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On the buckling resistance of grid-stiffened composite conical shells under compression

机译:压缩下电网加强复合圆锥壳的屈曲电阻

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In this paper, an analytical approach has been employed to investigate the global buckling behavior of gridstiffened composite conical shells with cross stiffeners, on the basis of the first-order shear deformation theory (FSDT). First, the equivalent stiffness parameters of the stiffening structure have been derived through smearing the forces and moments on a typical unit cell taking the shear effects into consideration. Then, superimposing this stiffness contribution with those of the skin, the equivalent stiffness associated with the whole structure is determined. The power series method has been used to solve the equations governing the global buckling of the grid-stiffened composite conical shells. The obtained analytical results have been verified using a 3D finite element model built in ABAQUS software. Furthermore, the influences of some important design parameters such as the stiffener orientation, skin lamination and semi-vertex angles have been investigated on the buckling characteristics of the examined structure. The presented results are novel and can be used for further relevant investigations.
机译:在本文中,基于一阶剪切变形理论(FSDT),已经采用了一种分析方法来研究与交叉加强筋的全球屈曲行为用交叉加强件。首先,通过涂抹于典型单元电池上的力和时刻来赋予剪切效应来衍生加强结构的等效刚度参数。然后,确定与皮肤的那些刚度贡献,确定与整个结构相关的等效刚度。功率串联方法已用于解决电网加强复合锥形壳的全球屈曲的方程。使用ABAQUS软件中构建的3D有限元模型验证了所获得的分析结果。此外,已经研究了一些重要的设计参数,例如加强筋取向,皮肤层压和半顶角角度的影响,对所检查结构的屈曲特性进行了研究。呈现的结果是新颖的,可用于进一步的相关调查。

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