TY - JOUR
T1 - Dynamic analysis of three-point angular contact ball bearing under variable-load conditions
AU - Guo, Siqi
AU - Wang, Wenzhong
AU - Liang, He
AU - Zhang, Haibo
N1 - Publisher Copyright:
© 2026 Elsevier Ltd.
PY - 2026/11
Y1 - 2026/11
N2 - As a critical component in dual-rotor aero-engines, the three-point angular contact ball bearing (TPACBB) with an arch-profiled inner ring offers superior axial load capacity and stiffness under complex flight maneuvers, yet its dynamic behavior under transient loads remains a key concern for both performance and service life. This study investigates the dynamic response of TPACBB under time-varying axial loads. A dynamic model integrating modified Hertzian contact theory and elastohydrodynamic lubrication principles is developed to analyze dynamic responses and transient contact-state transitions among single-, double-, and triple-point contact patterns. Results show that short load-variation periods intensify dynamic shocks and contact force fluctuations, whereas longer periods improve stability. Rotational and orbital speeds exhibit significant response hysteresis, with greater differences between pre- and post-load contact states prolonging recovery time. Loading processes induce stronger fluctuations and faster state transitions compared to unloading. When contact states remain similar before and after load changes, dynamic disturbances are minimal. These findings provide valuable guidance for optimizing performance of TPACBB under transient operating conditions.
AB - As a critical component in dual-rotor aero-engines, the three-point angular contact ball bearing (TPACBB) with an arch-profiled inner ring offers superior axial load capacity and stiffness under complex flight maneuvers, yet its dynamic behavior under transient loads remains a key concern for both performance and service life. This study investigates the dynamic response of TPACBB under time-varying axial loads. A dynamic model integrating modified Hertzian contact theory and elastohydrodynamic lubrication principles is developed to analyze dynamic responses and transient contact-state transitions among single-, double-, and triple-point contact patterns. Results show that short load-variation periods intensify dynamic shocks and contact force fluctuations, whereas longer periods improve stability. Rotational and orbital speeds exhibit significant response hysteresis, with greater differences between pre- and post-load contact states prolonging recovery time. Loading processes induce stronger fluctuations and faster state transitions compared to unloading. When contact states remain similar before and after load changes, dynamic disturbances are minimal. These findings provide valuable guidance for optimizing performance of TPACBB under transient operating conditions.
KW - Dynamics model
KW - Multi-point contact
KW - Three-point angular contact ball bearing
KW - Variable-load condition
UR - https://www.scopus.com/pages/publications/105040129049
U2 - 10.1016/j.triboint.2026.112231
DO - 10.1016/j.triboint.2026.112231
M3 - Article
AN - SCOPUS:105040129049
SN - 0301-679X
VL - 223
JO - Tribology International
JF - Tribology International
M1 - 112231
ER -