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Global and local buckling analysis of grid-stiffened composite panels

机译:格栅加筋复合板的整体和局部屈曲分析

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摘要

There is a renewed interest in grid-stiffened composite structures; they are not only competitive with conventional stiffened constructions and sandwich shells in terms of weight but also enjoy superior damage tolerance properties. In this paper, both global and local buckling is investigated for orthogrid- and isogrid-stiffened composite panels. Homogenized properties corresponding to classical lamination theory are obtained by matching the strain energy of stiffened and equivalent unstiffened cells, and then used in global buckling analysis. Bloch wave theory is adopted to calculate the local buckling load, where the interaction of adjacent cells is fully taken into account. Instead of considering skin buckling and stiffener crippling separately, the skin and stiffeners are assembled together at the level of a characteristic cell. The critical instabilities can be captured whether they are related to the skin, stiffener or their interaction. The proposed combination of global/local models can also be used to predict the material failure. Numerical examples of isotropic panels show that the local buckling loads predicted by the proposed method match detailed finite element calculations well for eccentric or symmetrically located stiffeners with different torsional stiffness. The proposed method is further validated using typical composite configurations of flat panels and circular cylinders.
机译:人们对网格增强复合结构有了新的兴趣。它们不仅在重量上与传统的加硬结构和夹层壳竞争,而且还具有出色的抗损伤性能。在本文中,研究了正交网格和等格刚度复合板的整体屈曲和局部屈曲。通过匹配刚性和等效非刚性单元的应变能,获得与经典层压理论相对应的均质特性,然后将其用于整体屈曲分析。采用布洛赫波理论来计算局部屈曲载荷,充分考虑了相邻单元的相互作用。代替单独考虑蒙皮屈曲和加劲肋的cr缩,蒙皮和加劲肋在特征单元的水平上组装在一起。可以捕获关键的不稳定性,无论它们与蒙皮,加劲层还是它们的相互作用有关。提议的全局/局部模型组合也可以用于预测材料故障。各向同性面板的数值示例表明,对于具有不同扭转刚度的偏心或对称布置的加劲肋,通过该方法预测的局部屈曲载荷与详细的有限元计算非常匹配。使用平板和圆柱体的典型复合构造进一步验证了所提出的方法。

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