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Gear Dynamics Analysis With Turbulent Journal Bearings Mounted Hybrid Squeeze Film Damper-Chaos and Active Control Analysis

机译:装有混合挤压油膜阻尼器-混沌的湍流轴颈轴承的齿轮动力学分析和主动控制分析

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摘要

The hybrid squeeze film damper mounted turbulent journal bearing-gear system is proposed in this paper. The nonlinear dynamics of a gear pair supported by such bearing is studied. Numerical results show that, due to the nonlinear factors of lubricant film force, the trajectory of the pinion demonstrates a complex dynamics with dimensionless unbalance parameters. Poincare maps and bifurcation diagrams are used to analyze the behavior of the pinion trajectory in the horizontal direction. The maximum Lyapunov exponent is used to determine if the system is in a state of chaotic motion. In order to avoid the nonsynchronous chaotic vibrations, an increased proportional gain k(p) = 0.1 is applied to control this system. It is shown that the pinion trajectory will leave chaotic motion to periodic motion in the steady state under control action.
机译:本文提出了一种混合式挤压油膜阻尼器安装的湍流轴颈轴承-齿轮系统。研究了这种轴承支撑的齿轮对的非线性动力学。数值结果表明,由于润滑膜力的非线性因素,小齿轮的轨迹显示出具有无量纲不平衡参数的复杂动力学。庞加莱图和分叉图用于分析小齿轮轨迹在水平方向上的行为。最大李雅普诺夫指数用于确定系统是否处于混沌运动状态。为了避免非同步混沌振动,增加了比例增益k(p)= 0.1,以控制该系统。结果表明,在控制作用下,小齿轮的轨迹在稳态下会从混沌运动变为周期性运动。

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