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Rotor blade design and dynamic characteristics analysis of unmanned helicopter
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Affiliation:

1. Low Speed High Reynolds Number Aeronautical Key Laboratory,AVIC Aerodynamics Research Institute Habin 150001;2.Aerodynamic Noise and Control Key Laboratory of Heilongjiang Province,AVIC Aerodynamics Research Institute.Harbin,150001

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V275.1

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    Abstract:

    The widespread application of composite materials in blades also makes the force and stiffness characteristics of blades more complex than traditional blades. In order to reduce the dynamic stress and vibration level of rotor blades, it is necessary to analyze the dynamic characteristics of rotor blades. This article first designs the overall parameters of the rotor and the aerodynamic parameters of the blade. Secondly, the CFD method is used to analyze the aerodynamic characteristics of the rotor in hover. Finally, the three-dimensional nonlinear elastic model of the blade is decomposed into a two-dimensional linear profile model and a one-dimensional nonlinear beam model for dynamic characteristics analysis. The results show that the rotor can successfully pull up the 230kg unmanned helicopter, the hover efficiency is greater than 0.65, the natural frequency of the blade under the working speed keeps a certain range with the frequency of the aerodynamic excitation force below the 8th order, avoid the speed resonance region and meet the requirements of the blade dynamics design.

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Gao HongBo, Shao TianShuang, Liu XiangNan, Yang Zheng. Rotor blade design and dynamic characteristics analysis of unmanned helicopter[J]. Advances in Aeronautical Science and Engineering,2024,15(3):151-156,190

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History
  • Received:October 16,2023
  • Revised:May 18,2024
  • Adopted:May 20,2024
  • Online: May 21,2024
  • Published: