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Characterization of nonlinear vibrating systems under random excitation

  • Rui He
  • , Wen Bo Luo
  • , Ben Li Wang
  • , Xian Ren Kong*
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • China Aerospace Science and Technology Corporation

Research output: Contribution to journalArticlepeer-review

Abstract

Under random excitation, the behavior of SDOF nonlinear system is investigated. Nonlinear damping and nonlinear siffness are considered respectively. Equivalent linear damping and equivalent linear stiffness of nonlinear system are calculated by combining FPK transform and equivalent principle method. Results of equivalent linear FRF (Frequency Response Function) and Nyquist show that the FRF and Nyquist will change with the variation of excitation level. Moreover, it is observed that different nonlinear type shows different features. Thus the type of nonlinear can be charactered, and the hardening or softening characrteristic of the system can be deduced too. The result provides a theoretical foundation for choosing the model of the nonlinear dynamic system. The method can be used to identify the random test data of an aluminum honeycomb sandwich board to character the type of nonlinear.

Original languageEnglish
Pages (from-to)24-29
Number of pages6
JournalGongcheng Lixue/Engineering Mechanics
Volume27
Issue number4
StatePublished - Apr 2010

Keywords

  • Equivalent linear FRF
  • FPK transform
  • Nonlinear damping
  • Nonlinear stiffness
  • Random excitation

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