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首页> 外文期刊>International Journal of Mechanical Sciences >On the vibration of rotor-bearing system with squeeze film damper in an energy storage flywheel
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On the vibration of rotor-bearing system with squeeze film damper in an energy storage flywheel

机译:储能飞轮中带挤压膜阻尼器的转子轴承系统的振动研究

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The permanent magnetic bearing and the small-sized hydrodynamic spiral groove bearing are utilized as supports for the rotor of the energy storage flywheel system. The hydrodynamic bearing and the squeeze film damper do not need the oil cycle to remove the heat caused by friction because the friction loss is small. The linear dynamics model with four degrees of freedom is built to describe the vibration of the flywheel rotor-bearing system. The squeeze film dampers show good behavior in suppressing the vibration and improving the stability of the rotor-bearing system. The analytical solution of the dynamic characteristic coefficients of the squeeze film is achieved from Reynolds equation after some simplifications are taken. The numerical computation shows that the moment unbalance excites larger vibration of the rotor than the force unbalance. The upper damper plays an important role in helping the rotor pass its critical speed. The damping coefficient of the squeeze film dampers should be selected carefully. The flywheel arrived at the speed of 39,000 rpm and stored the energy of 308 Wh in the experiment. The calculated unbalance response is compared to the test response of the rotor storing quantities of kinetic energy. The comparison indicates that the dynamics model of the rotor-bearing-damper system is appropriate.
机译:永磁轴承和小型流体动力螺旋槽轴承用作储能飞轮系统转子的支撑。流体动力轴承和挤压膜阻尼器不需要油循环来消除由摩擦引起的热量,因为摩擦损失很小。建立具有四个自由度的线性动力学模型来描述飞轮转子轴承系统的振动。压膜阻尼器在抑制振动和改善转子轴承系统的稳定性方面表现出良好的性能。进行一些简化后,根据雷诺方程可得到挤压膜动态特性系数的解析解。数值计算表明,力矩不平衡比力不平衡引起的转子振动更大。上阻尼器在帮助转子通过其临界转速方面起着重要作用。应当仔细选择挤压膜阻尼器的阻尼系数。飞轮以39,000 rpm的速度到达,并在实验中存储了308 Wh的能量。将计算出的不平衡响应与存储动能的转子的测试响应进行比较。比较表明,转子-轴承-阻尼器系统的动力学模型是合适的。

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