Research on the dynamic performance of double-helical planetary gear transmission under friction and wear

Yun Wang, Wei Yang, Xiaolin Tang
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Abstract

In this paper, the main research is to investigate the effects of mechanical, friction, temperature, and tooth wear on the dynamic performance of a double-helical planetary gear transmission system. To achieve this, a new lumped parameters model is presented, which combines dynamics and lubrication. The model allows for the study of excitation effects and considers various parameters such as material, lubricating oil, and working conditions. By proposing a multi-source excitation calculation method, the paper provides a novel approach that has not been reported in the existing literature. Additionally, the paper establishes a tooth wear model and a lubrication model for the double-helical gear pair. It shows that under constant torque, the displacement and acceleration amplitudes of the system initially decrease and then increase with increasing input speed. Under constant speed, the displacement and acceleration amplitudes increase with increasing torque. Amplitudes decrease during running-in wear, increase in stable wear, and rapidly increase in severe wear. Boundary lubrication minimizes vibration, while elastohydrodynamic lubrication maximizes it.
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摩擦和磨损条件下的双螺旋行星齿轮传动动态性能研究
本文主要研究机械、摩擦、温度和齿面磨损对双螺旋行星齿轮传动系统动态性能的影响。为此,本文提出了一个新的组合参数模型,该模型结合了动力学和润滑学。该模型可研究激励效应,并考虑材料、润滑油和工作条件等各种参数。通过提出一种多源激励计算方法,本文提供了一种现有文献中尚未报道的新方法。此外,论文还建立了双螺旋齿轮副的齿磨损模型和润滑模型。结果表明,在恒定扭矩下,系统的位移和加速度振幅最初减小,然后随着输入速度的增加而增大。在恒定速度下,位移和加速度振幅随扭矩的增加而增大。振幅在磨合期减小,在稳定磨损期增大,在严重磨损期迅速增大。边界润滑使振动最小,而弹性流体动力润滑则使振动最大。
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