首页> 外文会议>19th Biennial Conference on Mechanical Vibration and Noise >NONLINEAR FREE VIBRATION OF A ROTOR SHAFT SYSTEM WITH VISCOELASTICALLY SUPPORTED BEARINGS
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NONLINEAR FREE VIBRATION OF A ROTOR SHAFT SYSTEM WITH VISCOELASTICALLY SUPPORTED BEARINGS

机译:具有粘弹性支撑轴承的转子轴系统的非线性自由振动

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This paper investigates the dynamic analysis of a single-rotor shaft system with nonlinear elastic bearings at the ends mounted on viscoelastic suspension. A Timoshenko shaft model is utilized to incorporate the flexibility of the shaft; the rotor is considered to be rigid and located at the mid-span of the shaft. A nonlinear bearing pedestal model is assumed which has a cubic nonlinear spring and linear damping characteristics. The viscoelastic supports are modeled using the Kelvin-Voigt model. Free vibration is investigated based on the direct multiple scales method of one-to-one frequency-to-amplitude relationship using third order perturbation expansion. The results of the nonlinear analysis show that a limiting value of the internal damping coefficient of the shaft exists where the trend of the frequency-response curve switches.
机译:本文研究了在粘弹性悬架的端部装有非线性弹性轴承的单转子轴系统的动力学分析。蒂莫申科轴模型用于结合轴的灵活性。转子被认为是刚性的,并且位于轴的中跨。假设具有非线性立方弹簧和线性阻尼特性的非线性轴承座模型。使用Kelvin-Voigt模型对粘弹性支撑进行建模。基于三阶扰动展开,基于一对一的频率-振幅关系的直接多尺度方法,研究了自由振动。非线性分析的结果表明,在频率响应曲线的趋势发生变化的地方,轴的内部阻尼系数存在一个极限值。

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