Buckling behavior of thin-walled cylindrical shells with large rectangular opening
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摘要: 利用數值方法研究了開有矩形大開孔的薄壁圓柱殼在軸壓作用下的屈曲性能.首先通過特征值屈曲分析,得到開孔圓柱殼的一階屈曲模態,并預測屈曲荷載的上限;其次,通過非線性分析,得到結構的荷載位移全過程響應;然后引入正交試驗設計方法,分析了矩形開口的周向角度、高度和軸向位置等幾何參數對結構穩定性的影響.分析表明,矩形開孔圓柱殼臨界屈曲荷載的上限值遠小于無開孔圓柱殼的下限值,影響矩形開孔圓柱殼軸壓作用下穩定性的主要因素為殼體的徑厚比,臨界荷載值隨徑厚比的增大迅速下降.Abstract: The buckling behavior of cylindrical shells with large rectangular opening was analyzed by the finite element method. Firstly, eigen value buckling was carried out to predict the buckling mode and critical load. Secondly, the load-displacement response of the structure was computed with geometrically nonlinear analysis, and the orthogonal design method was adopted to discuss the influence of geometric parameters on the buckling load. The considered parameters include opening width, opening height, location in the longitudinal direction, and radius-to-thickness ratio and height-to-diameter ratio of the shell. The result shows that the upper limit buckling load of a cylindrical shell with rectangular opening is much less than the lower limit value of a perfect cylindrical shell, and the buckling load of a cylindrical shell with rectangular opening is mainly dependent on the radius-to-thickness ratio of the shell. The critical load declines rapidly when the radius-to-thickness ratio of the shell increases.
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