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The new simple design equations for the ultimate compressive strength of imperfect stiffened plates

机译:新的简单设计方程式可用于非理想加劲板的极限抗压强度

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The new simple design equations for predicting the ultimate compressive strength of stiffened plates with initial imperfections in the form of welding-induced residual stresses and geometric deflections were developed in this study. A non-linear finite element method was used to investigate on 60 ANSYS elastic-plastic buckling analyses of a wide range of typical ship panel geometries. Reduction factors of the ultimate strength are produced from the results of 60 ANSYS inelastic finite element analyses. The proposed design equations have been developed based on these reduction factors. For the real ship structural stiffened plates, the most general loading case is a combination of longitudinal stress, transverse stress, shear stress and lateral pressure. The new simplified analytical method was generalized to deal with such combined load cases. The accuracy of the proposed equations was validated by the experimental results. Comparisons show that the adopted method has sufficient accuracy for practical applications in ship design.
机译:在这项研究中,开发了一种新的简单设计方程式,用于预测具有初始缺陷(以焊接引起的残余应力和几何变形的形式)的加劲板的极限抗压强度。使用非线性有限元方法研究了60种ANSYS弹塑性屈曲分析,分析了各种典型船板几何形状。极限强度的折减系数由60次ANSYS非弹性有限元分析的结果得出。基于这些折减因子,已开发出建议的设计方程。对于实际的船用结构加筋板,最一般的加载情况是纵向应力,横向应力,剪切应力和侧向压力的组合。对这种简化的分析方法进行了通用化处理,以应对这种组合荷载工况。实验结果验证了所提方程的准确性。比较表明,所采用的方法在船舶设计实际应用中具有足够的精度。

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