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Modal characteristics and dynamic stability of a whirling rotor with flexible blades

机译:具有柔性刀片的旋转转子的模态特性和动态稳定性

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This paper analyses the modal characteristics and dynamic stability of a whirling rotor with flexible blades. A rigid disk with flexible blades, which is called a rotor-blade system in this paper, is modelled as a Jeffcott rotor with Euler-Bernoulli beams. From the nonlinear equations of motion, we derived the equilibrium position and the linearized equations around the equilibrium position by the perturbation method. Based on the linearized equations, a modal analysis was performed for the variations of the supporting stiffness and rotating speed. Furthermore, we investigated the effects of the whirling motion on the natural frequencies and mode shapes and found the threshold speed of instability that cause instability in the system. In addition, we also studied the characteristics of stable and unstable regions in terms of the rotating speed and the supporting stiffness.
机译:本文分析了柔性叶片旋转转子的模态特性和动态稳定性。刚性叶片的刚性盘,其中称为转子叶片系统,被建模为具有Euler-Bernoulli梁的Jeffcott转子。从运动的非线性方程,我们通过扰动方法衍生出围绕平衡位置周围的平衡位置和线性化方程。基于线性化方程,对支撑刚度和旋转速度的变化进行了模态分析。此外,我们调查了旋转运动对自然频率和模式形状的影​​响,并发现不稳定性在系统中导致不稳定的阈值速度。此外,我们还在转速和支撑刚度方面研究了稳定和不稳定区域的特征。

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