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首页> 外文期刊>Journal of Sound and Vibration >Planetary gear modal vibration experiments and correlation against lumped-parameter and finite element models
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Planetary gear modal vibration experiments and correlation against lumped-parameter and finite element models

机译:行星齿轮模态振动实验及其与集总参数和有限元模型的相关性

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摘要

Experimental modal analysis techniques are applied to characterize the planar dynamic behavior of two spur planetary gears. Rotational and translational vibrations of the sun gear, carrier, and planet gears are measured. Experimentally obtained natural frequencies, mode shapes, and dynamic response are compared to the results from lumped-parameter and finite element models. Two qualitatively different classes of mode shapes in distinct frequency ranges are observed in the experiments and confirmed by the lumped-parameter model, which considers the accessory shafts and fixtures in the system to capture all of the natural frequencies and modes. The finite element model estimates the high-frequency modes that have significant tooth mesh deflection without considering the shafts and fixtures. The lumped-parameter and finite element models accurately predict the natural frequencies and modal properties established by experimentation. Rotational, translational, and planet mode types presented in published mathematical studies are confirmed experimentally. The number and types of modes in the low-frequency and high-frequency bands depend on the degrees of freedom in the central members and planet gears, respectively. The accuracy of natural frequency prediction is improved when the planet bearings have differing stiffnesses in the tangential and radial directions, consistent with the bearing load direction.
机译:实验模态分析技术用于表征两个正齿轮行星齿轮的平面动力学行为。测量太阳齿轮,行星架和行星齿轮的旋转和平移振动。将实验获得的固有频率,模式形状和动态响应与集总参数模型和有限元模型的结果进行比较。在实验中观察到了两种在不同频率范围内的定性不同类型的模式形状,并通过集总参数模型进行了确认,集总参数模型考虑了系统中的辅助轴和固定装置以捕获所有固有频率和模式。有限元模型可估算出具有明显齿孔挠度的高频模式,而无需考虑轴和固定装置。集总参数和有限元模型可以准确预测通过实验建立的固有频率和模态特性。实验证实了已发表的数学研究中提出的旋转,平移和行星模式类型。低频和高频频带中模式的数量和类型分别取决于中央构件和行星齿轮的自由度。当行星轴承在切线方向和径向方向上具有与轴承载荷方向一致的刚度时,自然频率预测的准确性将得到提高。

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