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Analytical and Experimental Study of Free Vibration of Beams Carrying Multiple Masses and Springs 被引量:1

Analytical and Experimental Study of Free Vibration of Beams Carrying Multiple Masses and Springs
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摘要 The structures in engineering can be simplified into elastic beams with concentrated masses and elastic spring supports. Studying the law of vibration of the beams can be a help in guiding its design and avoiding resonance. Based on the Laplace transform method, the mode shape functions and the frequency equations of the beams in the typical boundary conditions are derived. A cantilever beam with a lumped mass and a spring is selected to obtain its natural frequencies and mode shape functions. An experiment was conducted in order to get the modal parameters of the beam based on the NExT-ERA method. By comparing the analytical and experimental results, the effects of the locations of the mass and spring on the modal parameter are discussed. The variation of the natural frequencies was obtained with the changing stiffness coefficient and mass coefficient, respectively. The findings provide a reference for the vibration analysis methods and the lumped parameters layout design of elastic beams used in engineering. The structures in engineering can be simplified intoelastic beams with concentrated masses and elastic spring supports.Studying the law of vibration of the beams can be a help in guidingits design and avoiding resonance. Based on the Laplace transformmethod, the mode shape functions and the frequency equations ofthe beams in the typical boundary conditions are derived. Acantilever beam with a lumped mass and a spring is selected toobtain its natural frequencies and mode shape functions. Anexperiment was conducted in order to get the modal parameters ofthe beam based on the NExT-ERA method. By comparing theanalytical and experimental results, the effects of the locations ofthe mass and spring on the modal parameter are discussed. Thevariation of the natural frequencies was obtained with the changingstiffness coefficient and mass coefficient, respectively. The findingsprovide a reference for the vibration analysis methods and thelumped parameters layout design of elastic beams used inengineering.
出处 《Journal of Marine Science and Application》 2014年第1期32-40,共9页 船舶与海洋工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(51109034)
关键词 ELASTIC BEAMS concentrated MASSES SPRINGS naturalfrequencies mode shape functions free vibration NExT-ERA MODAL identification elastic beams concentrated masses springs natural frequencies mode shape functions free vibration NExT-ERA modal identification
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