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Buffeting mitigation using carbon nanotube composites: a feasibility study

机译:使用碳纳米管复合材料的抖振缓解:可行性研究

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The article describes a feasibility study to assess the use of nanotubes-based composites to mitigate tail buffeting. The buffeting of a representative business jet rudder is considered as case study. The baseline rudder configuration consists in a sandwich structure with honeycomb core and carbon/epoxy IM7/8552 skins. The damping characteristics of the baseline rudder configuration are compared to those achieved employing constrained layer AI/3M467 skin patches, and those obtained by dispersing multi-walled carbon nanotubes in the baseline carbon/epoxy material. The loads applied to the rudder during flight are obtained by airworthiness standards. Static and dynamic finite element analyses of the rudder under flight loads are carried out to evaluate the structural response at two different t emperatures, -40 ℃ and +30℃. IM7/8552/MWNT with l.5 wt% nanofiller is shown to have the best overall performance for the case study onsidered here, with the potential of outperforming conventional constrained layer patches for buffeting mitigation.
机译:本文介绍了一项可行性研究,以评估基于纳米管的复合材料减轻尾部抖振的使用。具有代表性的公务机舵的抖振被视为案例研究。基准舵配置为具有蜂窝芯和碳/环氧树脂IM7 / 8552蒙皮的三明治结构。将基线舵构型的阻尼特性与采用约束层AI / 3M467蒙皮贴片所获得的阻尼特性以及通过将多壁碳纳米管分散在基线碳/环氧树脂材料中所获得的阻尼特性进行了比较。飞行中施加在舵上的载荷是通过适航标准获得的。在飞行载荷下,对舵进行了静态和动态有限元分析,以评估两种不同温度(-40℃和+30℃)下的结构响应。具有1.5%重量百分比的纳米填料的IM7 / 8552 / MWNT被证明具有最佳的整体性能,可胜过传统的约束层贴片,可减轻抖振。

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