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MODELING OF FLEXIBLE BLADE RIGID-DISK FLEXIBLE SHAFT ROTOR SYSTEM SUPPORTED BY ELASTIC BEARINGS: STABILITY ANALYSES

机译:弹性轴承支撑的柔性叶片刚性圆盘挠性转子系统建模:稳定性分析

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A Simple mathematical model describing the motion of a rotating flexible blade rigid-disk flexible shaft assembly is derived. The model provides a fast parametric study for the dynamic behavior of the proposed rotor system. The Lagrangian approach combined with the assumed mode method is used to derive the governing equations of motion for this system. The model consists of asymmetrical continuous shaft mounted on two isotropic supports; an end support, represented by two rotational and two translational springs, and an intermediate support, represented by two translational springs only. A rigid disk, with a number of flexible blades of uniformly distributed stiffness and mass, cantilevered to the disk, is attached to the free end of the shaft. The effect of support flexibility on the stability of the system is studied. Instability regions are presented for different system parameters. The proposed mathematical model results are similar to that found in the literature.
机译:一个简单的数学模型描述了旋转的挠性叶片刚性盘挠性轴组件的运动。该模型为建议的转子系统的动力学行为提供了快速的参数研究。拉格朗日方法与假定模式方法相结合,可以得出该系统的运动控制方程。该模型由安装在两个各向同性支架上的不对称连续轴组成。一个由两个旋转弹簧和两个平移弹簧表示的端部支撑,以及一个仅由两个平移弹簧表示的中间支撑。刚性磁盘,悬臂固定在磁盘上,该磁盘具有多个刚性和质量均匀分布的挠性叶片,并附接到轴的自由端。研究了支撑灵活性对系统稳定性的影响。给出了针对不同系统参数的不稳定性区域。所提出的数学模型结果与文献中的结果相似。

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