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The Thermohydrodynamic Analysis of Sliding Bearing High-Speed Motorized Spindle by Rotor Dynamic

机译:转子动力学滑动轴承高速电动主轴的热流动力学分析

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This is paper presents thermohydrodynamic characteristics of high speed motorized spindle sliding bearing rotor system. The dynamic characteristic of the oil film bearing is affected by temperature increment, thereby affecting the high-speed spindle rotor system dynamics. This study applied the hydrodynamic lubrication theory, the influence of temperature on the viscosity of lubricating oil, associated with the bearing stiffness, oil film damping and other performance parameters, is considered in generalized Reynolds equation of oil film bearing. The theoretical model of the sliding bearing rotor system is established by using the transfer matrix method to analyze the dynamic characteristic and verified by experiments. The results show the high temperature environment in the motorized spindle and the friction of the bearing lead to oil temperature rise and viscosity reduction, which influences the bearing capacity, stiffness and damping, hence impact on the critical speeds and modal shapes of the sliding bearing rotor system.
机译:这是纸张呈现高速电动主轴滑动轴承转子系统的热流动动力学特性。油膜轴承的动态特性受温度增量的影响,从而影响高速主轴转子系统动力学。该研究施加了流体动力润滑理论,在油膜轴承的广义雷诺方程中考虑了与轴承刚度,油膜阻尼和其他性能参数相关的温度对润滑油粘度的影响。通过使用转移矩阵方法建立滑动轴承转子系统的理论模型,以分析动态特性并通过实验验证。结果表明,电动主轴中的高温环境和轴承的摩擦导致油温上升和粘度降低,这影响了承载力,刚度和阻尼,因此影响滑动轴承转子的临界速度和模态形状的影响系统。

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