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Analysis on the Impact Factors of Auxiliary Bearing in Vertical Magnetic Bearing

机译:立式电磁轴承中辅助轴承的影响因素分析

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Auxiliary bearing is used to support the high-speed falling rotor in the active magnetic bearing. Its impact resistance directly affects the safety and reliability of the active magnetic bearing. In order to study the impact resistance of the auxiliary bearing in the vertical active magnetic bearing, full angular contact hybrid ceramic ball bearing was used as the auxiliary bearing, and ADAMS was used to simulate the impact force of the auxiliary bearing when the balanced rotor was fell on the auxiliary bearing. The influence of friction factor, axial protection clearance, rotor mass and rotor drop speed on the initial axial impact force of the vertical balanced rotor falling to the auxiliary bearing is analyzed. The results show that the initial axial impact force on the auxiliary bearing is the maximum axial impact force. The initial axial impact force on the protected bearing decreases with the increase of dynamic friction factor. It increases with the increase of axial protection clearance and rotor mass. Unchanged with the increase of falling speed. The influence of axial impact on the bearing can be reduced by increasing the friction factor, reducing the clearance of axial protection and the mass of rotor appropriately.
机译:辅助轴承用于在主动磁轴承中支撑高速下降转子。它的抗冲击性直接影响主动电磁轴承的安全性和可靠性。为了研究辅助轴承在立式主动磁轴承中的耐冲击性,以全角接触混合陶瓷球轴承为辅助轴承,并采用ADAMS来模拟平衡转子转动时辅助轴承的冲击力。掉在辅助轴承上。分析了摩擦系数,轴向保护间隙,转子质量和转子下降速度对垂直平衡转子落到辅助轴承上的初始轴向冲击力的影响。结果表明,在辅助轴承上的初始轴向冲击力是最大轴向冲击力。受保护轴承上的初始轴向冲击力随动摩擦系数的增加而减小。它随轴向保护间隙和转子质量的增加而增加。下降速度不变,不变。通过增加摩擦系数,适当减小轴向保护间隙和转子质量,可以减少轴向冲击对轴承的影响。

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