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首页> 外文期刊>Steel & Composite Structures: An International Journal >Temperature distribution in a full-scale steel framed building subject to a natural fire
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Temperature distribution in a full-scale steel framed building subject to a natural fire

机译:遭受自然火灾的全尺寸钢框架建筑的温度分布

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摘要

In this paper, a cyclic mechanical model is presented to simulate the behaviour of top and seat with web angle beam-to-column connections. The introduced mechanical model is compared with Eurocode 3 Annex J, its extension, and with experimental data. To have a better insight regarding the actual response of the joints, available results of the experiments, carried out on full-scale top and seat angle joints under monotonic and cyclic loading, are first considered. Subsequently, a finite element model of the test setup is developed. The application of the proposed model, its comparisons with the experimental curves and with the Eurocode 3 Annex J and with its modification, clearly show the excellent quality of the model proposed.semirigid jointssteel structuresbolted connectionsmechanical modelEurocode 3Annex Jfinite element modelpartial strength. permanent actions and variable permanent actions and 56 percent of live actions. This paper summarises the experimental programme and presents the time-temperature development in the fire compartment and in the main supporting structural elements. Comparisons are also made between the test results and the temperatures predicted by the structural fire Eurocodes.
机译:在本文中,提出了一种循环力学模型,以模拟腹板角度梁到柱连接的顶部和座椅的行为。将引入的机械模型与Eurocode 3 Annex J,其扩展名以及实验数据进行了比较。为了更好地了解关节的实际响应,首先考虑了在单调和循环载荷下对满量程顶角和阀座角关节进行的实验的可用结果。随后,开发了测试设置的有限元模型。所提出的模型的应用,与实验曲线的比较以及与Eurocode 3 Annex J的比较和修改,清楚地表明了所提出模型的优良品质。永久性行动和可变性永久性行动,以及实际行动的56%。本文总结了实验程序,并提出了防火室内和主要支撑结构元件的时温发展。还对测试结果与结构防火欧洲规范预测的温度进行了比较。

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