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A vectorial method has been developed to solve the quasi-static equilibrium in angular contact b... more A vectorial method has been developed to solve the quasi-static equilibrium in angular contact ball bearings. The effects induced by the centrifugal forces, gyroscopic moments and misalignments between bearing’s rings were considered.
The lubricant parameters, traction forces and fluid drag action on balls and raceways were further included in a quasi-dynamic model.
For similar working parameters the numerical data obtained by computer simulations are in good agreement with data presented in literature.
An experimental study has been further carried out to validate the quasi-dynamic model when a certain degree of misalignment exists between the inner and outer rings of the bearing.
Both numerical simulation and experimental measurements emphasized the major contribution of the rings misalignment upon the bearing power loss.
A vectorial method has been developed to solve the quasi-static equilibrium in angular contact b... more A vectorial method has been developed to solve the quasi-static equilibrium in angular contact ball bearings. The effects induced by the centrifugal forces, gyroscopic moments and misalignments between bearing’s rings were considered.
The lubricant parameters, traction forces and fluid drag action on balls and raceways were further included in a quasi-dynamic model.
For similar working parameters the numerical data obtained by computer simulations are in good agreement with data presented in literature.
An experimental study has been further carried out to validate the quasi-dynamic model when a certain degree of misalignment exists between the inner and outer rings of the bearing.
Both numerical simulation and experimental measurements emphasized the major contribution of the rings misalignment upon the bearing power loss.