结构的失稳与屈服型塌陷模式:一种评估塌陷模式的分析方法

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Progressive collapse of structures is the phenomenon of an initial failure mushrooming into global level, resulting in total or partial damage of the structure. This field is currently dominated by the Alternate Load Path Method, which involves the notion of a vertical key-component removal as the result of an abnormal event and the assessment of the remaining structure to bridge over the loss of that component. Previous work by the authors has shown that under a column removal scenario in a moment-resisting steel frame, the two most prominent collapse mechanisms are the loss-of-stability mode which involves the buckling of another column, and the yielding-type mode which is comprised by a series of plastic hinges at the beams ends and the eventual occurrence of a kinematic chain. The current paper expands this work in a 3D framework and develops a detailed numerical model of a 10story steel frame composite building. Interior gravity columns are removed along the height of the structure and the response of the structure in terms of the corresponding collapse mechanism is captured. The simulations are conducted using the finite element software ABAQUS and all the modeling assumptions are explicitly stated and discussed.
机译:结构的逐步倒塌是指初始破坏迅速发展到整体水平的现象,从而导致结构的全部或部分损坏。当前,该字段由“备用加载路径方法”主导,该方法涉及由于异常事件而导致垂直键组件被移除的概念以及对剩余结构的评估,以弥补该组件的损失。作者的先前工作表明,在抗弯钢框架上的柱拆除方案下,两个最突出的坍塌机制是涉及另一根柱屈曲的失稳模式和屈服型模式。它由位于横梁末端的一系列塑料铰链和最终出现​​的运动链组成。当前的论文在3D框架中扩展了这项工作,并开发了10层钢框架复合建筑的详细数值模型。沿结构的高度移除内部重力柱,并捕获结构在相应塌陷机制方面的响应。使用有限元软件ABAQUS进行仿真,并明确陈述和讨论所有建模假设。

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