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Effects of the gear eccentricities on the dynamic performance of a planetary gear set

机译:齿轮偏心对行星齿轮组动态性能的影响

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摘要

Gear eccentricities are one of the practical types of the manufacturing errors that affect the dynamic performance of a planetary gear train (PGT). Previous research about the effects of the gear eccentricities is abundant, and many of them focus on the parallel shaft gear set. However, almost none of them have considered the influence of the gear eccentricities on the mesh stiffness. In fact, the existence of the gear eccentricities can change the center distance and the mesh positions of a meshing gear pair, which will directly affect the mesh stiffness. Situation can be even more complex for the PGT with either sun gear eccentricities or planet gear eccentricities or both of them. Based on that, a new dynamic model of a PGT with gear eccentricities is established. The planar motions of the PGT and the mesh stiffness are integrated and solved simultaneously where the mesh stiffness is determined by the actual mesh positions of the meshing gear pair. The mesh stiffness is calculated by the energy potential method. The time-varying center distance caused by the gear eccentricities is also considered, which can result in the change of line of action, pressure angle, contact ratio and mesh positions. The influence of gear eccentricities on the dynamic performance of a 4-planet PGT is studied. Some useful results are derived at last.
机译:齿轮偏心是影响行星齿轮系(PGT)动态性能的制造误差的实用类型之一。以前关于齿轮偏心效果的研究是丰富的,并且它们中的许多聚焦在平行轴齿轮组上。然而,几乎没有一个人已经考虑了齿轮偏心对网状刚度的影响。实际上,齿轮偏心的存在可以改变啮合齿轮对的中心距离和网状位置,这将直接影响网状刚度。 PGT的情况对于具有太阳齿轮偏心或行星齿轮偏心或它们的偏心形状或两者来说,这种情况甚至更复杂。基于此,建立了具有齿轮偏心的PGT的新动态模型。 PGT和网状刚度的平面运动同时整合和解决,其中网格刚度由啮合齿轮对的实际网状位置确定。网格刚度是通过能量电位方法计算的。还考虑由齿轮偏心引起的时变中心距离,这可能导致动作线,压力角,接触比和网状位置的变化。研究了齿轮偏心对4行星PGT的动态性能的影响。一些有用的结果终于衍生出来。

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