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Buckling strength improvements for Fibre Metal Laminates using thin-ply tailoring

机译:使用薄层剪裁纤维金属层压板的屈曲强度改进

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摘要

The buckling response and load carrying capacity of thin-walled open cross-section profiles made of Fibre Metal Laminates, subjected to static axial compression loading are considered. These include thin-walled Z-shape and channel cross-section profiles adopting a 3/2 FML lay-up design, made of 3 aluminium layers. The objective of the investigation is the comparison of standard thickness Fibre Reinforced Plastic layers versus thin-ply material technology. Whilst thin ply designs differ only by the layer thickness, they offer an exponential increase in stacking sequence design freedoms, allowing detrimental coupling effects to be eliminated. The benefit of different hybrid materials are also considered. The comparisons involve semi-analytical and finite element methods, which are validated against experimental investigations.
机译:考虑了由纤维金属层压板制成的薄壁开口横截面型材的屈曲响应和承载能力,承受了静态轴向压缩载荷。这些包括采用3/2 FML叠层设计的薄壁Z形和通道横截面轮廓,由3个铝层制成。研究的目的是将标准厚度的纤维增强塑料层与薄层材料技术进行比较。尽管薄层设计仅在层厚度上有所不同,但它们提供了堆叠顺序设计自由度的指数增长,从而消除了有害的耦合效应。还考虑了不同混合材料的好处。比较涉及半分析和有限元方法,这些方法已通过实验研究验证。

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