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Longitudinal Imperfections on Thin Walled Cylindrical Shells

机译:薄壁圆柱壳上的纵向缺陷

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Buckling and post-buckling are among the most important failure factors in thin walled structures. The loadcarrying behavior of cylindrical thin-walled shell structures under external pressure load is strongly dependent upon the nature and magnitude of the initial imperfections. These imperfections are invariably caused by an assortment of manufacturing processes like installing or welding. One of the most important imperfections caused by welding that has been reported to have an essential detrimental effect on the buckling resistance of these shells under external pressure load is longitudinal imperfections. Buckling and post buckling capacity of the shells depend on the H/R and t/ R ratios (H the height, R the radius and t the thickness of a cylindrical shell). The present work discusses the finiteelement models labeled as SS (Shallow Slim), DS (Deep Slim), ST (Shallow Thick) and DT (Deep Thick). The samples of first group are modi?ed to include a line longitudinal imperfection, amplitudes of 0.5t, 1t, 2t, 3t, 4t and 8t in depth (t is the thickness of cylindrical shell). The results presented are in agreement with international codes and theories concerning buckling.
机译:屈曲和后屈曲是薄壁结构中最重要的破坏因素。圆柱形薄壁壳结构在外部压力载荷下的承载行为在很大程度上取决于初始缺陷的性质和大小。这些缺陷总是由各种制造过程(例如安装或焊接)引起的。纵向焊接缺陷是由焊接引起的最重要的缺陷之一,据报道对这些外壳在外部压力载荷下的抗屈曲性具有至关重要的不利影响。壳体的屈曲和后屈曲能力取决于H / R和t / R的比率(H的高度,R的半径和t的圆柱形壳体的厚度)。本工作讨论了标记为SS(浅薄),DS(深薄),ST(浅厚)和DT(深厚)的有限元模型。第一组样品经过修改,以包括线纵向缺陷,幅度为0.5t,1t,2t,3t,4t和8t(t是圆柱壳的厚度)。给出的结果与有关屈曲的国际规范和理论一致。

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