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Aeroelastic Tailoring for Stability Augmentation and Performance Enhancements of Tiltrotor Aircraft

机译:气动弹性剪裁,以提高倾转旋翼飞机的稳定性和性能

摘要

The requirements for increased speed and productivity for tiltrotors has spawned several investigations associated with proprotor aeroelastic stability augmentation and aerodynamic performance enhancements. Included among these investigations is a focus on passive aeroelastic tailoring concepts which exploit the anisotropic capabilities of fiber composite materials. Researchers at Langley Research Center and Bell Helicopter have devoted considerable effort to assess the potential for using these materials to obtain aeroelastic responses which are beneficial to the important stability and performance considerations of tiltrotors. Both experimental and analytical studies have been completed to examine aeroelastic tailoring concepts for the tiltrotor, applied either to the wing or to the rotor blades. This paper reviews some of the results obtained in these aeroelastic tailoring investigations and discusses the relative merits associated with these approaches.
机译:对倾斜转子提高速度和生产率的要求催生了与proprotor气动弹性稳定性增强和空气动力性能增强相关的多项研究。这些研究包括对被动气动弹性剪裁概念的关注,这些概念利用了纤维复合材料的各向异性能力。兰利研究中心和贝尔直升机公司的研究人员已经做出了相当大的努力,以评估使用这些材料获得气动弹性响应的潜力,这对于倾斜旋翼的重要稳定性和性能考量是有益的。实验和分析研究都已经完成,以检查应用于斜翼转子的气动弹性剪裁概念,该概念适用于机翼或转子叶片。本文回顾了在这些气动弹性剪裁研究中获得的一些结果,并讨论了与这些方法相关的优点。

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