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The effect of extension/twist anisotropy on compression buckling in cylindrical shells

机译:拉伸/扭转各向异性对圆柱壳压缩屈曲的影响

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摘要

The study of axial compression buckling of isotropic cylinders has received much attention by various researchers over the years. It is commonly acknowledged that the presence of minute imperfections significantly reduces potential buckling loads in comparison with classical linear predictions. This approach, of including geometric imperfections, has been extended by a significant, yet fewer, number of researchers to composite cylindrical shells. As the current study shows, imperfections may not be the only major factor for the discrepancy between experimental and linear buckling loads. Flexural/twist anisotropy, present in most balanced, symmetric laminates with angle-ply layers, is shown to play a significant role in reducing buckling loads from those predicted by classical analysis. Indeed, the assumption of deflections in the form of a double sine series appears to be questionable for such laminates. A recently reported classically linear analysis that included the effects of flexural/twist coupling on buckling loads has been further developed to include the effects of extension/twist coupling. It is shown that buckling loads can be improved by making the laminate antisymmetric rather than symmetric, for the class of quasi-isotropic laminates, whilst retaining a spiral mode shape.
机译:这些年来,各向同性圆柱体的轴向压缩屈曲的研究受到了许多研究者的关注。通常公认的是,与经典的线性预测相比,微小缺陷的存在显着降低了潜在的屈曲载荷。这种方法,包括几何缺陷,已经被大量但很少的研究人员扩展到复合圆柱壳。正如当前的研究表明,缺陷可能不是导致实验屈曲载荷与线性屈曲载荷之间差异的唯一主要因素。弯曲/扭曲各向异性存在于大多数具有角层的对称对称层压板中,与传统分析预测的屈曲载荷相比,在减少屈曲载荷方面起着重要作用。确实,对于这种叠层,以双正弦系列形式的挠曲的假设似乎是有问题的。最近已报道了包括挠曲/扭转耦合对屈曲载荷的影响在内的经典线性分析方法,其中包括了伸展/扭转耦合的影响。结果表明,对于准各向同性层压板,通过使层压板成为非对称而不是对称,可以改善屈曲载荷,同时保持螺旋模式形状。

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