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Buckling and Failure of Compression-loaded Composite Cylindrical Shells with Reinforced Cutouts

机译:带加强孔的受压复合圆柱壳的屈曲和破坏

摘要

Results from a numerical and experimental study that illustrate the effects of selected cutout reinforcement configurations on the buckling and failure response of compression-loaded composite cylindrical shells with a cutout are presented. The effects of reinforcement size, thickness, and orthotropy on the overall response of compression-loaded shells are described. In general, reinforcement around a cutout in a compression-loaded shell can retard or eliminate the local buckling response and material failure near the cutout and increase the buckling load of the shell. However, some results show that certain reinforcement configurations can cause a significant increase in the local interlaminar failures that can accumulate near the free edges of a cutout during a local buckling event.
机译:给出了数值和实验研究的结果,这些结果说明了选定的切口增强结构对带有切口的受压复合圆柱壳的屈曲和破坏响应的影响。描述了钢筋尺寸,厚度和正交性对受压壳的整体响应的影响。通常,在受压加载的壳体中的切口周围进行加固可延迟或消除切口附近的局部屈曲响应和材料破坏,并增加壳体的屈曲载荷。但是,一些结果表明,某些加固构造会导致局部层间破坏的显着增加,而局部层间破坏会在局部屈曲事件期间积聚在切口的自由边缘附近。

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