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首页> 外文期刊>Structural engineering international >The Role of Connections in the Response of Steel Frames to Fire
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The Role of Connections in the Response of Steel Frames to Fire

机译:连接在钢框架起火反应中的作用

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摘要

Connections are critical structural elements of building frames, and in a fire are subject to forces very different from those at the ambient temperature for which they are designed. The fracture of a connection can cause the collapse of the connected beam, which may lead to a progressive collapse sequence affecting the entire building. This paper overviews the sequence of research on connection behaviour in a fire at the University of Sheffield. Early work focused on studying connections in terms of their moment-rotation behaviour alone. Concurrent full-scale building fire tests led to the realization that the tying capacity of connections is of prime importance for maintaining the structural stability in a fire. For whole-structure numerical modelling in performance-based fire engineering design, the development of the component-based approach, which was initially introduced for ambient temperature connection design, is an appropriate way to rationalize and model connection behaviour under these complex loadings. The effect of high co-existent rotation on the tying capacity of connections has been studied in furnace tests at various temperatures, which have provided data to assist in the characterization of the component-based model. A general component-based connection element, into which appropriate component models can be inserted, has been developed so that full connection performance, including fracture of components, can be integrated into global non-linear structural fire analysis. This will allow buildings to be modelled for a range of fire scenarios so that they can be designed to avoid progressive collapse in a fire.
机译:连接是建筑框架的关键结构元素,在火灾中,其承受的力与设计时所处的环境温度大不相同。连接的断裂会导致连接梁的塌陷,这可能导致逐渐塌陷的顺序影响整个建筑物。本文概述了谢菲尔德大学在一场火灾中对连接行为的研究顺序。早期的工作集中在仅根据力矩旋转行为研究连接。同时进行的全面建筑火灾测试导致人们意识到,连接的绑扎能力对于维持火灾中的结构稳定性至关重要。对于基于性能的消防工程设计中的全结构数值建模,最初在环境温度连接设计中引入的基于组件的方法的开发是合理化和模拟这些复杂载荷下的连接行为的合适方法。在各种温度下的熔炉测试中已经研究了高共存旋转对连接绑扎能力的影响,这些测试提供了数据以帮助表征基于组件的模型。已经开发了一种通用的基于组件的连接元件,可以在其中插入适当的组件模型,以便可以将包括组件断裂在内的完整连接性能集成到全局非线性结构火灾分析中。这将使建筑物能够针对各种火灾场景进行建模,从而可以设计其避免火灾中的逐步倒塌。

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