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PARAMETRIC STUDIES ON THE COMPONENTBASED APPROACH TO MODELLING BEAM BOTTOM FLANGE BUCKLING AT ELEVATED TEMPERATURES

机译:高温下梁底部凸缘屈曲建模的基于组件方法的参数研究

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摘要

In this study, an analytical model of the combination of beam-web shear buckling and bottom-flange buckling at elevated temperatures has been introduced. This analytical model is able to track the force-deflection path during post-buckling. A range of 3D finite element models has been created using the ABAQUS software. Comparisons have been carried out between the proposed analytical model, finite element modelling and an existing theoretical model by Dharma (2007). Comparisons indicate that the proposed method is able to provide accurate predictions for Class 1 and Class 2 beams, and performs better than the existing Dharma model, especially for beams with high flange-to-web thickness ratios. A component-based model has been created on the basis of the analytical model, and will in due course be implemented in the software Vulcan for global structural fire analysis.
机译:在这项研究中,引入了梁腹板剪切屈曲和底部法兰屈曲在高温下相结合的分析模型。这种分析模型能够跟踪屈曲后的力偏转路径。使用ABAQUS软件已经创建了一系列3D有限元模型。 Dharma(2007)对建议的分析模型,有限元模型和现有的理论模型进行了比较。比较表明,所提出的方法能够为1类和2类梁提供准确的预测,并且比现有的Dharma模型具有更好的性能,尤其是对于具有高法兰与腹板厚度比的梁。已在分析模型的基础上创建了基于组件的模型,并将在适当时候在软件Vulcan中实现全局结构火灾分析。

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