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首页> 外文期刊>Journal of Sound and Vibration >Sensitivity of planetary gear natural frequencies and vibration modes to model parameters
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Sensitivity of planetary gear natural frequencies and vibration modes to model parameters

机译:行星齿轮固有频率和振动模式对模型参数的敏感性

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The natural frequency and vibration mode sensitivities to system parameters are rigorously investigated for both tuned (cyclically symmetric) and mistuned planetary gears. Parameters under consideration include support and mesh stiffnesses, component masses, and moments of inertia. Using the well-defined vibration mode properties of tuned planetary gears, the eigensensitivities are calculated and expressed in simple, exact formulae. These formulae connect natural frequency sensitivity with the modal strain or kinetic energy and provide efficient means to determine the sensitivity to all stiffness and inertial parameters by inspection of the modal energy distribution. The natural frequency sensitivity to operating speed is calculated to estimate the impact of gyroscopic effects. While the terminology of planetary gears is used throughout, the results apply for general epicyclic gears.
机译:对于调谐(周期性对称)和微调行星齿轮,都严格研究了固有频率和振动模式对系统参数的敏感性。考虑的参数包括支撑和网格刚度,组件质量以及惯性矩。使用已调谐行星齿轮的明确定义的振动模式特性,可以计算本征灵敏度并以简单,精确的公式表示。这些公式将固有频率灵敏度与模态应变或动能联系起来,并提供了一种有效的方法,可以通过检查模态能量分布来确定对所有刚度和惯性参数的灵敏度。计算出对运行速度的固有频率敏感性,以估算陀螺效应的影响。尽管行星齿轮始终使用术语,但结果适用于一般行星齿轮。

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