首页> 外文会议>Society for Machinery Failure Prevention Technology Meeting; 20050418-21; Virginia Beach,VA(US) >CLUTCH SYSTEM REMAINING USEFUL LIFE PREDICTION USING WEAR AND DYNAMIC MODELING EFFECTS
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CLUTCH SYSTEM REMAINING USEFUL LIFE PREDICTION USING WEAR AND DYNAMIC MODELING EFFECTS

机译:利用磨损和动态建模效果保留有用寿命的离合器系统

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摘要

A model-based technique is presented for Remaining Useful Life (RUL) prediction of highly dynamic, high power dry clutch systems that combines physics-based simulation and wear prediction models. Primary load and engagement shear drivers (i.e., torque, speed, clutch surface temperature) are modeled using a first principle approach. An extension of Archard's law is presented in which life usage is predicted using multiple stochastic models to determine a wear coefficient for each applicable wear mechanism. The models consider the physical wear process, including debris particle and protective layer formation, using parameters such as surface roughness, particle size, and surface temperature. These stochastic variables are evaluated in a probabilistic framework using statistical methods, such as Monte Carlo Simulation and importance sampling, that consider both measurement and modeling uncertainty. Confidence interval prognostic results are provided to predict the RUL of the clutch throughout its limited life in near-real time.
机译:提出了一种基于模型的技术,用于将高动态,高功率的干式离合器系统的剩余使用寿命(RUL)预测结合了基于物理的模拟和磨损预测模型。使用第一原理方法对主要载荷和接合剪切驱动器(即扭矩,速度,离合器表面温度)进行建模。提出了阿卡德定律的扩展,其中使用多个随机模型预测使用寿命,以确定每种适用的磨损机理的磨损系数。这些模型使用诸如表面粗糙度,粒度和表面温度等参数来考虑物理磨损过程,包括碎屑颗粒和保护层的形成。这些随机变量在概率框架中使用统计方法进行评估,例如蒙特卡洛模拟和重要性抽样,这些方法同时考虑了测量和建模不确定性。提供了置信区间预测结果,以预测离合器在整个有限使用寿命内的近实时RUL。

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