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Advances in Bearing Lubrication and Thermodynamics 2023

Advances in Bearing Lubrication and Thermodynamics 2023

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Bearings are currently the most widely used mechanical component. In the process of high-speed and heavy-load operation, friction and heat generate between the rolling elements, cages, and rings. At this time, lubrication technology is integral to reducing friction and wear, facilitating heat dissipation, and extending the bearings’ life. In the last century, important research on bearing thermal analysis and corresponding lubrication technologies has been conducted. However, as the bearing speeds continue to increase, complex operation conditions pose more challenges to bearing thermal analysis. At the same time, the continuous cross-fusion of materials, sensors, big data, and emerging technologies has enabled the continuous improvement of bearing lubrication technology. This Reprint is aimed at the latest developments centered around the thermal mechanisms and lubrication technology, as well as the effect of the bearings’ working parameters on their lubrication performance and thermal behavior.

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Keywords

  • Anand’s model
  • angular contact ball bearing
  • ball bearing
  • chaotic particle swarm optimization algorithm
  • CNCMT
  • CNN
  • collision characteristics
  • condition monitoring
  • data-level fusion
  • DenseNet network
  • Digital twin
  • double-row angular contact ball bearing
  • dual channel
  • dynamic model
  • eccentric drop
  • elastic
  • elastohydrodynamic lubrication (EHL)
  • entropy weighting
  • experimental data
  • experimental investigation
  • feature extraction
  • feature fusion
  • flexible structure
  • full ceramic ball bearing
  • gas foil thrust bearing
  • geometric interaction
  • impact load
  • informer
  • liquid-solid coupling
  • load capacity
  • LSTM
  • lubricant
  • Mathematical model
  • minimum film thickness
  • misaligned journal bearing
  • mixed lubrication
  • multi-source
  • nested iterative algorithm
  • nonlinear numerical prediction
  • nonlinear stiffness
  • numerical data
  • oil supply
  • osciliration experiment
  • parameter optimization
  • profile modification
  • Prony series
  • protective bearing
  • quasi dynamics
  • radiated noise
  • rolling bearing
  • roundness error
  • running-in method
  • sliding behavior
  • soft/hard spring stiffness characteristic
  • sound field distribution
  • spindle
  • subsynchronous vibrations
  • tapered roller bearing
  • temperature prediction
  • temperature rise
  • thermal characteristic
  • thermal equilibrium
  • thermal error
  • thermal network method
  • thermo-elastic-hydrodynamic
  • thick top foil
  • vertical magnetic levitation system
  • viscoelastic
  • viscosity

Links

DOI: 10.3390/books978-3-7258-1130-4

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