TY - GEN
T1 - A Piezoelectric Damping Support for the Vibration Suppression of Rotors
AU - Hu, Yu
AU - Fan, Yu
AU - Wu, Yaguang
AU - Li, Lin
N1 - Publisher Copyright:
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2024.
PY - 2024
Y1 - 2024
N2 - Elastic supports are widely used in flexible rotors of aero-engines. The principal function of elastic support is to provide the rotor with reasonable stiffness, on one hand to balance the inertia force of the rotor, on the other hand to reduce the stress on the shaft. To further suppress the excessive vibration when crossing the critical speed, dampers are generally mounted on the support. Piezoelectric materials have the advantages of strong electromechanical coupling capability and wide bandwidth. When the thickness of piezoelectric material is comparable to that of the substrate structure, it exhibits good damping performance. The main drawback is that piezoelectric materials cannot withstand too much loads. In this study, we propose the concept of a piezoelectric damping support for suppressing rotor vibration. The elastic support structure, distributed with piezoelectric materials, is utilized solely for generating damping rather than providing stiffness. An S-shaped elastic ring is designed to enhance the electromechanical coupling effect. The attached piezoelectric patches are grouped and interconnected with the synchronized switch damping on inductance (SSDI) to dissipate the vibration energy. The purpose of this work is to study the feasibility of the proposed piezoelectric damping support. To do that, the following works are carried out: (1) An elastic ring support based on S-shaped spring structure is designed, which ensures both the uniformity of radial stiffness and the rotationally periodic symmetry of strain distribution; (2) a numerical simulation is conducted for the rotor system to evaluate the damping performance. Results show that the novel damping support has high electromechanical coupling factor, and the damping effect is considerable for the rotor system. Towards engineering applications, the piezoelectric damping support can be installed in areas where deformation is suitable, and it can function in parallel with traditional elastic supports that primarily provide stiffness. Moreover, in contrast to the squeeze film damper, this damping support is oil-free.
AB - Elastic supports are widely used in flexible rotors of aero-engines. The principal function of elastic support is to provide the rotor with reasonable stiffness, on one hand to balance the inertia force of the rotor, on the other hand to reduce the stress on the shaft. To further suppress the excessive vibration when crossing the critical speed, dampers are generally mounted on the support. Piezoelectric materials have the advantages of strong electromechanical coupling capability and wide bandwidth. When the thickness of piezoelectric material is comparable to that of the substrate structure, it exhibits good damping performance. The main drawback is that piezoelectric materials cannot withstand too much loads. In this study, we propose the concept of a piezoelectric damping support for suppressing rotor vibration. The elastic support structure, distributed with piezoelectric materials, is utilized solely for generating damping rather than providing stiffness. An S-shaped elastic ring is designed to enhance the electromechanical coupling effect. The attached piezoelectric patches are grouped and interconnected with the synchronized switch damping on inductance (SSDI) to dissipate the vibration energy. The purpose of this work is to study the feasibility of the proposed piezoelectric damping support. To do that, the following works are carried out: (1) An elastic ring support based on S-shaped spring structure is designed, which ensures both the uniformity of radial stiffness and the rotationally periodic symmetry of strain distribution; (2) a numerical simulation is conducted for the rotor system to evaluate the damping performance. Results show that the novel damping support has high electromechanical coupling factor, and the damping effect is considerable for the rotor system. Towards engineering applications, the piezoelectric damping support can be installed in areas where deformation is suitable, and it can function in parallel with traditional elastic supports that primarily provide stiffness. Moreover, in contrast to the squeeze film damper, this damping support is oil-free.
KW - Elastic Support
KW - Interconnected Synchronized Switch Damping on Inductance
KW - Piezoelectric Material
KW - Rotor Dynamics
KW - Vibration Suppression
UR - https://www.scopus.com/pages/publications/85200265704
U2 - 10.1007/978-981-97-3998-1_97
DO - 10.1007/978-981-97-3998-1_97
M3 - 会议稿件
AN - SCOPUS:85200265704
SN - 9789819739974
T3 - Lecture Notes in Electrical Engineering
SP - 1237
EP - 1256
BT - 2023 Asia-Pacific International Symposium on Aerospace Technology, APISAT 2023, Proceedings - Volume I
A2 - Fu, Song
PB - Springer Science and Business Media Deutschland GmbH
T2 - Asia-Pacific International Symposium on Aerospace Technology, APISAT 2023
Y2 - 16 October 2023 through 18 October 2023
ER -