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Analysis of steel bolted double angle connections at elevated temperatures

机译:高温下钢制双角螺栓连接的分析

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Double angle connections are one of the common simple beam-end framing connections used in steel structures, but current building standards do not provide much guidance on how to design these connections for fire. Development of such design methodologies is particularly hindered by the lack of adequate understanding of the strength and deformation capacities of double angle connections in fire. To address this issue, this paper presents key results of a computational study of the influence of fire temperatures on steel double angle connections. Computational models for double angle connections are developed in Abaqus and evaluated against experimental data from the literature at both ambient and elevated temperatures. An extensive study is then conducted to investigate different parameters that impact the behavior of double angle connection assemblies during a fire. A comparison is also made between the performances of double angle and shear tab connections at elevated temperatures. Results obtained in this study show that the main factors impacting the behavior of double angle connections at elevated temperatures are load ratio, initial cooling temperature, location of the double angle with respect to the beam neutral axis, and the gap distance. In addition, double angle connections showed better performance at elevated temperatures when compared to shear tab connections. (C) 2016 Elsevier Ltd. All rights reserved.
机译:双角连接是钢结构中常用的简单梁端框架连接之一,但当前的建筑标准并未为如何设计这些连接提供防火指导。由于缺乏对双角度连接在火灾中的强度和变形能力的充分了解,特别阻碍了这种设计方法的发展。为了解决这个问题,本文介绍了火灾温度对钢双角连接的影响的计算研究的关键结果。在Abaqus中开发了双角连接的计算模型,并根据文献在环境温度和高温下的实验数据进行了评估。然后进行了广泛的研究,以研究在火灾期间影响双角连接组件性能的不同参数。在高温下,双角和剪切片连接的性能也作了比较。这项研究获得的结果表明,在高温下影响双角连接行为的主要因素是负载比,初始冷却温度,双角相对于梁中性轴的位置以及间隙距离。此外,与剪切片连接相比,双角连接在高温下表现出更好的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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