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Studies on the Behavior of Steel Single-Plate Beam End Connections in a Fire

机译:钢单板梁端部连接在火灾中的行为研究

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摘要

This paper summarizes the results of a recently completed research study on the behavior of simple beam end framing connections in steel buildings subjected to fire. Connections are critical elements in maintaining the integrity of a structure during a fire, but there are still many aspects of connection behavior in a fire that are not well understood. In the USA, one of the most common types of simple beam end framing connections is the single-plate connection, which was the subject of this study. In this research investigation, a series of experiments were conducted on connection subassemblies at elevated temperatures to understand and characterize connection stiffness, strength and deformation capacity, and to validate predictions of connection capacity developed by computational and design models. Three-dimensional finite element (FE) connection models were developed and these models were evaluated by comparing with experimental data. The FE models were then used to conduct an extensive series of parameter studies that investigated the impact of several key variables on connection response to the heating and cooling stages of a fire. This paper describes key aspects of this study, including the experiments, development of FE models and parametric studies. The paper highlights the results of the study that provide important insights into connection behavior during a fire and the implications of these results for design.
机译:本文总结了最近完成的关于火灾中钢结构建筑中简单梁端框架连接行为的研究结果。连接是在火灾中保持结构完整性的关键元素,但是在火灾中仍有许多连接行为方面的知识尚不清楚。在美国,单板连接是最常见的简单梁端框架连接类型之一,这是本研究的主题。在这项研究调查中,在高温下对连接子组件进行了一系列实验,以了解和表征连接刚度,强度和变形能力,并验证计算模型和设计模型对连接能力的预测。开发了三维有限元(FE)连接模型,并通过与实验数据进行比较来评估这些模型。然后,使用有限元模型进行一系列广泛的参数研究,研究了几个关键变量对连接对火的加热和冷却阶段的响应的影响。本文介绍了这项研究的关键方面,包括实验,有限元模型的开发和参数研究。该论文重点介绍了研究结果,该研究结果提供了火灾中连接行为的重要见解以及这些结果对设计的影响。

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