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A closed-form solution for elastic buckling of thin-walled unstiffened circular cylinders in pure flexure

机译:纯弯曲下薄壁未加筋圆柱体弹性屈曲的封闭形式解

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To date, despite the significant development in the field of structural mechanics, there still remains a paradox in the solutions available for a classical shell buckling problem. The difference in strength between a cylindrical shell under uniform axial compression and that under pure bending is not quite well investigated. This lack of research is reflected in the wide variations in the elastic bending strength and the slenderness limits given in current international design standards. The discrepancies in the available classical solutions and hence the design rules have initiated the current research. The main aim of this paper is to present a closed-form solution for the elastic buckling strength of unstiffened circular cylinders under pure bending using a new simplified energy approach employing the well-known Ritz method. Two types of analyses are presented for cylinders with large (D/t > 200) and medium (100 < D/t < 200) diameter-to-thickness ratios. A unique testing rig was used to experimentally verify the new theory using a Moire fringe film. The theoretical results are compared against the available and present test results and the existing classical solutions. The current design rules for thin-cylinders in international steel specifications are also compared, and the newly derived design curve is proposed which was found in a good agreement with the available test results.
机译:迄今为止,尽管结构力学领域取得了长足的发展,但在解决经典壳体屈曲问题的解决方案中仍然存在悖论。圆柱壳在均匀轴向压缩下和纯弯曲下的强度差异还没有得到很好的研究。缺乏研究反映在当前国际设计标准中给出的弹性弯曲强度和细长极限的广泛变化中。现有经典解决方案中的差异以及设计规则已引发了当前的研究。本文的主要目的是提出一种封闭形式的解决方案,该解决方案是采用一种新的简化的能量方法,采用众所周知的Ritz方法,在纯弯曲下未加筋的圆柱体的弹性屈曲强度。对于大(D / t> 200)和中等(100 <D / t <200)直径与厚度比的气瓶,提出了两种类型的分析。使用独特的测试设备,使用莫尔条纹影片对新理论进行实验验证。将理论结果与可用的和当前的测试结果以及现有的经典解决方案进行比较。还比较了国际钢规格中当前的薄缸设计规则,并提出了新推导的设计曲线,该曲线与现有测试结果非常吻合。

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