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Elastic flexural-torsional buckling of thin-walled cantilevers

机译:薄壁悬臂的弹性弯曲扭转屈曲

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摘要

Previous studies by the authors revealed that the two representative theories with slight differences between, widely used in investigating the flexural-torsional buckling of thin-walled beams, have led to two different solutions in well-known literature for assessing critical loads of simply supported beams of monosymmetric cross section. With these two solutions, significant differences in critical loads may be found for these monosymmetric beams. Based on the classical variational principle for buckling analyses, a new theory on the flexural-torsional buckling of thin-walled members was proposed by the authors. In this paper, this new theory as well as the other two typical theories is employed to investigate the flexural-torsional buckling of cantilevers. This paper first gives a brief review and a careful comparative study on the flexural-torsional buckling of thin-walled cantilevers employing three different buckling theories. Differences between these theories are demonstrated with investigations on buckling of cantilevers under pure bending and two typical transverse loads. Explicit solutions, capable of considering variations of beam length and loading position along the vertical axis of cross section, are presented for predicting the critical loads of doubly symmetric cantilevers under two typical transverse loads. Advantages of presented solutions, such as good accuracy and ease of use, are exploited through the comparisons of critical results with those from existing solutions and finite element analyses.
机译:作者先前的研究表明,这两种代表性的理论之间的细微差异,广泛用于研究薄壁梁的挠曲-挠曲屈曲,已导致在著名文献中提出了两种不同的解决方案,用于评估简支梁的临界载荷对称的横截面。通过这两种解决方案,可以发现这些单对称梁的临界载荷存在显着差异。基于经典屈曲分析的变分原理,作者提出了薄壁构件挠曲-挠曲屈曲的新理论。在本文中,该新理论以及其他两个典型理论被用来研究悬臂的挠曲-屈曲屈曲。本文首先使用三种不同的屈曲理论对薄壁悬臂梁的挠曲-屈曲屈曲进行了简要的回顾和仔细的比较研究。通过对悬臂在纯弯曲和两种典型横向载荷作用下的屈曲研究,可以证明这些理论之间的差异。提出了能够考虑梁长度和载荷沿横截面垂直轴的变化的显式解决方案,用于预测在两个典型的横向载荷下双对称悬臂的临界载荷。通过将关键结果与现有解决方案的结果进行比较,并利用有限元分析,可以充分利用所提出解决方案的优势,例如准确性高,易于使用。

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