首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Effect of flexible pin on the dynamic behaviors of wind turbine planetary gear drives
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Effect of flexible pin on the dynamic behaviors of wind turbine planetary gear drives

机译:柔性销对风力涡轮机行星齿轮传动动态特性的影响

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摘要

Flexible pins eliminate the need for straddle mounting, and therefore enable the maximum possible number of planets to be used for any particular epicyclic ratio of power transmission systems. Having more planet gears will significantly increase the input torque density. In this type of design, the pin stiffness and position tolerances are important parameters as they affect the dynamic performances significantly. The present study addresses this issue by modeling, the design of double cantilevered flexible pin, and analyzing the contributions of pin stiffness and misalignment applying the lumped parameter approach. The proposed model formulates the coupled lateral-torsional dynamic response of a planetary spur gear, including the effects of mesh stiffness and phasing as a function of pin error. The resultant equations of motion are applied to examine the effects of pin stiffness and position errors on the natural modes and structural dynamic response. The effects of pin stiffness on deviation of the tooth contact forces of the sun-planet and ring-planet gear pairs are analyzed to understand the relationship between mesh characteristic and input speed variations. The calculated supporting forces of the planet gear are examined to understand the load sharing characteristic due to pin errors, pin stiffness and input load of the power transmission system.
机译:柔性销消除了跨骑安装的需要,因此可以将最大数量的行星齿轮用于任何特定的行星传动比传动系统。拥有更多的行星齿轮将显着增加输入扭矩密度。在这种类型的设计中,销的刚度和位置公差是重要的参数,因为它们会显着影响动态性能。本研究通过建模,双悬臂柔性销的设计以及使用集总参数方法分析销刚度和未对准的影响来解决此问题。所提出的模型提出了行星正齿轮的横向扭转动态响应,包括啮合刚度和相位的影响作为销误差的函数。应用所得的运动方程式来检验销钉刚度和位置误差对自然模式和结构动力响应的影响。分析了销钉刚度对太阳行星齿轮和环形行星齿轮对的齿接触力偏差的影响,以了解啮合特性与输入速度变化之间的关系。检查行星齿轮的计算的支撑力,以了解由于销误差,销刚度和动力传输系统的输入负荷而引起的负荷分配特性。

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