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Prediction of the vibroacoustic response of an electric window-lift gear motor

机译:预测电动窗升齿轮电动机的纵传响应

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摘要

A numerical approach is proposed for analyzing the vibroacoustic behavior of an electric window-lift gear motor and differentiating the different excitation sources. These ones correspond to the normal electromagnetic forces applied to steel stator, the electromagnetic input torque fluctuation, the rotor mechanical imbalance, the worm gear static transmission error and mesh stiffness fluctuations and the gear wheel eccentricity. The computing of the vibroacoustic response is performed using an iterative spectral method. Spectrograms of the dynamic response show components corresponding to the harmonics of the excitation spectra as well as a frequency enrichment generated by the coupling between the mesh stiffness fluctuation and the other driveline excitation sources. Finally, the contributions of the different excitation sources to the spatial average of the mean square velocity of the radiating surface and the equivalent global dynamic force transmitted to the supporting structure are compared.
机译:提出了一种用于分析电动窗升齿轮电动机的纵岩行为并区分不同的激励源的数值方法。这些对应于施加到钢定子的正常电磁力,电磁输入扭矩波动,转子机械不平衡,蜗轮静态透射误差和网状刚度波动和齿轮偏心。使用迭代光谱法进行vibro声响响应的计算。动态响应的谱图显示了与激发光谱的谐波的组件以及由网格刚度波动和其他传动系激源之间的耦合产生的频率富集。最后,比较了不同的激励源对辐射表面的平均平均速度的空间平均值和传递到支撑结构的等效全局动态力的贡献。

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