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The effect of a movable mass on the aeroelastic stability of composite hingeless rotor blades in hover

机译:可动质量对悬停中复合铰接转子叶片的空气弹性稳定性的影响

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In this paper, the aeroelastic stability of a composite hingeless rotor blade with a chordwise movable mass is investigated. The point mass is located near the tip of the blade and its chordwise location is variable with respect to the elastic axis and can be moved during the flight. This movable mass is added to the blade to actuate the blade twist during flight. By actuating the mass in the chord direction of the blade during the flight, a bending moment which is the result of the centrifugal force of the mass and its offset is induced on the blade. This bending moment induces twist in the blade, due to bend-twist coupling in the composite lamination. The blade is modelled by using the geometrically exact fully intrinsic beam equations along with the variational asymptotic beam sectional analysis. The aerodynamic loads are simulated by using the two-dimensional strip theory combined with a uniform inflow. The nonlinear partial differential aeroelastic equations are discretized by a time-space scheme, and the converged results are compared with those reported in the literature and a very good match is observed. The results show that by positioning the mass near the tip of the blade, and also by using the ply angle of about 30 degree in this configuration, the highest possible twist change is achieved when the mass moves from the leading edge to the trailing edge of the blade. Moreover, the spanwise location of the mass slightly changes the stability boundaries, while the chordwise movement significantly affects the aeroelastic instability. Crown Copyright (C) 2019 Published by Elsevier Ltd. All rights reserved.
机译:在本文中,研究了具有赤垂可移动质量的复合铰接转子叶片的空气弹性稳定性。点质量位于叶片的尖端附近,并且其曲线方向相对于弹性轴是可变的,并且可以在飞行期间移动。将该可移动质量添加到刀片中以在飞行期间致动叶片扭转。通过在飞行期间致动叶片的弦方向的质量,在叶片上诱导弯曲力矩和质量离心力和其偏移的结果。该弯矩引起叶片的扭曲,由于复合层压中的弯曲扭转耦合。通过使用几何精确完全内在光束方程以及变分渐近光束截面分析来建模刀片。通过使用二维带理论与均匀的流入相结合模拟空气动力载荷。非线性偏差空气弹性方程由时间空间方案离散化,并将融合结果与文献中报道的那些进行比较,并且观察到非常好的匹配。结果表明,通过将质量定位在叶片的尖端附近,并且通过在该配置中使用约30度的帘布层角度,当质量从前缘到后缘移动到后缘时,实现了最高可能的扭曲变化刀片。此外,质量的翼展位置略微改变稳定边界,而弦弯运动显着影响气动弹性不稳定。皇冠版权(c)2019由elestvier有限公司出版。保留所有权利。

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