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Accelerated Koiter method for post-buckling analysis of thin-walled shells under axial compression

机译:轴压下薄壁壳后屈曲分析的加速Koiter方法

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Due to the high specific strength and stiffness, thin-walled shells are widely used in aerospace engineering structures. However, along with the increase of the structure size or the structure hierarchy, the computational cost of the post-buckling analysis of thin-walled shells would increase sharply and then the imperfection sensitivity analysis would become time-consuming. In this study, an accelerated Koiter method is proposed to improve the efficiency of post-buckling analysis and imperfection sensitivity analysis of thin-walled shells under axial compression. In the framework of the accelerated Koiter method, a single mode Koiter method considering pre-buckling nonlinear behavior is used to reduce the computational time of repeated imperfection analysis, which can accurately predict the effect of the small amplitude imperfection. Furthermore, in order to obtain the expanded point of Koiter method, a Combined Approximation (CA)-based iterative eigenvalue algorithm is constructed to obtain the pre-buckling state in the neighborhood of the bifurcation point and reduce computational cost by the reasonable step length prediction. Finally, the efficiency and accuracy of the proposed method are demonstrated by means of four illustrative examples, including the composite cylindrical shell, the isotropic cylindrical shell, the isotropic conical shell and the hierarchical stiffened cylindrical shell under axial compression.
机译:由于具有高比强度和刚度,薄壁壳体广泛用于航空航天工程结构。然而,随着结构尺寸或结构层次的增加,薄壁壳的后屈曲分析的计算成本将急剧增加,然后缺陷敏感性分析将变得耗时。在该研究中,提出了一种加速的Koiter方法来提高轴向压缩下薄壁壳的后屈曲分析和缺陷敏感性分析的效率。在加速KOITER方法的框架中,考虑预屈曲非线性行为的单模koiter方法用于减少重复缺陷分析的计算时间,这可以准确地预测小幅度缺陷的效果。此外,为了获得Koiter方法的扩展点,构造了组合近似(CA)的迭代特征值算法以在分叉点的邻域中获得预屈曲状态,并通过合理的步长预测降低计算成本。最后,通过四个说明性实施例证明了所提出的方法的效率和准确性,包括复合圆柱形壳,各向同性圆柱形壳,各向同性圆锥形壳体,各向同性圆锥形壳和轴向压缩下的等级加强的圆柱形壳。

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