Elastic lateral-torsional buckling of single-span doubly symmetric I-section beams with intermediate discrete lateral support considering prebuckling deflections

IF 5.7 1区 工程技术 Q1 ENGINEERING, CIVIL
Ghaith A. Abu Reden, Sandor Adany
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Abstract

In this paper the elastic lateral-torsional buckling of simple beams is investigated. The beams are single-span, the cross-sections are doubly symmetric, the beam is subjected to uniform moment. Moreover, the middle cross-section is laterally supported by a rigid support, the position of which varies within the cross-section. In the investigations, the effect of prebuckling deflections is considered. First, the critical moments are obtained by an iterative linear buckling analysis, completed by the finite element method, using both beam and shell finite elements. Analytical solutions are provided, too, and the results from finite element computations and from analytical formulae are compared. The numerical and analytical results show good coincidence. The results prove that the critical moment can efficiently be calculated by classic numerical methods, even if the effect of prebuckling deflection is considered. The existing literature suggests that the critical moment increase due to prebuckling deflections is influenced primarily by the ratio of minor-to-major moment of inertia, however, the presented results show that when the beam is laterally supported in the middle, the type and position of the lateral support as well as the beam length has important effect, too. Depending on these parameters, the critical moment values show a significant scatter, and the values with and without considering the prebuckling effect can be strongly different. Moreover, the suggestion from previous literature that the prebuckling effect is positive, cannot be justified in general. The experienced tendencies can be explained by the buckling shapes, as proved in the paper.
本文研究了简支梁的弹性侧扭屈曲。梁为单跨梁,横截面为双对称,梁受到均匀力矩作用。此外,中间横截面由刚性支撑横向支撑,刚性支撑在横截面内的位置变化。研究中考虑了预扣挠度的影响。首先,通过迭代线性屈曲分析获得临界力矩,然后使用梁和壳有限元法完成分析。同时还提供了分析解,并对有限元计算和分析公式得出的结果进行了比较。数值结果和分析结果表明两者非常吻合。结果证明,即使考虑到预屈曲挠度的影响,临界力矩也能通过经典数值方法有效计算出来。现有文献表明,预屈曲挠度导致的临界力矩增大主要受小惯性矩与大惯性矩之比影响,但本文结果表明,当梁在中间有横向支撑时,横向支撑的类型和位置以及梁的长度也有重要影响。根据这些参数,临界力矩值显示出明显的分散性,考虑和不考虑预屈曲效应的临界力矩值会有很大差异。此外,以前的文献认为预屈曲效应是积极的,这在一般情况下是站不住脚的。正如本文所证明的,所经历的趋势可以用屈曲形状来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Thin-Walled Structures
Thin-Walled Structures 工程技术-工程:土木
CiteScore
9.60
自引率
20.30%
发文量
801
审稿时长
66 days
期刊介绍: Thin-walled structures comprises an important and growing proportion of engineering construction with areas of application becoming increasingly diverse, ranging from aircraft, bridges, ships and oil rigs to storage vessels, industrial buildings and warehouses. Many factors, including cost and weight economy, new materials and processes and the growth of powerful methods of analysis have contributed to this growth, and led to the need for a journal which concentrates specifically on structures in which problems arise due to the thinness of the walls. This field includes cold– formed sections, plate and shell structures, reinforced plastics structures and aluminium structures, and is of importance in many branches of engineering. The primary criterion for consideration of papers in Thin–Walled Structures is that they must be concerned with thin–walled structures or the basic problems inherent in thin–walled structures. Provided this criterion is satisfied no restriction is placed on the type of construction, material or field of application. Papers on theory, experiment, design, etc., are published and it is expected that many papers will contain aspects of all three.
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