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A study on the residual ultimate strength of continuous stiffened panels with a crack under the combined lateral pressure and in-panel compression

机译:横向压力和面板内压缩下裂缝裂缝剩余极限强度的研究

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In this study, the effects of the crack on the residual ultimate strength of a continuous stiffened panel with a crack under the combined lateral pressure and in-panel compression are investigated numerically. Based on the fact that the extent of model should be sufficient to analyze the surrounding structure, a two-span (1/2 + 1+1/2) model is modeled. Periodic and symmetric boundary conditions are used to calculate the ultimate strength of stiffened panels with a crack, a Plug-in that can be executed in ABAQUS has been developed using Python language. The accuracy of the advanced model is verified, and the influences of various parameters on the ultimate strength reduction rate of a continuous stiffened panel with a crack are comprehensively investigated. The results of the investigation showed that crack location was very important in the evaluation of the residual ultimate strength of a stiffened panel with a crack, and in particular, the cracks under the stiffener have a great influence on the ultimate strength reduction rate of the stiffened panel. Finally, a prediction equation capable of predicting the ultimate strength reduction rate of continuous stiffened panels with a crack is proposed and verified for its accuracy.
机译:在这项研究中,在数值上研究了在组合横向压力和面板内压缩下具有裂缝的连续加强面板的裂缝对裂缝的剩余极限强度的影响。基于模型的程度应该足以分析周围结构,模拟了两跨度(1/2 + 1 + 1/2)模型。定期和对称边界条件用于计算具有裂缝的硬化面板的最终强度,使用Python语言开发了可以在ABAQU中执行的插件。验证了先进模型的准确性,并对各种参数对具有裂缝的连续加强面板的极限强度降低速度的影响得到了全面调查。调查结果表明,裂缝位置在评估裂缝的加强面板的剩余极限强度的评估中非常重要,特别是加强筋下的裂缝对加强的极限强度减小率有很大影响控制板。最后,提出了一种能够预测连续加强面板的最终强度减小速率的预测等式,并验证其精度。

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