Structural Dynamic Analysis of Bearingless Rotor System with Cross-shaped Composite Flexbeam

십자형 복합재 유연보 장착 무베어링 로터 시스템 구조동역학 해석

  • 김도형 (한국항공우주연구원 회전익기그룹) ;
  • 임인규 (한국과학기술원 항공우주공학전공 대학원) ;
  • 이명규 (한국항공우주연구원 체계종합그룹) ;
  • 이인 (한국과학기술원 항공우주공학전공)
  • Published : 2004.10.01

Abstract

Structural dynamic characteristics and aeroelastic stability of a small-scale bearingless rotor system have been investigated. A flexbeam is one of the most important component of bearingless hub system. It must have sufficient torsional flexibility as well as baseline stiffness in order to produce feathering motion. In the present paper, a cross-shaped composite flexbeam has been proposed for a guarantee of torsional flexibility and flapwise and lagwise bending stiffness. One dimensional elastic beam model was used for the construction of a structural model. Equivalent isotropic sectional stiffness was used in the blade model, and the flexbeam was regarded as anisotropic; which has ten independent stiffness quantities. CAMRAD II has been used for the analysis of structural dynamic characteristics of the bearingless rotor system. Rotational natural frequencies and aeroelastic stability at hovering have been investigated. Analysis result shows that the cross-shaped flexbeam has the rotational natural frequency tuning capacity.

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