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Laminated metal-polymeric materials in structural elements of aircraft

机译:飞机结构元件中的层压金属聚合物材料

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Design, manufacture, and test results are presented for laminated metal-polymeric hybrid fragments of a wing panel made of high-strength aluminum-lithium alloy V-1469T1 and of single-directed laminated aluminum fiberglass SIAL-1-1R. It is shown that the principle “material-technology-structure” can be implemented, and we demonstrate it by example of designing the fragment of a hybrid wing panel beginning from choosing the optimal structure material for the stringer and the structure of hybrid skin and finishing by testing large-sized structure-like samples. We show that the results of strength calculations for fragments of the hybrid wing panel demonstrate good convergence according to static and repeated static tests of panel fragment. Calculations are performed according to different methods, including the finite element method. We show that the hybrid structures are better than the traditional structures made of aluminum alloys according to weight efficiency, which can run up to 10%, and according to bearing capacity, which can run up to 20%.
机译:介绍了由高强度铝锂合金V-1469T1和单向层压铝玻璃纤维SIAL-1-1R制成的机翼板的层压金属-聚合物混合片段的设计,制造和测试结果。结果表明,可以实现“材料-技术-结构”原理,并以设计混合翼板的片段为例进行说明,该过程从为桁条选择最佳的结构材料以及混合蒙皮的结构和饰面开始通过测试大型结构样样品。我们显示,根据机翼碎片的静态和反复静态测试,混合翼板碎片的强度计算结果显示出良好的收敛性。根据包括有限元法在内的不同方法进行计算。我们显示,混合结构在重量效率方面可以达到10%,而在承载能力方面可以达到20%,优于传统的铝合金结构。

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