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An experimental and numerical investigation of a grid composite cylindrical shell subjected to transverse loading

机译:网格复合圆柱壳横向受力的实验与数值研究

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摘要

This paper presents an experimental and numerical study of a stiffened composite cylindrical shell with clamped-free boundary condition under transverse end loading. Electrical strain gauges were employed to measure the strains. Likewise a finite element analysis has been used to validate the experimental results. The finite element method (FEM) software used was ANSYS11. Fairly good agreements were observed between the numerical and the measured results. In addition, a comparison between the stiffened and unstiffened composite shell was carried out. It was found that the intersection of two stiffeners has an important effect in reducing Von Mises stress in the shell. Failure analysis based on TsaiWu failure theory was also performed. It was concluded that stiffening of the shell by helical stiffeners increases the load capacity considerably.
机译:本文提出了一种在横向端载荷下具有自由边界条件的加劲复合圆柱壳的实验和数值研究。使用电应变仪来测量应变。同样,有限元分析已用于验证实验结果。使用的有限元方法(FEM)软件为ANSYS11。在数值和测量结果之间观察到相当好的一致性。另外,比较了加强壳和未加强壳。已经发现,两个加强筋的交叉点在减小壳体中的冯·米塞斯应力方面具有重要作用。还进行了基于蔡武故障理论的故障分析。得出的结论是,通过螺旋形加强筋加强壳体的承载能力大大提高了。

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