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Experimentally determined flutter from two- and three-bladed model bearingless rotors in hover

机译:实验确定的由两叶和三叶模型无轴承转子产生的颤动

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摘要

A series of experiments was performed on a 1.8-m-diam model rotor in hover for the principal purpose of investigating the lead-lag stability of isolated bearingless rotors. Incidental to those tests, at least three types of pitch-flap flutter were encountered. Type 1 flutter occurred approximately at the second flap-mode frequency on both two-and three-bladed rotors for both small and large pitch angles and appeared to be a classic pitch-flap flutter. Type 2 flutter showed mostly torsional motion and was seen on both two- and three-bladed rotors. Type 3 flutter was a regressing flap flutter that occurred for only the three-bladed rotor configurations and appears to be a wake excited flutter. Although flutter occurred on a number of different configurations, no rotor parameters were identified that were clearly stabilizing or destabilizing.
机译:悬停在直径为1.8 m的模型转子上进行了一系列实验,其主要目的是研究隔离的无轴承转子的超前滞后稳定性。那些测试附带地,遇到了至少三种类型的俯仰襟翼颤动。类型1颤振大约发生在第二叶片模式和第二叶片模式频率上,无论是小桨距角还是大桨距角,在两叶片和三叶片转子上均出现,这似乎是典型的桨距襟翼颤动。 2型颤动主要表现为扭转运动,并且在两叶和三叶转子上均可见。 3型颤振是回归襟翼颤振,仅在三叶片转子配置中才出现,并且似乎是尾波激发颤振。尽管颤动发生在许多不同的配置上,但未发现明显稳定或不稳定的转子参数。

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  • 作者

    Bousman, W. G.; Dawson, S.;

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  • 年度 1985
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