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Buckling of cracked cylindrical thin shells under combined internal pressure and axial compression

机译:组合内压和轴向压缩作用下破裂的圆柱薄壳的屈曲

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Linear eigenvalue analysis of cracked cylindrical shells under combined internal pressure and axial compression is carried out to study the effect of crack type, size and orientation on the buckling behavior of cylindrical thin shells. Two types of crack are considered; through crack and thumbnail crack. Our calculations indicate that depending on the crack type, length, orientation and the internal pressure, local buckling may precede the global buckling of the cylindrical shell. The internal pressure, in general, increases the buckling load associated with the global buckling mode of the cylindrical shells. In contrast, the effect of internal pressure on buckling loads associated with the local buckling modes of the cylindrical shell depends mainly on the crack orientation. For cylindrical shells with relatively long axial crack, buckling loads associated with local buckling modes of the cylindrical shell reduce drastically on increasing the shell internal pressure. In contrast, the internal pressure has the stabilizing effect against the local buckling for circumferentially cracked cylindrical shells. A critical crack length for each crack orientation and loading condition is defined as the shortest crack causing the local buckling to precede the global buckling of the cylindrical shell. Some insight into the effect of internal pressure on this critical crack length is provided.
机译:结合内部压力和轴向压缩,对裂纹圆柱壳进行了线性特征值分析,研究了裂纹类型,大小和取向对圆柱薄壳屈曲行为的影响。考虑了两种类型的裂纹:通过破解和缩略图破解。我们的计算表明,根据裂纹类型,长度,方向和内部压力,局部屈曲可能先于圆柱壳的整体屈曲。通常,内部压力会增加与圆柱壳的整体屈曲模式相关的屈曲载荷。相反,内部压力对与圆柱壳局部屈曲模式相关的屈曲载荷的影响主要取决于裂纹的取向。对于具有相对较长轴向裂纹的圆柱壳,与圆柱壳局部屈曲模式相关的屈曲载荷会随着壳内部压力的增加而大大降低。相反,对于周向破裂的圆柱壳,内部压力具有抵抗局部屈曲的稳定作用。每个裂纹取向和载荷条件的临界裂纹长度定义为最短的裂纹,该裂纹导致局部屈曲先于圆柱壳的整体屈曲。提供了一些有关内部压力对该临界裂纹长度的影响的见解。

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