TY - JOUR
T1 - A strategy of vibration control for rotors with dry friction dampers
AU - Liu, Di
AU - Zhou, Liang
AU - Zhang, Dayi
AU - Wang, Hong
N1 - Publisher Copyright:
© The Author(s) 2022.
PY - 2023/7
Y1 - 2023/7
N2 - It is an attractive research topic to propose some novel damping methods for rotors, and the dry friction damping is probably an effective and stable method. In this paper, a control strategy is proposed based on the relationship between the rotor modal characteristics and rotor responses. Firstly, a rotor model with a new kind of dry friction damper is established and corresponding complex nonlinear modes are derived. Then, based on that, the rotor modal characteristics are analyzed, with the nonlinear damping ratio used to evaluate the damping performance. Considering the effective working region for traditional dry friction dampers is usually narrow, a control strategy suiting for a broader range of load conditions is proposed. The results show that the vibration amplitude of the rotor at critical speed can be effectively controlled by the proposed strategy, implying its prospects in engineering practice.
AB - It is an attractive research topic to propose some novel damping methods for rotors, and the dry friction damping is probably an effective and stable method. In this paper, a control strategy is proposed based on the relationship between the rotor modal characteristics and rotor responses. Firstly, a rotor model with a new kind of dry friction damper is established and corresponding complex nonlinear modes are derived. Then, based on that, the rotor modal characteristics are analyzed, with the nonlinear damping ratio used to evaluate the damping performance. Considering the effective working region for traditional dry friction dampers is usually narrow, a control strategy suiting for a broader range of load conditions is proposed. The results show that the vibration amplitude of the rotor at critical speed can be effectively controlled by the proposed strategy, implying its prospects in engineering practice.
KW - complex nonlinear mode
KW - control strategy
KW - dry friction damper
KW - modal characteristic
KW - rotor
UR - https://www.scopus.com/pages/publications/85130489846
U2 - 10.1177/10775463221093105
DO - 10.1177/10775463221093105
M3 - 文献综述
AN - SCOPUS:85130489846
SN - 1077-5463
VL - 29
SP - 2907
EP - 2920
JO - JVC/Journal of Vibration and Control
JF - JVC/Journal of Vibration and Control
IS - 13-14
ER -