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The use of initial imperfection approach in design process and buckling failure evaluation of axially compressed composite cylindrical shells

机译:初始缺陷方法在轴向压缩复合材料圆柱壳的设计过程和屈曲破坏评估中的应用

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Thin-walled cylindrical shells are susceptible to buckling failures caused by the axial compressive loading. During the design process or the buckling failure evaluation of axially-compressed cylindrical shells, initial geometric and loading imperfections are of important parameters for the analyses. Therefore, the engineers/designers are expected to well understand the physical behaviours of shell buckling to prevent unexpected serious failure in structures. In particular, it is widely reported that no efficient guidelines for modelling imperfections in composite structures are available. Knowledge obtained from the relevant works is open for updates and highly sought. In this work, we study the influence of imperfections on the critical buckling of axially compressed cylindrical shells for different geometries and composite materials (Glass Fibre Reinforced Polymer (GFRP), Carbon Fibre Reinforced Polymer (CFRP)) and aluminium using the finite element (FE) analysis. Two different imperfection techniques called eigenmode-affine method and single perturbation load approach (SPLA) were adopted. Validations of the present results with the published experimental data were presented. The use of the SPLA for introducing an imperfection in axially compressed composite cylindrical shells seemed to be desirable in a preliminary design process and an investigation of a buckling failure. The knockdown factors produced by the SPLA were becoming attractive to account for uncertainties in the structure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:薄壁圆柱壳易受轴向压缩载荷引起的屈曲破坏的影响。在设计过程中或轴向压缩圆柱壳的屈曲破坏评估中,初始几何和载荷缺陷是进行分析的重要参数。因此,工程师/设计人员应很好地理解壳屈曲的物理行为,以防止结构中发生意外的严重破坏。特别是,据广泛报道,尚无用于对复合结构中的缺陷进行建模的有效指南。从相关作品中获得的知识是开放的,可以随时进行更新和追捧。在这项工作中,我们使用有限元(FE)研究了缺陷对不同几何形状和复合材料(玻璃纤维增​​强聚合物(GFRP),碳纤维增强聚合物(CFRP))和铝的轴向压缩圆柱壳的临界屈曲的影响)分析。采用了两种不同的不完善技术,即本征模仿射方法和单扰动加载方法(SPLA)。提出了本结果与已发表的实验数据的验证。在初步设计过程和屈曲失效研究中,使用SPLA在轴向压缩的复合圆柱壳中引入缺陷似乎是理想的。由于考虑到结构的不确定性,苏人解产生的击倒因素变得越来越有吸引力。 (C)2015 Elsevier Ltd.保留所有权利。

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