行星传动动力学中的随机过程

Tehnika Pub Date : 2023-01-01 DOI:10.5937/tehnika2302177k
R. Knežević, Branko Đedović, Marko Paić
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引用次数: 0

摘要

本文除了对具有随机和混沌过程可能性的耗散力学系统的非线性动力学进行理论分析外,还包括一个行星传动的数值实验实例。分析了行星齿轮作为一个系统运行时最常见的非线性效应及其对系统性能的影响。将行星齿轮作为一个耗散动力系统的简化模型考虑为一个复杂的动力学过程。这些操作效应可以以许多不同的方式出现,并且可以成为行星齿轮操作中的随机性的原因。对行星齿轮的润滑进行了数值分析,将其作为随机效应之一,其中湍流阻尼发生。由于油飞溅引起的湍流阻尼力与太阳齿轮角速度的二次幂成正比。实验表明,由于轨迹螺旋下降到某个奇点,系统的相空间不保持,系统是耗散的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On stochastic processes in the dynamics of planetary transmissions
In addition to the theoretical analysis of the nonlinear dynamics of dissipative mechanical systems with the possibility of stochastic and chaotic processes, the paper also includes a numerical experimental example of a planetary transmission. The most common non-linear effects of operation and their influence on the behavior of the planetary gear as a system were analyzed. A simplified model of planetary gears as dissipative dynamic systems whose operation is a complex dynamic process with different effects was considered. These operating effects can appear in many different ways and can be the cause of stochasticity in the operation of the planetary gear. A numerical analysis of planetary gear lubrication was made, as one of the effects of stochasticity, where turbulent damping occurs. The turbulent damping force, due to oil splashing, is taken to be proportional to the second power of the angular velocity of the sun gear. Based on the experiment, it is concluded that the phase space in this system is not preserved and the system is dissipative because the trajectories spiral down into a certain singularity.
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