TY - JOUR
T1 - A Survey of Aero-Engine Blade Modeling and Dynamic Characteristics Analyses
AU - Zhang, Yaqiong
AU - Wang, Fubin
AU - Liu, Jinchao
AU - Zhao, Heng
AU - Fu, Chao
AU - Zhai, Weihao
AU - Lu, Kuan
N1 - Publisher Copyright:
© 2024 by the authors.
PY - 2024/8
Y1 - 2024/8
N2 - The rotating blade is a key component of an aero-engine, and its vibration characteristics have an important impact on the performance of the engine and are vital for condition monitoring. This paper reviews the research progress of blade dynamics, including three main aspects: modeling of blades, solution methods, and vibration characteristics. Firstly, three popular structural dynamics models for blades are reviewed, namely lumped-mass model, finite element model, and semi-analytical model. Then, the solution methods for the blade dynamics are comprehensively described. The advantages and limitations of these methods are summarized. In the third part, this review summarizes the properties of the modal and vibration responses of aero-engine blades and discusses the typical forms and mechanisms of blade vibration. Finally, the deficiencies and limitations in the current research on blade modeling and vibration analysis are summarized, and the directions for future efforts are pointed out. The purpose of this review is to provide meaningful insights to researchers and engineers in the field of aero-engine blade modeling and dynamic characteristics analysis.
AB - The rotating blade is a key component of an aero-engine, and its vibration characteristics have an important impact on the performance of the engine and are vital for condition monitoring. This paper reviews the research progress of blade dynamics, including three main aspects: modeling of blades, solution methods, and vibration characteristics. Firstly, three popular structural dynamics models for blades are reviewed, namely lumped-mass model, finite element model, and semi-analytical model. Then, the solution methods for the blade dynamics are comprehensively described. The advantages and limitations of these methods are summarized. In the third part, this review summarizes the properties of the modal and vibration responses of aero-engine blades and discusses the typical forms and mechanisms of blade vibration. Finally, the deficiencies and limitations in the current research on blade modeling and vibration analysis are summarized, and the directions for future efforts are pointed out. The purpose of this review is to provide meaningful insights to researchers and engineers in the field of aero-engine blade modeling and dynamic characteristics analysis.
KW - aero-engine
KW - blade
KW - dynamic characteristics
KW - dynamics modeling
KW - vibration analysis
UR - http://www.scopus.com/inward/record.url?scp=85202609016&partnerID=8YFLogxK
U2 - 10.3390/aerospace11080638
DO - 10.3390/aerospace11080638
M3 - 文献综述
AN - SCOPUS:85202609016
SN - 2226-4310
VL - 11
JO - Aerospace
JF - Aerospace
IS - 8
M1 - 638
ER -