TY - JOUR
T1 - Dynamic modeling of rolling ball bearing with localized surface defects considering three dimensional motions and relative slippage
AU - Niu, Linkai
AU - Cao, Hongrui
AU - He, Zhengjia
N1 - Publisher Copyright:
© 2015 Journal of Mechanical Engineering.
PY - 2015/10/5
Y1 - 2015/10/5
N2 - Vibration responses and kinematic parameters when a ball rolls over and impacts with a localized surface defect can provide efficient inputs and theoretical foundations for bearing fatigue analysis and fault diagnosis. A dynamic model for rolling ball bearings with localized defects is proposed based on GUPTA model. In this model, every bearing component (i.e., rolling ball, inner raceway and outer raceway) has 6 degrees of freedom. Relative slippage and lubricant traction are also considered. Moreover, defects are modeled completely with consideration of additional clearance due to material absence, changes of Hertzian contact stiffness and changes of contact force directions. The relationships between bearing accelerations and impact forces at balls and defects are analyzed. Furthermore, the effects of the shaft speed and the defect width on bearing vibrations are investigated. The simulation results show that, because the relative slippage and the impact force effect are all considered, the proposed model is capable of simulating the dynamic characteristics of rolling ball bearings with surface defects more reasonable and providing valuable conclusions for fatigue analysis and quantitive diagnosis of rolling ball bearings.
AB - Vibration responses and kinematic parameters when a ball rolls over and impacts with a localized surface defect can provide efficient inputs and theoretical foundations for bearing fatigue analysis and fault diagnosis. A dynamic model for rolling ball bearings with localized defects is proposed based on GUPTA model. In this model, every bearing component (i.e., rolling ball, inner raceway and outer raceway) has 6 degrees of freedom. Relative slippage and lubricant traction are also considered. Moreover, defects are modeled completely with consideration of additional clearance due to material absence, changes of Hertzian contact stiffness and changes of contact force directions. The relationships between bearing accelerations and impact forces at balls and defects are analyzed. Furthermore, the effects of the shaft speed and the defect width on bearing vibrations are investigated. The simulation results show that, because the relative slippage and the impact force effect are all considered, the proposed model is capable of simulating the dynamic characteristics of rolling ball bearings with surface defects more reasonable and providing valuable conclusions for fatigue analysis and quantitive diagnosis of rolling ball bearings.
KW - Dynamic model
KW - Localized surface defect
KW - Quantitive diagnosis
KW - Rolling bearing
UR - https://www.scopus.com/pages/publications/84947064166
U2 - 10.3901/JME.2015.19.053
DO - 10.3901/JME.2015.19.053
M3 - 文章
AN - SCOPUS:84947064166
SN - 0577-6686
VL - 51
SP - 53
EP - 59
JO - Jixie Gongcheng Xuebao/Chinese Journal of Mechanical Engineering
JF - Jixie Gongcheng Xuebao/Chinese Journal of Mechanical Engineering
IS - 19
ER -