Nature Frequency Calculation of Revolving Parts Considering Stress Stiffening and Spin Softening

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Abstract:

when the rolling part works in high speed, its nature frequency changes a lot due to stress stiffening and spin softening. Using a single rotor and a rotor with axis as an example, the first eight natural frequencies were obtained respectively through ANSYS after establishing models. Comparisons of nature frequencies of considering stress stiffening only, spin softening only, both stress stiffening and spin softening in a series of speeds were made. It was found that relatively large error would exist unless the effects of stress stiffening and spin softening were considered on nature frequency in high speeds.

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33-36

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Kane T R, Ryan R R, Baneruee A K. Dynamics of a cantilever beam attached to a moving bade[J]. Journal of Guldance, Control and dynamics, 1987, 10(2): 139-151.

DOI: 10.2514/3.20195

Google Scholar

[2] Li Deyuan. Vibration modal analysis of the rotating rotar of horizontal axis wind turbine[J]. Acta Energiae Solaris Sinica, 2004, 2(1): 72-77.

Google Scholar

[3] SU Rong-hua. Influence analysis of stress stiffening effect of rotating wheel disc on its modal characteristics[J], Journal of Engineering Design, 2009, 16(4): 292-295.

Google Scholar

[4] Zeng Haiyong. Study on effect of stress stiffening and damage on modal parameters of wind turbine blade[R]. Harbin: Harbin Institute of Technology, 2011: 14-16.

Google Scholar

[5] SUN Bao-cang. The simulation analysis of the vibration modal on a wind turbine blade under the stress stiffening effect[J], Renewable Energy Resources, 2012, 30(5): 38-41.

Google Scholar

[6] LIAO Ridong. The Modal Characteristics Study of Turbine Blades with Considering the Influence of spin softening[J], Transactions of CSICE, 2000, 18(1): 77-79.

Google Scholar

[7] Cheng Xiaowei. Calculation and Analysis on Critical Rotational Speeds of the Centrifugal Pump Rotors[R]. Lanzhou: Lanzhou University of Technology, 2009: 42-44.

Google Scholar

[8] YAO Xue-shi. Study on Dynamics of Wind Turbine Blade Based on Spin Softening[J]. Journal of Chinese Society of Power Engineering, 2011, 31(3): 209-213.

Google Scholar

[9] YANG Xiaohong. Analysis on rotor dynamic characters of aero generator rotor system based on finite element[J]. Machinery Design & Manufacture, 2010(9): 163-165.

Google Scholar