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NON-LINEAR DYNAMIC SIMULATION OF GEAR RESPONSE UNDER THE IDLING CONDITION

机译:怠速工况下齿轮响应的非线性动力学模拟

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摘要

A dynamic lumped-parameter gear model incorporating the effects of a time-varying and asymmetric mesh stiffness and a backlash nonlinearity is formulated to analyze the spur gear rattle response under the idling condition. The proposed theory assumes a rectangular time-varying mesh stiffness function. The phase shift between the mesh stiffness for forward and backward contacts is examined. Numerical studies are employed to examine the effects of engine torque fluctuations and tooth surface friction on the gear rattle response and the corresponding tooth impact behavior. Comparisons between the results from the time-invariant mesh stiffness model and the proposed time-varying mesh stiffness model reveal differences in the gear responses, especially when the mean rotational speed of the fluctuating gear pair is non-zero. The analysis reveals significant effects on the high frequency response components. However, the idling gear dynamics are relatively insensitive to tooth surface friction.
机译:建立了集总时变和非对称啮合刚度和反冲非线性效应共同作用的动态集总参数齿轮模型,以分析正齿轮在空转条件下的颤动响应。所提出的理论假设矩形时变网格刚度函数。检查了向前和向后接触的网格刚度之间的相移。数值研究被用来检查发动机扭矩波动和齿面摩擦对齿轮嘎嘎声响应和相应的齿冲击行为的影响。时不变啮合刚度模型的结果与所提出的时变啮合刚度模型的结果之间的比较揭示了齿轮响应的差异,尤其是当波动齿轮对的平均转速非零时。分析揭示了对高频响应成分的重大影响。然而,空转齿轮动力学对齿表面摩擦相对不敏感。

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