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Reducing force transmissibility in multiple degrees of freedom structures through anti-symmetric nonlinear viscous damping 被引量:4

Reducing force transmissibility in multiple degrees of freedom structures through anti-symmetric nonlinear viscous damping
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摘要 In the present study, the Volterra series theory is adopted to theoretically investigate the force transmissibility of multiple degrees of freedom (MDOF) structures, in which an isolator with nonlinear anti-symmetric viscous damping is assembled. The results reveal that the anti-symmetric nonlinear viscous damping can significantly reduce the force trans- missibility over all resonance regions for MDOF structures with little effect on the transmissibility over non-resonant and isolation regions. The results indicate that the vibration isolators with an anti-symmetric damping characteristic have great potential to solve the dilemma occurring in the design of linear viscously damped vibration isolators where an increase of the damping level reduces the force transmissibility over resonant frequencies but increases the transmissibility over non-resonant frequency regions. This work is an extension of a previous study in which MDOF structures installed on the mount through an isolator with cubic nonlinear damping are considered. The theoretical analysis results are also verified by simulation studies. In the present study, the Volterra series theory is adopted to theoretically investigate the force transmissibility of multiple degrees of freedom (MDOF) structures, in which an isolator with nonlinear anti-symmetric viscous damping is assembled. The results reveal that the anti-symmetric nonlinear viscous damping can significantly reduce the force trans- missibility over all resonance regions for MDOF structures with little effect on the transmissibility over non-resonant and isolation regions. The results indicate that the vibration isolators with an anti-symmetric damping characteristic have great potential to solve the dilemma occurring in the design of linear viscously damped vibration isolators where an increase of the damping level reduces the force transmissibility over resonant frequencies but increases the transmissibility over non-resonant frequency regions. This work is an extension of a previous study in which MDOF structures installed on the mount through an isolator with cubic nonlinear damping are considered. The theoretical analysis results are also verified by simulation studies.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第5期1436-1448,共13页 力学学报(英文版)
基金 supported by the EPSRC (UK) the National Science Fund for Distinguished Young Scholars (11125209) the National Natural Science Foundation of China (10902068 and 51121063)
关键词 Nonlinear viscous damping Force transmissibility - Vibration isolation Volterra series Nonlinear viscous damping Force transmissibility - Vibration isolation Volterra series
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  • 1Crede, C.E.: Shock Vib. John Wiley, New York (1951).
  • 2Soliman,J.I., Ismailzadeh, E.: Optimization of unidirectional viscous damped vibration isolation system (for airborne equipment protection). J. Sound Vib. 36, 527-539 (1974).
  • 3Snowdon, J.C.: Vibration isolation use and characterization. J. Acoust. Soc. Am. 66,1245-1279 (1979).
  • 4Tao, J.S., Liu, G.R., Lam, K.Y.: Design optimization of marine engine-mount system. J. Sound Vib. 235,477-494 (2000).
  • 5Swanson, D.A., Wu, H.T., Ashrafiuon, H.: Optimisation of aircraft engine suspension systems. J. Aircraft 30, 979-984(1993).
  • 6Jazar, N.G., Narimani, A., Golnaraghi, M.F” et aL: Practical frequency and time optimal design of passive linear vibration isolation mounts. Vehicle. Syst. Dyn. 39, 437-466 (2003).
  • 7Alkhatib, R.,Jazar, N.G., Golnaraghi, M.F.: Optimal design of passive linear suspension using genetic algorithm. J. Sound Vib. 275,665-691 (2004).
  • 8Yu, Y.H., Naganathan, N.G., Dukkipati, R.V.: A literature review of automotive vehicle engine mounting systems. Mech. Mach. Theory 36, 23-142 (2001).
  • 9Mallik, A.K.,Kher, V., Puri, M.,et al.: On the modelling of non-linear elastomeric vibration isolators. J. Sound Vib. 219, 239-253 (1999).
  • 10Richards, C.M., Singh, R.: Characterization of rubber isolator non-linearities in the context of single and multi-degree-of-freedom experimental systems. J. Sound Vib. 247,807-834(2001).

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