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Pad-Pivot Friction Effect on Nonlinear Response of a Rotor Supported by Tilting-Pad Journal Bearings

机译:倾斜垫轴颈轴承支撑的转子非线性响应的垫枢轴摩擦效应

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This paper presents a numerical study for nonlinear rotordynamic response with bifurcations of tilting pad journal bearings when pad-pivot friction forces are taken into account. A Stribeck friction model is employed to determine the friction coefficient for the contacts between the pads and the spherical-type pivots. The boundary/mixed/hydrodynamic friction mode is determined for each pad surface based on the instantaneous angular motion of the pads. A Jeffcott type rotor supported on 5-pad tilting pad journal bearings is used for the structural model, and finite element fluid film models are utilized to calculate the reaction forces and moments on the pads. The simulation results show that pad-pivot friction plays an important role in determining the stability of the rotor system. For the autonomous condition, the friction induces a Hopf bifurcation and generates limit cycles at high rotor spin speed (>14 krpm), which were originally stable equilibrium states with a no friction condition. For the nonautonomous condition, the 1x synchronous response becomes subsynchronous/quasiperiodic responses in the high-speed range (>14 krpm) with the appearances of Neimark-Sacker bifurcations. It is shown that the outbreak points and corresponding response types are highly dependent on the state of disk imbalance. A comparison of the linear and nonlinear models clearly illustrates the importance of retaining nonlinear forces to determine potential deleterious vibration.
机译:本文介绍了当考虑焊盘枢轴摩擦力时倾斜垫轴颈轴承的非线性旋转动力学响应的数值研究。采用Stribeck摩擦模型来确定垫和球形型枢轴之间的触点的摩擦系数。基于垫的瞬时角度运动,针对每个焊盘表面确定边界/混合/流体动力学摩擦模式。支撑在5张焊盘倾斜垫轴颈轴承上的JEFFCOTT型转子用于结构模型,并且利用有限元流体膜模型来计算垫上的反作用力和时刻。仿真结果表明,垫枢轴摩擦在确定转子系统的稳定性方面起着重要作用。对于自主状态,摩擦诱导Hopf分叉并在高转子旋转速度(> 14 kRPM)下产生极限循环,其最初是稳定的平衡状态,没有摩擦条件。对于非自治条件,1X同步响应在高速范围(> 14 kRPM)中具有Neimark-Sacker分叉的外观的子同步/ QuaSiodic响应。结果表明,爆发点和相应的响应类型高度依赖于磁盘不平衡状态。线性和非线性模型的比较清楚地示出了保持非线性力以确定潜在的有害振动的重要性。

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