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Production & Performance Assessment of Composite Material Flexible Propeller

복합재료 유연 프로펠러의 제작 및 성능 평가

  • Lee, Sang-Gab (Div. of Naval Architecture & Ocean Systems Engineering, Korea Maritime University) ;
  • Byun, Joon-Hyung (Department of Materials Processing ,Korea Institute of Materials Science) ;
  • Paik, Bu-Geun (Maritime & Ocean Engineering Research Institute, KORDI) ;
  • Hyun, Beom-Soo (Div. of Naval Architecture & Ocean Systems Engineering, Korea Maritime University)
  • 이상갑 (한국해양대학교 조선해양시스템공학부) ;
  • 변준형 (한국기계연구원 부설 재료연구소) ;
  • 백부근 (한국해양연구원 해양시스템안전연구소) ;
  • 현범수 (한국해양대학교 조선해양시스템공학부)
  • Published : 2009.12.20

Abstract

The researches on the development of composite material underwater vehicle propeller have been actively attempted for the reduction of radiation noise with outstanding damping effects. Composite material propellers have almost been designed and produced by the foreign experts, and it is difficult to obtain the related informations about their flow, vibration, material characteristics because they are treated as the secrets with close relationship to the military technology, especially in the case of underwater vehicles. For the security of domestic manufacture of composite material propeller and the comparison and examination of its performance and radiation noise characteristics with those of German CONTUR composite material propeller, two propellers were self-produced according to the fiber weaving and array using compressible molding process and their self performances and radiation noise characteristics were measured. The mean fluctuations of blade tip of self-produced composite material propeller were increased and the radiation noises in the low frequency band were reduced compared to those of CONTUR, which could be estimated as the change of material characteristics and also be thought to be used for the future research informations.

Keywords

References

  1. Gutowski, T.G., 1997, Advanced Composite Manufacturing, John Wiley & Sons, Inc., New York.
  2. Hyun, B.S., Nho, I.S., Shin, S.M., Lee S.G. and Paik, B.G., 2008, Investigation of the Performance Characteristics of the Flexible Propeller, MOERI Report.
  3. Lee, S.G., Hwang, J.O. and Byun J.H., 2009, "Material & Structural Characteristics of Composite Material Flexible Propeller," Journal of the Society of Naval Architects of Korea, Vol. 46, No. 2, pp. 203-217. https://doi.org/10.3744/SNAK.2009.46.2.203
  4. Mallick, P.K. and Newman, S., 1990, Composite Materials Technology: Processes and Properties, Oxford University Press, New York.
  5. Seol, H.S., Park, C.S., Kim, K.S. and Cho, Y.J., 2007, "Background Noise Analysis of the MOERI Cavitation Tunnel & Propeller BPF Noise Measurement," Journal of the Society of Naval Architects of Korea, Vol. 44, No. 4, pp. 408-416. https://doi.org/10.3744/SNAK.2007.44.4.408

Cited by

  1. Effect of Manufacturing Accuracy of Flexible Propeller on the Open Water Performance vol.50, pp.5, 2013, https://doi.org/10.3744/SNAK.2013.50.5.349