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PARAMETRIC INSTABILITY IN PLANETARY GEARS WITH FREQUENCY-MODULATED TIME-VARYING MESH STIFFNESS

机译:时变网变刚度的行星齿轮参数不稳定性

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A rotational model of planetary gears is developed which incorporates mesh stiffness variation and input speed fluctuations. Gear mesh stiffness is approximated by rectangle wave and different harmonic orders are considered. Because of speed fluctuations, the mesh stiffness is frequency modulated. The parametric instability associated with frequency-modulated time-varying stiffness is numerically investigated. The operating conditions leading to parametric instability are identified using Floquet theory and numerical integration. Whether the general laws derived for steady speed to suppress particular instabilities are applicable for fluctuating speed is verified. The effects of speed fluctuations on parametric instability are examined.
机译:建立了行星齿轮的旋转模型,该模型包含了啮合刚度变化和输入速度波动。齿轮啮合刚度用矩形波近似,并考虑了不同的谐波次数。由于速度波动,对网格刚度进行了频率调制。数值研究了与频率调制时变刚度相关的参数不稳定性。使用Floquet理论和数值积分来识别导致参数不稳定的运行条件。验证了为抑制特定不稳定性而为稳定速度导出的一般规律是否适用于速度波动。检查了速度波动对参数不稳定性的影响。

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