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Postbuckling of functionally graded fiber reinforced composite laminated cylindrical shells, Part II: Numerical results

机译:功能梯度纤维增强复合材料叠层圆柱壳的后屈曲,第二部分:数值结果

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摘要

In this Part, the extensive parametric studies performed are reported and numerical results are presented for the buckling and postbuckling of fiber reinforced polymer matrix and metal matrix composite laminated shells subjected to axial compression or external pressure under different sets of environmental conditions. Two kinds of fiber reinforced composite laminated shells, namely, uniformly distributed (UD) and functionally graded (FG) reinforcements, are considered. The numerical results show that the buckling loads as well as postbuckling strength of the shell can be increased as a result of functionally graded fiber reinforcements. The results reveal that the effect of functionally graded fiber reinforcements on the buckling loads and postbuckling strength of shell with polymer matrix is more pronounced compared to the shell with metal matrix in the case of axial compression. In contrast, in the case of external pressure, the functionally graded fiber reinforcements may have a significant effect on the buckling pressure and postbuckling strength of the shell with metal matrix.
机译:在本部分中,将进行广泛的参数研究,并给出在不同环境条件下经受轴向压缩或外部压力的纤维增强聚合物基体和金属基复合叠层壳的屈曲和后屈曲的数值结果。考虑了两种纤维增强复合材料叠层壳,即均匀分布(UD)和功能梯度(FG)增强件。数值结果表明,通过功能梯度纤维增强,可以提高壳体的屈曲载荷和屈曲后强度。结果表明,在轴向压缩的情况下,功能梯度纤维增强材料对具有聚合物基体的壳体的屈曲载荷和后屈曲强度的影响比具有金属基体的壳体更明显。相反,在外部压力的情况下,功能梯度纤维增强材料可能会对具有金属基质的壳体的屈曲压力和屈曲后强度产生重大影响。

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