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首页> 外文期刊>Journal of Tribology >Nonlinear Dynamics of Flexible Rotors Supported on Journal Bearings-Part I: Analytical Bearing Model
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Nonlinear Dynamics of Flexible Rotors Supported on Journal Bearings-Part I: Analytical Bearing Model

机译:期刊轴承支持的柔性转子的非线性动力学 - 第一部分:分析轴承模型

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摘要

To determine the bifurcation types in a rotor-bearing system, it is required to find higher order derivatives of the bearing forces with respect to journal velocity and position. As closed-form expressions for journal bearing force are not generally available, Hopf bifurcation studies of rotor-bearing systems have been limited to simple geometries and cavitation models. To solve this problem, an alternative nonlinear coefficient-based method for representing the bearing force is presented in this study. A flexible rotor-bearing system is presented for which bearing force is modeled with linear and nonlinear dynamic coefficients. The proposed nonlinear coefficient-based model was found to be successful in predicting the bifurcation types of the system as well as predicting the system dynamics and trajectories at spin speeds below and above the threshold speed of instability.
机译:为了确定转子系统中的分叉类型,需要找到轴承力的高阶导数相对于轴颈速度和位置。 作为封闭式轴承力的闭合表达通常不可用,转子轴承系统的Hopf分叉研究仅限于简单的几何形状和空化模型。 为了解决这个问题,本研究提出了一种用于代表轴承力的替代非线性系数的方法。 提出了一种柔性转子系统,其承载力用线性和非线性动态系数进行建模。 发现所提出的非线性系数的模型是成功预测系统的分岔类型以及在旋转速度下预测系统动态和轨迹,并且高于不稳定性的阈值速度。

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