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Sensitivity of General Compound Planetary Gear Natural Frequencies and Vibration Modes to Model Parameters

机译:通用复合行星齿轮自然频率和振动模式对模型参数的敏感性

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摘要

This paper studies sensitivity of compound planetary gear natural frequencies and vibration modes to system parameters. Based on a lumped parameter model of general compound planetary gears and their distinctive modal properties [1], the eigensensitivities to inertias and stiffnesses are calculated and expressed in compact formulae. Analysis reveals that eigenvalue sensitivities to stiffness parameters are directly proportional to modal strain energies, and eigenvalue sensitivities to inertia parameters are proportional to modal kinetic energies. Furthermore, the eigenvalue sensitivities to model parameters are determined by inspection of the modal strain and kinetic energy distributions. This provides an effective way to identify those parameters with the greatest impact on tuning certain natural frequencies. The present results, combined with the modal properties of general compound planetary gears, show that rotational modes are independent of translational bearing/shaft stiffnesses and masses of carriers/central gears, translational modes are independent of torsional bearing/shaft stiffnesses and moment of inertias of carriers/central gears, and planet modes are independent of all system parameters of other planet sets, the shaft/bearing stiffness parameters of carriers/rings, and the mass/moment of inertia parameters of carriers/central gears.
机译:本文研究了复合行星齿轮固有频率和振动模式对系统参数的敏感性。基于一般复合行星齿轮的集总参数模型及其独特的模态特性[1],计算出了对惯性和刚度的本征敏感性,并以紧凑的公式表示。分析表明,刚度参数的特征值灵敏度与模态应变能成正比,而惯性参数的特征值灵敏度与模态动能成正比。此外,通过检查模态应变和动能分布来确定对模型参数的特征值敏感性。这提供了一种有效的方式来识别那些对调谐某些固有频率影响最大的参数。目前的结果,结合一般复合行星齿轮的模态特性,表明旋转模式与平移轴承/轴刚度和齿轮架/中心齿轮的质量无关,平移模式与扭转轴承/轴刚度和惯性矩无关。行星架/中心齿轮和行星模式与其他行星集的所有系统参数,行星架/环的轴/轴承刚度参数以及行星架/中心齿轮的惯性质量/力矩无关。

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