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Semi-Active Damping of Ground Resonance in Helicopters Using Magnetorheological Dampers

机译:使用磁流变阻尼器的直升机地面共振的半主动阻尼

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We will assess the capabilities of physically motivated MR dampers to mitigate ground resonance instability and control the damping level of rotor lag modes. The objectives of this research are threefold: (1) develop a methodology for the integration of the MR damper into a classic linear ground resonance analysis assuming an isotropic rotor hub (all dampers and blades similar) and an anisotropic rotor hub (due to lag damper dissimilarity due to damage, for example), (2) assess whether MR dampers can stabilize a rotor system that exhibits unstable ground resonance, (3) assess whether MR dampers can stabilize a rotor which exhibits unstable ground resonance behavior due to lag damper degradation or damage. The analyses developed in this study show that MR dampers are feasible for achieving these goals.
机译:我们将评估物理动机的MR阻尼器的能力,以减轻地面共振不稳定并控制转子滞后模式的阻尼水平。该研究的目标是三倍:(1)开发一种方法,用于假设各向同性转子轮毂(所有阻尼器和叶片类似)和各向异性转子轮毂(由于滞后阻尼器)和各向异性转子毂(由于滞后阻尼器)(由于滞后阻尼器)进行了一种方法例如,(2)评估MR阻尼器是否可以稳定表现出不稳定的地面共振的转子系统,评估MR阻尼器是否可以稳定由于滞后阻尼器的滞后或滞后的地面共振行为的转子来稳定转子系统。损害。本研究中开发的分析表明,阻尼器MRS DAMPERS可用于实现这些目标。

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