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Parametric study on buckling stability of CFRP-strengthened cylindrical shells subjected to uniform external pressure

机译:CFRP加强圆柱形壳体对外压力屈曲稳定性的参数研究

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Stability performance of cylindrical shells and providing a potential method to enhance the buckling stability of these structures are major concerns for designers. Carbon Fiber Reinforced Polymer (CFRP) composites are promising materials for application in the design and retrofit of such thin-walled structures. On this basis, this paper presents a comprehensive numerical study on the buckling behavior of CFRP-strengthened cylindrical shells under uniform external pressure and evaluates the effects of different parameters in the strengthening process. Numerous CFRP-strengthened cylindrical shells with distinct reinforcement layouts in three groups of models having different slenderness ratios are investigated through nonlinear stability analyses using the ABAQUS finite element package. The application of all considered reinforcement layouts for strengthening purposes is found to be effective in improving the buckling stability of cylindrical shells. It is demonstrated that the circumferential reinforcement of the middle region of the shell using CFRP strips with [0?] fiber angle (in the hoop direction), in particular, is the most effective approach for improving the buckling performance of the CFRP-strengthened cylindrical shells under uniform external pressure.
机译:圆柱形壳体的稳定性性能并提供增强这些结构的屈曲稳定性的潜在方法是设计人员的主要问题。碳纤维增强聚合物(CFRP)复合材料是应用在这种薄壁结构的设计和改造中的应用。在此基础上,本文提出了对均匀外压下CFRP加强圆柱壳的屈曲行为的综合数值研究,并评估了不同参数在强化过程中​​的影响。通过使用ABAQUS有限元件包来研究具有不同细长比的三组模型中具有不同纤细比例的三组模型的CFRP强化圆柱形壳。发现所有考虑的加强布局用于加强目的的应用是有效改善圆柱形壳的屈曲稳定性。结果表明,使用CFRP条带有[0°]纤维角(在箍方向上)的壳体的圆周增强,特别是用于改善CFRP加强圆柱形的屈曲性能的最有效方法外部压力均匀的壳。

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