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Free vibration characteristics of compound planetary gear train sets

机译:复合行星齿轮系的自由振动特性

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In this study, a plane model of a compound planetary gear train (CPGT) is proposed in order to study its free vibration characteristics. Two translations and one rotation are considered for each element (sun, carrier, ring-1, ring-2, and planets) of the CPGT. The contact between the teeth in mesh is modelled by linear springs with stiffness called gearmesh stiffness. The phasing between these stiffness is taken into account. Using Lagrange formulation, the equation of motion is derived. Starting from the eigenvalue problem of the system, the influence of the planets' number and position, and the effect of the gyroscopic phenomena on the free vibration of the CPGT are studied. The natural modes are classified into three groups: translational (the carrier, ring 1, and sun have pure modal translational deflection with no rotation), rotational (the carrier, ring 1, and sun have pure modal rotational deflection with no translation), and planets' modes (only the planets have a modal deflection). It was found that the change of the planets' angular position does not affect this classification. On the other hand, the study of the influence of the carrier rotation speed show that the gyroscopic effect separates the repeated translational modes into distinct ones. The obtained results are much important in the design process in order to avoid critical operating conditions which lead to undesirable vibrations. [PUBLICATION ABSTRACT]
机译:在这项研究中,提出了复合行星齿轮系(CPGT)的平面模型,以研究其自由振动特性。对CPGT的每个元素(太阳,行星架,环1,环2和行星)都考虑两次平移和旋转一圈。啮合中的齿之间的接触是通过具有称为齿轮啮合刚度的刚度的线性弹簧建模的。这些刚度之间的相位已考虑在内。使用拉格朗日公式,可以得出运动方程。从系统的特征值问题出发,研究了行星数目和位置的影响,以及陀螺现象对CPGT自由振动的影响。自然模式分为三类:平移(载体,环1和太阳具有纯模态平移挠度,不旋转),旋转(载体,环1和太阳具有纯模态旋转挠度,不平移)和行星的模态(只有行星具有模态偏转)。已经发现,行星角位置的变化不影响该分类。另一方面,对载体转速影响的研究表明,陀螺效应将重复的平移模式分离为不同的模式。为了避免导致不希望的振动的关键操作条件,所获得的结果在设计过程中非常重要。 [出版物摘要]

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