In practical engineering, vibration transmission between bolted structures supported by cantilever
beams involves many factors. The vibration transmission effect is the embodiment
of coupling of various factors, so it is impossible to accurately and quantitatively evaluate
the influence degree of various factors. In this paper, the influence factors of vibration between
bolted plates in the form of a cantilever beam are studied by a numerical calculation
method. The effects of the friction coefficient, bolt preload, temperature and pressure on
vibration characteristics are studied. Finally, the contribution of different influencing factors
to vibration transmission is given.
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Hao Y., Wang J.L., Liu B., Sun H.C., Han Y.H. Chen F., 2021, Modal analysis theory and engineering application, Journal of Hebei Institute of Architecture and Civil Engineering, 3, 4-47.
Li J.F., Yang T., Du Y., Niu X.J., 2017, Composite laminates vibration theory and experimental modal analysis based on hammering method, Aerospace Materials and Technology , 47, 1, 25-28+36.
Shen P., Niu T.Y., Chen J.Y., 2020, A comparative study on modal analysis and testing technology of cantilever beam, Journal of Xinxiang University, 9, 54-56.
Tullini N., Laudiero F., 2008, Dynamic identification of beam axial loads using one flexural mode shape, Journal of Sound and Vibration, 318, 1-2, 131-147.
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