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4类梁在高温下的侧向扭转屈曲试验研究

Experimental Study of Lateral-Torsional Buckling of Class 4 Beams at Elevated Temperature.

作者信息

Woźniczka Piotr

机构信息

Faculty of Civil Engineering, Cracow University of Technology, 31-155 Cracow, Poland.

出版信息

Materials (Basel). 2021 Aug 25;14(17):4825. doi: 10.3390/ma14174825.

Abstract

The results of experimental research on lateral-torsional buckling of steel plate girders with slender web subjected to fire conditions are presented in this paper. The scope of the research covers four girders, three of which have been tested under high temperature conditions. The fourth girder has been used to determine the critical load resulting in lateral-torsional buckling of the considered element at room temperature. All the considered elements had identical cross sections and lengths; however, they differed in external temperatures applied and magnitude of measured geometrical imperfections. It has to be highlighted, that the experiments have been conducted subject to the anisothermal conditions, taking into account the uneven distribution of temperature in the cross section. An approach of this type represents a more accurate modelling of the structural component behaviour, when subjected to fire, as compared to the experiments conducted under isothermal conditions. Complete information on the development of research stand, conduct and results of particular tests are presented in this paper. The temperature-time curves for girder components, results of imperfection measurements and mechanical properties of steel are presented. The obtained critical temperatures and graphs of girder top flange horizontal deflection versus temperature are also included. The computer models developed for analysed girders are described in the paper as well. The results obtained with these models have been compared with experimental results. The computational models validated in this way constitute a basis for further parametric studies of lateral-torsional buckling in the domain of steel plate girders with slender web when subjected to fire conditions.

摘要

本文介绍了对火灾条件下具有细长腹板的钢板梁侧向扭转屈曲的试验研究结果。研究范围包括四根梁,其中三根在高温条件下进行了测试。第四根梁用于确定在室温下导致所考虑构件侧向扭转屈曲的临界荷载。所有考虑的构件具有相同的横截面和长度;然而,它们在施加的外部温度和测量的几何缺陷大小方面有所不同。必须强调的是,试验是在非等温条件下进行的,考虑了横截面中温度的不均匀分布。与在等温条件下进行的试验相比,这种方法在结构构件受火时能更准确地模拟其行为。本文给出了研究台架的发展、具体试验的进行过程和结果的完整信息。给出了梁构件的温度 - 时间曲线、缺陷测量结果和钢材的力学性能。还包括获得的临界温度以及梁顶翼缘水平挠度与温度的关系图。本文还描述了为分析梁开发的计算机模型。用这些模型获得的结果已与试验结果进行了比较。以这种方式验证的计算模型构成了进一步对火灾条件下具有细长腹板的钢板梁领域侧向扭转屈曲进行参数研究的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/545b/8432674/6c529f9591b1/materials-14-04825-g0A1.jpg

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