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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Modeling and simulation of the engagement dynamics of a wet friction clutch system subjected to degradation: An application to condition monitoring and prognostics
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Modeling and simulation of the engagement dynamics of a wet friction clutch system subjected to degradation: An application to condition monitoring and prognostics

机译:退化的湿式摩擦离合器系统啮合动力学的建模和仿真:在状态监测和预测中的应用

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摘要

In this paper, a friction model appropriate for wet friction clutches based on the extension of the Generalized Maxwell Slip (GMS) friction model is integrated to a four-DOF lumped-mass-spring-damper system which represents a typical SAE#2 test setup. Degradation models expressing the evolutions of the friction model parameters are also proposed, where the structure of the degradation models is inspired from experimental results obtained in the earlier work. This way, the engagement dynamics of the clutch system during the useful lifetime can be simulated. It appears that the previously developed pre-and postlockup features extracted from the simulated signals obtained in this study are qualitatively in agreement with the experimental results. Those features show their predictive behaviors that confirm their feasibility to be used for clutch monitoring and prognostics. Furthermore, the models and simulation procedure discussed in this paper can be employed for developing and evaluating prognostics algorithms for wet friction clutch applications.
机译:在本文中,基于广义麦克斯韦滑移(GMS)摩擦模型的扩展,适用于湿式摩擦离合器的摩擦模型已集成到代表典型SAE#2测试设置的四自由度集总质量弹簧阻尼器系统中。还提出了表示摩擦模型参数演变的退化模型,其中退化模型的结构是从早期工作中获得的实验结果启发而来的。这样,可以模拟离合器系统在使用寿命期间的接合动力学。看来,从本研究中获得的模拟信号中提取的先前开发的锁定前和锁定后特征在质量上与实验结果一致。这些功能显示了其预测行为,从而证实了其可用于离合器监测和预测的可行性。此外,本文讨论的模型和仿真程序可用于开发和评估湿式摩擦离合器应用的预测算法。

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