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Soft body impact resistance of composite foam core sandwich panels with unidirectional corrugated and tubular reinforcements

机译:复合泡沫芯夹层板具有单向波纹和管状增强剂的复合泡沫芯夹层电阻的软体抗冲击性

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摘要

Bird strikes represent a major hazard in the lifecycle of composite aircraft components, due to the low impact resistance of composites. The research presented in this paper investigates soft body impact performance of composite sandwich panels with corrugated and tubular core reinforcements. This type of panel with augmented strength and stiffness in one direction is of high importance for specific aerospace applications. The panels were subjected to high velocity impact with soft gelatine projectile as used in bird strike tests. In addition, the experimental part included non-destructive inspections of the sandwich panel samples. Panel performance was also analysed with the non-linear transient analysis software LS-DYNA with finite element and SPH capability. The panel with corrugated reinforcement showed good impact resistance with damage restricted to the impacted face sheet, foam core and corrugated reinforcement. The panel with tubular reinforcement, of the same thickness, did not suffer any damage at the same impact velocity of 115 m/s, but was damaged at a higher impact velocity of 235 m/s. The numerical studies helped to understand the experimental data, enabling comparison of impact performance of the reinforced sandwich panels and a benchmark conventional sandwich panel. The proposed reinforced sandwich panels, with the desired augmented strength and stiffness in one direction, showed improved impact resistance in comparison to conventional sandwich panels and therefore have potential for application in aerospace structures where these properties are desirable.
机译:由于复合材料的低抗冲击性,鸟类罢工代表了复合飞机部件的生命周期中的重大危害。本文提出的研究调查了具有波纹和管状芯增强剂复合夹层面板的软体​​冲击性能。这种具有增强强度和一个方向刚度的面板对于特定的航空航天应用具有很高的重要性。用鸟撞击试验使用的软明胶射弹进行高速冲击。此外,实验部分包括夹层面板样品的无损检测。还使用有限元和SPH能力的非线性瞬态分析软件LS-DYNA分析面板性能。具有波纹增强器的面板显示出良好的抗冲击性,损坏损坏,限制在撞击的面板,泡沫芯和波纹增强。具有相同厚度的管状加强件的面板在115米/秒的相同冲击速度下造成的任何损伤,但在235米/秒的较高冲击速度下损坏。数值研究有助于了解实验数据,从而能够比较加强夹层板的冲击性能和基准常规夹层面板的影响。所提出的增强夹层板,具有所需的增强强度和刚度的一个方向,与传统的夹心板相比,具有改善的抗冲击性,因此具有在航空航天结构中的应用潜力。

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