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Natural frequencies and vibrating modes for a magnetic planetary gear drive

机译:磁性行星齿轮传动的固有频率和振动模式

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In this paper, a dynamic model for a magnetic planetary gear drive is proposed. Based on the model, the dynamic equations for the magnetic planetary gear drive are given. From the magnetic meshing forces and torques between the elements for the drive system, the tangent and radial magnetic meshing stiffness is obtained. Using these equations, the natural frequencies and the modes of the magnetic planetary gear drive are investigated. The sensitivity of the natural frequencies to the system parameters is discussed. Results show that the pole pair number and the air gap have obvious effects on the natural frequencies. For the planetary gear number larger than two, the vibrations of the drive system include the torsion mode of the center elements, the translation mode of the center elements, and the planet modes. For the planetary gear number equal to two, the planet mode does not occur, the crown mode and the sun gear mode occur.
机译:本文提出了一种磁性行星齿轮传动的动力学模型。基于该模型,给出了磁力行星齿轮传动的动力学方程。从用于驱动系统的元件之间的磁啮合力和转矩,可以获得切线和径向磁啮合刚度。使用这些方程式,研究了磁性行星齿轮传动的固有频率和模式。讨论了固有频率对系统参数的敏感性。结果表明,极对数和气隙对固有频率有明显影响。对于大于两个的行星齿轮,驱动系统的振动包括中心元件的扭转模式,中心元件的平移模式和行星模式。对于等于2的行星齿轮号,不会出现行星模式,而会出现冠状模式和太阳齿轮模式。

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