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Effects of oil film stiffness and damping on spur gear dynamics

机译:油膜刚度和阻尼对正齿轮动力学的影响

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摘要

An enhanced spur gear dynamic model considering the combined stiffness and damping of both gear tooth and oil film is established. To acquire the combined stiffness and damping involved in the modified dynamics equations, Ishikawa formulas are adopted to calculate the gear mesh stiffness, and given the viscous-elastic oil film in elastohydrodynamic lubrication line contact equivalent to massless spring and damping elements, the models of oil film stiffness and damping in normal and tangential directions are then developed. The combined stiffness is deduced from the stiffness of both the gear tooth and oil film, while the combined damping is derived from the damping of these parts. Effects of oil film stiffness and damping on the gear dynamics are investigated, and the dynamic response of the developed model is in contrast to that of the conventional model. The results show that by utilizing the enhanced dynamic model, the displacement fluctuation in transient stage fast decays and displacement response reaches steady state faster. The speed and acceleration fluctuations in the period converting from transient to steady stages are obviously reduced, and the response curves of speed and acceleration in steady stage are smoother. Moreover, the oil film normal damping plays large role in the gear periodic motion. This indicates that the oil film stiffness is prone to effectively alleviate impact and the oil film damping is inclined to substantially reduce vibration and frictional heat for a gear drive.
机译:建立了考虑齿轮齿和油膜的组合刚度和阻尼的增强的正齿轮动态模型。为了获得改性动力学方程中涉及的组合刚度和阻尼,采用石川公式来计算齿轮网刚度,并给予弹性流动动力学润滑线接触的粘性弹性油膜,其油的型号为油然后开发了薄膜刚度和阻尼正常和切线方向。组合刚度从齿轮齿和油膜的刚度推导,而组合阻尼源于这些部件的阻尼。研究了油膜刚度和阻尼对齿轮动力学的影响,与传统模型的动态响应与传统模型相反。结果表明,通过利用增强的动态模型,瞬态级快速衰减和位移响应的位移波动更快地达到稳定状态。从瞬态到稳定阶段转换的时段中的速度和加速波动明显减少,稳定阶段的速度和加速度的响应曲线更平滑。此外,油膜正常阻尼在齿轮周期运动中起着很大的作用。这表明油膜刚度易于有效缓解撞击,并且油膜阻尼倾向于基本上减小齿轮驱动的振动和摩擦热。

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