TY - JOUR
T1 - Investigation on dynamic behaviors of roller bearing in the planetary gear set under revolution-rotation coupled conditions
AU - Dong, Peng
AU - Zuo, Shumiao
AU - Lai, Junbin
AU - Xu, Xiangyang
AU - Liu, Yanfang
AU - Wang, Shuhan
N1 - Publisher Copyright:
© 2023 Elsevier Ltd
PY - 2024/2/15
Y1 - 2024/2/15
N2 - The planet bearing has become the component most likely to fail in the planetary gear set (PGS), especially for the revolution-rotation coupled (RRC) condition. However, the dynamics of the planet bearing in the PGS are still not revealed yet. To address it, this paper proposes a comprehensive dynamic model of the PGS, in which the gear mesh and roller contact excitations, as well as the centrifugal and Coriolis effect, are considered. On this basis, the dynamics of the planet bearing are investigated, particularly for the roller-cage contact. The results show that significant impacts between the roller and the cage would occur under RRC conditions and increase with the revolution speed. The most critical factor determining the roller-cage impact force is the revolution centrifugal force of the roller. The radial and cage pocket clearances show less effect but can still influence the roller-cage impact force.
AB - The planet bearing has become the component most likely to fail in the planetary gear set (PGS), especially for the revolution-rotation coupled (RRC) condition. However, the dynamics of the planet bearing in the PGS are still not revealed yet. To address it, this paper proposes a comprehensive dynamic model of the PGS, in which the gear mesh and roller contact excitations, as well as the centrifugal and Coriolis effect, are considered. On this basis, the dynamics of the planet bearing are investigated, particularly for the roller-cage contact. The results show that significant impacts between the roller and the cage would occur under RRC conditions and increase with the revolution speed. The most critical factor determining the roller-cage impact force is the revolution centrifugal force of the roller. The radial and cage pocket clearances show less effect but can still influence the roller-cage impact force.
KW - Bearing dynamics
KW - Comprehensive dynamic model
KW - Planet bearing
KW - Planetary gear set
KW - Revolution-rotation coupled condition
UR - https://www.scopus.com/pages/publications/85181719702
U2 - 10.1016/j.ymssp.2023.111070
DO - 10.1016/j.ymssp.2023.111070
M3 - 文章
AN - SCOPUS:85181719702
SN - 0888-3270
VL - 208
JO - Mechanical Systems and Signal Processing
JF - Mechanical Systems and Signal Processing
M1 - 111070
ER -