Research on dynamic and wear prediction models of compound planetary transmission systems

Jing Sun, Wei Cao, Zhao-Hui Han, Yifan Wang, Letian Ding, Zhiyang Cao, Dong Wang
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Abstract

Under high speeds and heavy loads, gear tooth surfaces will be worn, which will lead to accidents. The current wear prediction model is not comprehensive, but the wear prediction model that considers the temperature field and dynamic response can provide more accurate gear wear fault early warning than previous methods. Therefore, according to the Archard model, the discrete wear prediction model of the tooth surface is deduced in this paper, and the wear evolution trend of the tooth surface is predicted and analyzed in each operation stage. The tooth surface temperature field was simulated by the finite-element method, and the tooth surface wear prediction model was improved considering its influence on materials. In addition, the dynamic model of the compound planetary transmission system was established, and the wear prediction model was improved again by using its nonlinear meshing force. Finally, the tooth wear prediction model under the interaction of the dynamic response and temperature field was obtained. A wear measurement method based on duplicate adhesive film was proposed. The wear evolution trend along the tooth length direction and the tooth width direction were measured, and the accuracy of the wear prediction model was verified. The results show that the wear depth along the tooth width direction is larger in the middle part and smaller on both sides under the influence of temperature. After the interference of the dynamic response, the wear depth along the tooth rectangle fluctuates, which is very similar to the results of the theoretical prediction model. It provides a theoretical basis for the early warning of gear health status in practical engineering.
复合行星传动系统的动态和磨损预测模型研究
在高速和重载情况下,齿轮齿面将会磨损,从而导致事故。目前的磨损预测模型并不全面,但考虑温度场和动态响应的磨损预测模型能比以往的方法提供更准确的齿轮磨损故障预警。因此,本文根据 Archard 模型,推导出齿面离散磨损预测模型,并预测和分析齿面在各运行阶段的磨损演变趋势。采用有限元法模拟了齿面温度场,并考虑了齿面磨损对材料的影响,改进了齿面磨损预测模型。此外,还建立了复合行星传动系统的动态模型,并利用其非线性啮合力再次改进了磨损预测模型。最后,得到了动态响应和温度场相互作用下的轮齿磨损预测模型。提出了一种基于重复胶膜的磨损测量方法。测量了沿齿长方向和齿宽方向的磨损演变趋势,验证了磨损预测模型的准确性。结果表明,在温度的影响下,沿齿宽方向的磨损深度中间部分较大,两侧较小。在动态响应干扰后,沿齿矩形方向的磨损深度出现波动,这与理论预测模型的结果非常相似。这为实际工程中齿轮健康状况的预警提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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