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Machine-Learning-Based Wear Prediction in Journal Bearings under Start–Stop Conditions

Florian König, Florian Wirsing, Ankit Singh, Georg Jacobs

2024Lubricants16 citationsDOIOpen Access PDF

Abstract

The present study aims to efficiently predict the wear volume of a journal bearing under start–stop operating conditions. For this purpose, the wear data generated with coupled mixed-elasto-hydrodynamic lubrication (mixed-EHL) and a wear simulation model of a journal bearing are used to develop a neural network (NN)-based surrogate model that is able to predict the wear volume based on the operational parameters. The suitability of different time series forecasting NN architectures, such as Long Short-Term Memory (LSTM), Gated Recurrent Unit (GRU), and Nonlinear Autoregressive with Exogenous Inputs (NARX), is studied. The highest accuracy is achieved using the NARX network architectures.

Topics & Concepts

Process engineeringComputer scienceMaterials scienceEngineeringForensic engineeringArtificial intelligenceEnvironmental scienceGear and Bearing Dynamics AnalysisTribology and Lubrication EngineeringLubricants and Their Additives