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ULTIMATE LIMIT STATE ANALYSIS OF FRP COMPOSITE SANDWICH PLATES - DEVELOPMENT OF A SEMI-ANALYTICAL METHOD

机译:FRP复合夹芯板的极限极限状态分析-半解析法的发展

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The development of Sandwich PULS, a semi-analytical calculation tool for predicting the ultimate limit state (ULS) of FRP composite sandwich plates is presented. This was done by extending DNV GL's semi-analytical calculation tool Composite PULS, which is used for quick estimation of the ULS for unstiffened composite plates. ULS was evaluated in terms of the first buckling load and the first ply failure (FPF). The Sandwich PULS code was developed by implementing formulations for sandwich plate theory. First-order shear deformation theory (FSDT) was implemented to include the transverse shear deformations that are highly important for sandwich plates with poor shear stiffness of the core. The Sandwich PULS code was evaluated against nonlinear finite element analyses (FEA). It was concluded that Sandwich PULS shows good agreement with FEA-predicted critical buckling loads. For all inspected plates, Sandwich PULS shows improved results compared to Composite PULS. Differences between Sandwich PULS and FEA are caused by the difference in evaluating shear stiffness. It has been shown that neglecting shear stiffness of faces results in good agreement between Sandwich PULS and FEA, while use of conventional shear correction factors proved to be unfavourable for sandwich plates. It was found that Sandwich PULS is limited in terms of slenderness. Sandwich plates with soft core should not have slenderness below 20 to assure an accurate solution.
机译:提出了Sandwich PULS的发展,Sandwich PULS是一种用于预测FRP复合夹层板极限极限状态(ULS)的半分析计算工具。这是通过扩展DNV GL的半分析计算工具Composite PULS来完成的,该工具可用于快速估计未加筋的复合板的ULS。根据第一屈曲载荷和第一帘布层破坏(FPF)评估了ULS。 Sandwich PULS代码是通过实现三明治板理论的公式而开发的。一阶剪切变形理论(FSDT)被实施为包括横向剪切变形,这对于芯部剪切刚度较差的夹心板非常重要。根据非线性有限元分析(FEA)对Sandwich PULS代码进行了评估。结论是,Sandwich PULS与FEA预测的临界屈曲载荷显示出良好的一致性。对于所有检查的板,与复合材料PULS相比,三明治PULS的结果有所改善。夹心PULS和FEA之间的差异是由评估剪切刚度的差异引起的。已经表明,忽略面的剪切刚度会导致Sandwich PULS和FEA之间的一致性好,而使用常规的剪切校正因子对夹层板是不利的。已经发现,三明治PULS在细长性方面受到限制。具有软芯的夹心板的细度不应低于20,以确保精确的解决方案。

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