Damping Enhancement of Hingeless Rotor System Using Viscoelastic Material

점탄성 재료를 이용한 무힌지 로터 감쇠 증대

  • 김도형 (한국항공우주연구원 회전익기그룹) ;
  • 고은희 (한국항공우주연구원 회전익기그룹) ;
  • 송근웅 (한국항공우주연구원 회전익기그룹) ;
  • 이욱 (한국항공우주연구원 회전익기그룹)
  • Published : 2004.11.01

Abstract

Structural damping enhancement of composite flexures and aeroelastic stability of a hingeless rotor system are investigated. Constrained layer damping (CLD) treatments are applied in order to increase structural damping of flexures. Material damping property of viscoelastic layer is modelled as complex modulus. Modal analysis of composite flexures with attached viscoelastic layers and constraining layers are performed using MSC/NASTRAN and the effects of CLD treatments are verified with the modal test results. The composite flexures with CLD are applied to a 4-bladed, 2-meter diameter, Froude-scaled, soft-in-plane hingeless rotor system. The aeroelastic stability is tested at hovering condition and the effects of CLD are investigated. It is shown that the CLD treatment effectively enhance the aeroelastic stability at hover.

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