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Dynamic stability and nonlinear vibration analysis of a rotor system with flexible/rigid blades

机译:柔性/刚性叶片转子系统的动态稳定性和非线性振动分析

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摘要

In this paper, the primary resonances of a coupled flexible rotor with rigid disk and flexible/rigid blades are investigated. The Euler-Bernoulli beam theory is used to model the blade and shaft. The equations of motion are derived with the aid of the extended Hamilton principle. To simplify the equations of motion, the Coleman and complex transformations are used. The multiple scales method is used to analyze the primary resonances of the system. The influences of mass eccentricity and the damping of the surrounding medium on the steady state responses of the system are studied. It can be seen that rotor's damping values that guarantee the stability of system with flexible blades are higher than those that impose stable conditions in system with rigid blades. In addition, the system with rigid blades becomes completely stable in higher values of the mass eccentricity compared to the system with flexible blades. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,研究了带有刚性圆盘和柔性/刚性叶片的耦合柔性转子的主共振。欧拉-伯努利梁理论用于对叶片和轴进行建模。借助扩展的汉密尔顿原理导出运动方程。为了简化运动方程,使用了Coleman变换和复数变换。多尺度方法用于分析系统的主共振。研究了质量偏心率和周围介质的阻尼对系统稳态响应的影响。可以看出,保证具有柔性叶片的系统的稳定性的转子阻尼值要高于具有刚性叶片的系统中施加稳定条件的转子的阻尼值。另外,与具有柔性叶片的系统相比,具有刚性叶片的系统在更高的质量偏心率值上变得完全稳定。 (C)2016 Elsevier Ltd.保留所有权利。

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