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Inelastic behaviour of I-shaped aluminium beams: numerical analysis and cross-sectional classification

机译:工字形铝梁的非弹性行为:数值分析和截面分类

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摘要

In this paper, the results of an extensive numerical analysis program devoted to the evaluation of the inelastic response of I-shaped aluminium alloy beams in non-uniform bending are presented. By using a numerical model implemented in the implicit FE code ABAQUS/Standard and largely calibrated with experimental tests, the main geometrical and mechanical parameters influencing the plastic behaviour of such beams are investigated. The results obtained in this study confirm the important role of the material hardening which, in addition to the local slenderness of compressed elements, has a strong influence on both ultimate moment and rotational capacity of the member. Moreover, it is shown that the influence of the other parameters, namely flange-to-web slenderness ratio, moment gradient, web slenderness and sectional area ratio, on the plastic capacity of the considered beams in terms of strength and deformability is of a secondary importance even if it is not negligible. On the whole, the results, which are obtained for two different tempers, emphasize the need to improve the present guidelines provided by the European code for aluminium structures relating to cross-sectional classification. More accurate class limits for outstand elements, which are able to account for the most important influential parameters on the plastic behaviour, are therefore proposed.
机译:本文提出了一个广泛的数值分析程序的结果,该程序专门用于评估I型铝合金梁在非均匀弯曲中的非弹性响应。通过使用隐式FE代码ABAQUS / Standard中实现的数值模型,并通过实验测试对其进行大量校准,研究了影响此类梁塑性行为的主要几何和机械参数。在这项研究中获得的结果证实了材料硬化的重要作用,除了压缩元件的局部细长之外,材料硬化对构件的极限弯矩和旋转能力都有很大影响。此外,表明在强度和可变形性方面,其他参数,即法兰与腹板的细长比,弯矩梯度,腹板的细长性和截面面积比,对所考虑梁的塑性承载力的影响是次要的。重要性,即使它不可忽略。总体而言,针对两种不同回火所获得的结果强调需要改进欧洲规范中有关横截面分类的铝结构欧洲规范。因此,提出了针对外露元素的更准确的分类限制,该限制可以解释塑料行为上最重要的影响参数。

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