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Dynamic load sharing characteristics and sun gear radial orbits of double-row planetary gear train

机译:双排行星齿轮系的动载荷分配特性和太阳轮径向轨道

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A new non-linear bending-torsional coupled model for double-row planetary gear set was proposed, and planet’s eccentricity error, static transmission error, and time-varying meshing stiffness were taken into consideration. The solution of differential governing equation of motion is determined by applying the Fourier series method. The behaviors of dynamic load sharing characteristics affected by the system parameters including gear eccentricities error, ring gear’s supporting stiffness, planet’s bearing stiffness, torsional stiffness of first stage carrier and input rotation rate were investigated qualitatively and systematically, and sun gear radial orbits at first and second stage were explored as well. Some theoretical results are summarized as guidelines for further research and design of double-row planetary gear train at last.
机译:提出了一种新的双排行星齿轮组非线性弯扭耦合模型,并考虑了行星的偏心误差,静态传递误差和时变啮合刚度。应用傅立叶级数法确定运动的微分控制方程的解。定性和系统地研究了受系统参数(包括齿轮偏心率误差,齿圈的支撑刚度,行星轴承的刚度,第一级行星架的扭转刚度和输入转速)影响的动载荷分配特性的行为,以及太阳轮的径向轨道第二阶段也进行了探讨。最后总结了一些理论结果,作为进一步研究和设计双列行星齿轮系的指导原则。

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