Paper
16 June 2023 Review on applications of piezoelectric materials for aero-engine blade vibration suppression
Ruichen Yu, Jinhua Jiang, Nan Li, Qirui Hu, Hesheng Zhang, Zhiyuan Gao
Author Affiliations +
Proceedings Volume 12639, Third International Conference on Mechanical Design and Simulation (MDS 2023); 126392V (2023) https://doi.org/10.1117/12.2681819
Event: Third International Conference on Mechanical Design and Simulation (MDS 2023), 2023, Xi'an, China
Abstract
Unexpected vibration of aero-engine blades may lead to fatigue failure. In order to reduce the harmful vibration of aero-engine blades, many smart materials have been employed for blade vibration suppression applications. Among them, a hot research area is vibration suppression using piezoelectric materials with damping circuits or active vibration control algorithms, by providing new and effective methodology to suppress the vibration of aero engines. This paper summarizes the current research status of vibration suppression for aero-engine blades using piezoelectric materials in recent years. Firstly, the structure of aero-engine and the background of vibration suppression are introduced briefly; secondly, the design process and several typical applications of passive vibration suppression and active vibration suppression methods are reviewed, their advantages and disadvantages are compared; finally, conclusions are made and some suggestions are summarized for the next generation smart structure aero-engine blades, such as the necessity of global geometry optimization and topology optimization, integrated structural/control optimization for engineering applications.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Ruichen Yu, Jinhua Jiang, Nan Li, Qirui Hu, Hesheng Zhang, and Zhiyuan Gao "Review on applications of piezoelectric materials for aero-engine blade vibration suppression", Proc. SPIE 12639, Third International Conference on Mechanical Design and Simulation (MDS 2023), 126392V (16 June 2023); https://doi.org/10.1117/12.2681819
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KEYWORDS
Vibration

Piezoelectric materials

Design and modelling

Actuators

Circuit switching

Active vibration control

Fluctuations and noise

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