TY - JOUR
T1 - Application of improved hybrid interface substructural component modal synthesis method in dynamic characteristics analysis of mistuned bladed disk assemblies
AU - Bai, Bin
AU - Bai, Guangchen
AU - Fei, Chengwei
AU - Zhao, Heyang
AU - Tong, Xiaochen
N1 - Publisher Copyright:
©2015 Journal of Mechanical Engineering
PY - 2015/5/5
Y1 - 2015/5/5
N2 - In order to improve the computational efficiency of the dynamic characteristics analysis in the aeroengine with the computational accuracy, an improved hybrid interface substructural component modal synthesis method (HISCMSM) is proposed due to the problem of the large amount of calculation via the traditional HISCMSM when the substructures are assembled. The comprehensive model is further reduced by this method. The assembled structural parametric model of blades and disks is built by this method to establish each substructural finite element model (FEM) and the natural frequency and modal shape are obtained. Compared with the overall structure FEM, the computational time and the modal deviation are respectively shortened by 23.86%-35.74%, 14.63%-29.20% and 0%-0.49%, 0%-0.57% via the improved method and the traditional method. So the improved method is much more efficient than the traditional method, especially in the high order modal solution which is much clear, meanwhile, modal displacement, modal stress and modal strain energy of the tuned and mistuned bladed disk assemblies are investigated, the symmetry of the tuned bladed disk assemblies is damaged and the localization phenomenon is observed which reinforces with the mistuned amplitude increasing. Gradually, the vibration is localized in a few blades and the phenomenon is getting more and more obvious, which can settle the foundation of the further research on dynamic response and the probability analysis of the mistuned bladed disk assemblies.
AB - In order to improve the computational efficiency of the dynamic characteristics analysis in the aeroengine with the computational accuracy, an improved hybrid interface substructural component modal synthesis method (HISCMSM) is proposed due to the problem of the large amount of calculation via the traditional HISCMSM when the substructures are assembled. The comprehensive model is further reduced by this method. The assembled structural parametric model of blades and disks is built by this method to establish each substructural finite element model (FEM) and the natural frequency and modal shape are obtained. Compared with the overall structure FEM, the computational time and the modal deviation are respectively shortened by 23.86%-35.74%, 14.63%-29.20% and 0%-0.49%, 0%-0.57% via the improved method and the traditional method. So the improved method is much more efficient than the traditional method, especially in the high order modal solution which is much clear, meanwhile, modal displacement, modal stress and modal strain energy of the tuned and mistuned bladed disk assemblies are investigated, the symmetry of the tuned bladed disk assemblies is damaged and the localization phenomenon is observed which reinforces with the mistuned amplitude increasing. Gradually, the vibration is localized in a few blades and the phenomenon is getting more and more obvious, which can settle the foundation of the further research on dynamic response and the probability analysis of the mistuned bladed disk assemblies.
KW - Aeroengine
KW - Computational accuracy
KW - Computational efficiency
KW - Finite element model
KW - Hybrid interface substructural component modal synthesis method
KW - Mistuned bladed disk assemblies
UR - https://www.scopus.com/pages/publications/84929773918
U2 - 10.3901/JME.2015.09.073
DO - 10.3901/JME.2015.09.073
M3 - 文章
AN - SCOPUS:84929773918
SN - 0577-6686
VL - 51
SP - 73
EP - 81
JO - Jixie Gongcheng Xuebao/Journal of Mechanical Engineering
JF - Jixie Gongcheng Xuebao/Journal of Mechanical Engineering
IS - 9
ER -