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An investigation into the plastic buckling paradox for circular cylindrical shells under non-proportional loading

机译:非比例载荷作用下圆柱壳塑性屈曲悖论的研究

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Many authors in the literature agreed that the flow theory of plasticity either fails to predict buckling or overestimates plastic buckling stresses and strains of plates and shells while the deformation theory succeeds in forecasting buckling and provides estimates that are more in line with the experimental results. Following a previous study by the same authors focused on compressed cylinders, the present work aims to investigate the reasons for the discrepancy between the flow and deformation theory predictions in the case of cylinders subjected to combined axial tensile load and increasing external lateral pressure. To this end, geometrically nonlinear finite-element calculations of selected cylindrical shells using both the flow theory and the deformation theory of plasticity have been conducted, and the results are compared with some accurate physical test results and with numerical results obtained by other authors using the code BOSOR5. It is found, contrary to common belief, that very good agreement between numerical and test results can be obtained in the case of the flow theory of plasticity. The reasons underlying the apparent plastic buckling paradox are discussed in detail. (C) 2015 Elsevier Ltd. All rights reserved.
机译:文献中的许多作者都同意,塑性流动理论要么无法预测屈曲,要么高估了板壳的塑性屈曲应力和应变,而变形理论成功地预测了屈曲并提供了与实验结果更加吻合的估计。在同一作者之前针对压缩气缸的研究之后,本工作旨在研究在气缸承受组合轴向拉伸载荷和外部横向压力增加的情况下,流量与变形理论预测之间存在差异的原因。为此,已经使用流动理论和塑性变形理论对所选圆柱壳进行了几何非线性有限元计算,并将结果与​​一些精确的物理测试结果以及使用该方法的其他作者获得的数值结果进行了比较。代码BOSOR5。与通常的看法相反,发现在塑性流动理论的情况下,可以在数值结果和测试结果之间取得很好的一致性。详细讨论了明显的塑性屈曲悖论的原因。 (C)2015 Elsevier Ltd.保留所有权利。

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