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HELICOPTER GROUND RESONANCE PHENOMENON WITH BLADE STIFFNESS DISSIMILARITIES: EXPERIMENTAL AND THEORETICAL DEVELOPMENTS

机译:直升机地面共振现象与刀片僵硬异化:实验和理论发展

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Recent works study the ground resonance in helicopters under the aging effects. Indeed, the blades lead-lag stiffness may vary randomly with time and be different from each other (i.e.: anisotropic rotor). The influence of stiffness dissimilarities between blades on the stability of the ground resonance phenomenon is determined through numerical investigations on the periodical equations of motion, treated by using Floquet's theory. Stability chart highlights the appearance of new instability zones as function of the perturbation introduced on the lead-lag stiffness of one blade. In order to validate the theoretical results, a new experimental setup is designed and developed. The ground resonance instabilities are investigated for different types of rotor configurations (i.e.: isotropic and anisotropic rotors) and the boundaries of stability are determined. A good correlation between both theoretical and experimental results is obtained and the new instability zones, found in asymmetric rotors, are verified experimentally. The temporal responses of the measured signals highlight the exponential divergence at the instability regions.
机译:最近的作品在老化效果下的直升机中的地面共振研究。实际上,叶片引线滞后刚度可能随时间随机变化并且彼此不同(即:各向异性转子)。叶片之间刚度异化对地面共振现象的稳定性的影响是通过使用FLOQUET理论处理的关于运动的周期性方程的数值研究来确定。稳定性图表突出了新的不稳定区的外观,因为在一个刀片的引导滞后刚度引入的扰动的功能。为了验证理论结果,设计并开发了一种新的实验设置。针对不同类型的转子配置研究了地面共振不稳定性(即各向同性和各向异性转子),并且确定稳定性的边界。获得理论和实验结果之间的良好相关性,并且在实验上验证了在不对称转子中发现的新的不稳定性区域。测量信号的时间响应突出了不稳定区域的指数发散。

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