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Predicting Friction of Tapered Roller Bearings with Detailed Multi-Body Simulation Models
by
Sauer, Bernd
, Koch, Oliver
, Maccioni, Lorenzo
, Wingertszahn, Patrick
, Concli, Franco
in
Analysis
/ Axial loads
/ Axial stress
/ Bearings
/ dynamic simulation
/ Friction
/ Geometry
/ Kinematics
/ Lubricants
/ Lubricants & lubrication
/ multi body simulation
/ Multibody systems
/ Prediction theory
/ Pressure distribution
/ Roller bearings
/ rolling bearing
/ Simulation
/ Simulation methods
/ Simulation models
/ Taper roller bearings
/ tapered roller bearings
/ Torque
/ tribology
/ Velocity
2023
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Predicting Friction of Tapered Roller Bearings with Detailed Multi-Body Simulation Models
by
Sauer, Bernd
, Koch, Oliver
, Maccioni, Lorenzo
, Wingertszahn, Patrick
, Concli, Franco
in
Analysis
/ Axial loads
/ Axial stress
/ Bearings
/ dynamic simulation
/ Friction
/ Geometry
/ Kinematics
/ Lubricants
/ Lubricants & lubrication
/ multi body simulation
/ Multibody systems
/ Prediction theory
/ Pressure distribution
/ Roller bearings
/ rolling bearing
/ Simulation
/ Simulation methods
/ Simulation models
/ Taper roller bearings
/ tapered roller bearings
/ Torque
/ tribology
/ Velocity
2023
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Predicting Friction of Tapered Roller Bearings with Detailed Multi-Body Simulation Models
by
Sauer, Bernd
, Koch, Oliver
, Maccioni, Lorenzo
, Wingertszahn, Patrick
, Concli, Franco
in
Analysis
/ Axial loads
/ Axial stress
/ Bearings
/ dynamic simulation
/ Friction
/ Geometry
/ Kinematics
/ Lubricants
/ Lubricants & lubrication
/ multi body simulation
/ Multibody systems
/ Prediction theory
/ Pressure distribution
/ Roller bearings
/ rolling bearing
/ Simulation
/ Simulation methods
/ Simulation models
/ Taper roller bearings
/ tapered roller bearings
/ Torque
/ tribology
/ Velocity
2023
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Predicting Friction of Tapered Roller Bearings with Detailed Multi-Body Simulation Models
Journal Article
Predicting Friction of Tapered Roller Bearings with Detailed Multi-Body Simulation Models
2023
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Overview
In the presented work, a parametric multibody simulation model is presented that is capable of predicting the friction torque and kinematics of tapered roller bearings. For a highly accurate prediction of bearing friction, consideration of solid and lubricant friction is mandatory. For tapered roller bearings in particular, the friction in the contact between the rolling element and raceway is of importance. Friction forces in the contact between the rolling element end face and inner ring rib as well as roller cage pocket contacts are also considered in the model. A large number of tests were carried out to validate the model in terms of the simulated frictional torque. Influencing variables such as speed, axial load, radial load, and temperature were investigated. The simulation results show good agreement with the measured friction torque, which confirms that the model is well suited to predict frictional torques and therefore the kinematics of tapered roller bearings.
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