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Buckling of cylindrical shells with longitudinal joints under external pressure

机译:外力作用下带有纵向接头的圆柱壳的屈曲

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摘要

In this article, the bucking of cylindrical shells with longitudinal joint has been investigated through the experimental and numerical analysis. It was clarified that the buckling behavior of cylindrical shells with longitudinal joints under lateral external pressure is not only related to its dimension, but also longitudinal joint and an imperfection. The buckling of cylindrical shells with rigid joint buckles only once and in multi-lobe buckling, whereas one with flexible joints buckles twice and firstly in single-lobe buckling in the vicinity of the joint, secondly in multi-lobe buckling in remaining un-deformed area. And the more flexible the longitudinal joint, the lower the critical pressure, with respect to the same dimension of jointed cylindrical shells and imperfection condition. Moreover the numerical analysis approaches were also presented and verified, by which the imperfection can greatly enlarge the effect of joint on buckling has been demonstrated.
机译:通过实验和数值分析,研究了带有纵缝的圆柱壳的屈曲。澄清的是,在横向外部压力下具有纵向接头的圆柱壳的屈曲行为不仅与其尺寸有关,而且与纵向接头和缺陷有关。带有刚性接头屈曲的圆柱壳屈曲仅一次且以多瓣屈曲,而具有柔性接头的圆柱形壳屈曲两次且首先屈曲于接头附近的单瓣屈曲,其次为多瓣屈曲以保持未变形区域。而且,相对于相同尺寸的圆柱壳和不完善条件,纵向接头越灵活,临界压力就越低。此外,还提出并验证了数值分析方法,通过这种方法,可以证明缺陷可以大大扩大接头对屈曲的影响。

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