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Buckling and post-buckling behavior of thin-walled cylindrical steel shells with varying thickness subjected to uniform external pressure

机译:薄壁圆筒形薄壁薄壁钢壳在均匀外压作用下的屈曲和屈曲后行为

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In the present paper, numerical and experimental investigation have been undertaken into the buckling and post-buckling behavior of thin-walled cylindrical steel shells with varying thickness subjected to uniform external pressure. For the experimental study, four different cylindrical steel shell specimens with varying thickness were tested to collapse. For the post-buckling analysis of these structures, material and geometric nonlinear collapse analysis are carried out. To trace the equilibrium paths through limit points into the post-critical range, the 'Arc-Length-Type Method' has been used. In order to verify the accuracy and validity of the finite element modeling, the numerical results, obtained from nonlinear finite element collapse analyses, have been compared with the results of the experimental study. The study shows that the theoretical behavior predicted by the nonlinear finite element collapse analyses followed closely the experimental behavior. Consequently, it has been found that the finite element model is reliable enough to be used to undertake nonlinear analyses for investigation into the buckling and post-buckling behavior of thin-walled cylindrical steel shells with varying thickness. Also it has been found that the buckling mode can be generated in whole length of the shell if the thickness variation is low. However, in the case of high variation of thickness, the buckling mode is formed in thinner part only. Also, the considerable effects of circumferential and vertical weld line on the buckling strength and mode shapes are verified.
机译:在本文中,数值研究和实验研究了薄壁薄壁圆筒形钢壳在均匀的外压作用下的屈曲和后屈曲行为。为了进行实验研究,测试了四个不同厚度的不同圆柱形钢壳试样的塌陷。对于这些结构的后屈曲分析,进行了材料和几何非线性倒塌分析。为了将通过极限点的平衡路径追踪到临界后范围内,已使用了“弧长类型方法”。为了验证有限元建模的准确性和有效性,将非线性有限元倒塌分析获得的数值结果与实验研究的结果进行了比较。研究表明,非线性有限元倒塌分析所预测的理论行为与实验行为密切相关。因此,已经发现,有限元模型足够可靠,可以用来进行非线性分析,以研究厚度变化的薄壁圆柱形钢壳的屈曲和后屈曲行为。还已经发现,如果厚度变化低,则可以在壳体的整个长度上产生屈曲模式。但是,在厚度变化大的情况下,屈曲模式仅在较薄的部分形成。另外,还证实了圆周和垂直焊缝对屈曲强度和模态形状的显着影响。

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