Analysis of Forced Response for Bladed Disks Mistuned by Material Anisotropy Orientation Scatters

Author:

Zang Chaoping1,Tan Yuanqiu1,Petrov E. P.2

Affiliation:

1. Jiangsu Province Key Laboratory of Aerospace Power System, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China e-mail:

2. School of Engineering and Informatics, University of Sussex, Brighton BN1 9QT, UK e-mail:

Abstract

A new method is developed for the forced response analysis of mistuned bladed disks manufactured from anisotropic materials and mistuned by different orientations of material anisotropy axes. The method uses (i) sector finite element (FE) models of anisotropic bladed disks and (ii) FE models of single blades and allows the calculation of displacements and stresses in a mistuned assembly. A high-fidelity reduction approach is proposed which ensures high-accuracy modeling by introducing an enhanced reduction basis. The reduction basis includes the modal properties of specially selected blades and bladed disks. The technique for the choice of the reduction basis has been developed, which provides the required accuracy while keeping the computation expense acceptable. An approach for effective modeling of anisotropy-mistuned bladed disk without a need to create a FE model for each mistuning pattern is developed. The approach is aimed at fast statistical analysis based on Monte Carlo simulations. All components of the methodology for anisotropy-mistuned bladed disks are demonstrated on the analysis of models of practical bladed disks. Effects of anisotropy mistuning on forced response levels are explored.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference24 articles.

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3. Forced Response of Bladed Disk Assemblies—A Survey;Shock Vib. Dig.,1999

4. Modelling and Analysis of Mistuned Bladed Disk Vibration: Current Status and Emerging Directions;J. Propul. Power,2006

5. Mode Localization and Eigenvalue Loci Veering Phenomena in Disordered Structures;J. Sound Vib.,1988

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