TY - JOUR
T1 - Thermal-mechanical coupled interaction of angular contact ball bearing considering combined deformation
AU - Zhang, Xiaohong
AU - Zhao, Dan
AU - Ma, Shuaijun
AU - Zhang, Xinzhuo
AU - Yan, Ke
N1 - Publisher Copyright:
© 2025 The Authors
PY - 2025/12
Y1 - 2025/12
N2 - A comprehensive thermo-mechanical approach is proposed through an iterative closed-loop process combing simulations and experiments. Coupled deformation induced by speed, temperature, and load, updates the bearing's mechanical model via deformation-displacement relationship between raceway and ball centers. Frictional heat and thermal resistances are calculated. A multi-node thermal network is developed to capture transient thermal and dynamic behaviors. Validation with a 7014 bearing confirms accuracy. Simulations reveal that speed and axial load are the primary factors, causing non-linear increases in heat generation and temperature, with spin friction being the dominant heat source. Moreover, radial and moment loads thermally exacerbate the ball-outer raceway squeezing phenomena reducing load-carrying capacity. The complex influence of structural parameters highlights the importance of thoughtful design for reliable operation.
AB - A comprehensive thermo-mechanical approach is proposed through an iterative closed-loop process combing simulations and experiments. Coupled deformation induced by speed, temperature, and load, updates the bearing's mechanical model via deformation-displacement relationship between raceway and ball centers. Frictional heat and thermal resistances are calculated. A multi-node thermal network is developed to capture transient thermal and dynamic behaviors. Validation with a 7014 bearing confirms accuracy. Simulations reveal that speed and axial load are the primary factors, causing non-linear increases in heat generation and temperature, with spin friction being the dominant heat source. Moreover, radial and moment loads thermally exacerbate the ball-outer raceway squeezing phenomena reducing load-carrying capacity. The complex influence of structural parameters highlights the importance of thoughtful design for reliable operation.
KW - Angular contact ball bearing
KW - Dynamic characteristics
KW - Temperature prediction
KW - Thermal deformation
KW - Thermal-mechanical coupled interaction
UR - https://www.scopus.com/pages/publications/105011029704
U2 - 10.1016/j.triboint.2025.110994
DO - 10.1016/j.triboint.2025.110994
M3 - 文章
AN - SCOPUS:105011029704
SN - 0301-679X
VL - 212
JO - Tribology International
JF - Tribology International
M1 - 110994
ER -