网格加固复合环形球壳的侧向屈曲

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL Iranian Journal of Science and Technology-Transactions of Mechanical Engineering Pub Date : 2024-07-27 DOI:10.1007/s40997-024-00779-6
M. Zarei, G. H. Rahimi
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引用次数: 0

摘要

本文采用分析和数值方法,研究了带有测地晶格核心的网格加劲复合环形球壳在外部压力作用下的屈曲行为。通过使用涂抹加劲技术,网格结构被转化为等效复合层。为了实现网格加劲壳的整体刚度,加劲件的刚度应与壳体的刚度叠加。控制方程是根据经典的 Donnell 薄壳理论制定的。采用 Galerkin 方法提取屈曲载荷。为了证实分析结果,还提供了一个有限元模型。比较结果表明,两种方法的一致性令人满意。此外,还研究了子午线角度、加强筋方向和表皮厚度的影响。所获得的结果是全新的,可用于今后的研究。
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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Lateral Buckling of Grid-Stiffened Composite Annular Spherical Shells

The present paper investigates the buckling behavior of grid-stiffened composite annular spherical shells with geodesic lattice cores subjected to external pressure, using analytical and numerical approaches. Using a smeared stiffener technique, the grid structure is transformed into an equivalent composite layer. To achieve the overall stiffness of the grid-stiffened shell, the stiffness of the stiffeners should be superimposed by the stiffness of the shells. The governing equations are formulated based on the classical Donnell’s thin shell theory. The Galerkin method has been applied to extract the buckling loads. To corroborate the analytical results, a finite element model is provided. The comparisons indicate satisfactory agreement between the two approaches. Moreover, the effect of meridian angle, stiffener orientation, and skin thickness are investigated. The results obtained are new and can be used for future studies.

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来源期刊
CiteScore
2.90
自引率
7.70%
发文量
76
审稿时长
>12 weeks
期刊介绍: Transactions of Mechanical Engineering is to foster the growth of scientific research in all branches of mechanical engineering and its related grounds and to provide a medium by means of which the fruits of these researches may be brought to the attentionof the world’s scientific communities. The journal has the focus on the frontier topics in the theoretical, mathematical, numerical, experimental and scientific developments in mechanical engineering as well as applications of established techniques to new domains in various mechanical engineering disciplines such as: Solid Mechanics, Kinematics, Dynamics Vibration and Control, Fluids Mechanics, Thermodynamics and Heat Transfer, Energy and Environment, Computational Mechanics, Bio Micro and Nano Mechanics and Design and Materials Engineering & Manufacturing. The editors will welcome papers from all professors and researchers from universities, research centers, organizations, companies and industries from all over the world in the hope that this will advance the scientific standards of the journal and provide a channel of communication between Iranian Scholars and their colleague in other parts of the world.
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