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Semi-analytical buckling strength analysis of plates with arbitrary stiffener arrangements

机译:任意加劲肋布置板的半解析屈曲强度分析

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摘要

Buckling of plates with arbitrarily oriented, sniped stiffeners are studied. The main objective is to present and validate an approximate, semi-analytical computational model for such plates subjected to in-plane loading. Estimation of the buckling strength is made using the von Mises' yield criterion for the membrane stress as the strength limit. The formulations derived are implemented in a Fortran computer code, and numerical results are obtained for a variety of plate and stiffener geometries. The model may handle complex plate geometries, by using inclined stiffeners to enclose irregular plate shapes. The method allows for a very efficient analysis. Relatively high numerical accuracy is achieved with low computational efforts. The results are, in most cases, found to be conservative compared to fully nonlinear finite element analysis results.
机译:研究了带有任意方向的剪裁加劲肋的板的屈曲。主要目的是提出并验证这种板在平面内载荷下的近似半分析计算模型。屈曲强度的估计是使用von Mises的膜应力屈服准则作为强度极限来进行的。得出的公式在Fortran计算机代码中实现,并且获得了各种板和加劲肋几何形状的数值结果。通过使用倾斜的加劲肋来封闭不规则的板形状,该模型可以处理复杂的板几何形状。该方法可以进行非常有效的分析。用较少的计算量就可以达到较高的数值精度。在大多数情况下,与完全非线性有限元分析结果相比,该结果是保守的。

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