Nonlinear Rocking Vibration Characteristics for Rigid Block Subjected to Horizontal Sinusoidal Excitation

수평방향의 정현파 가진을 받는 강체 블록의 비선형 록킹진동특성

  • 정만용 ;
  • 김정호 (조선대학교 수송기계부품 공장자동화 연구센터) ;
  • 김지훈 (조선대학교 수송기계부품 공장자동화 연구센터) ;
  • 정낙규 (조선대학교 기계공학부) ;
  • 양인영 (조선대학교 기계공학부)
  • Published : 1999.12.01

Abstract

This research concentrates on the influence of non-linearities associated with impact for the nonlinear rocking behavior of rigid block subjected to one dimensional sinusoidal excitation of horizontal direction. The transition of two governing rocking equations, the abrupt reduction in the kinetic energy associated with impact, and sliding motion of block. In this study, two type of rocking vibration system are considered. One is the undamped rocking vibration system, disregarding energy dissipation at impact and the other is the damped rocking system, including energy dissipation and sliding motion. The response analysis using non-dimensional rocking equation is carried out for the change of excitation parameters and friction coefficient. The chaos responses were discovered in the wide response region, particularly, for the case of high excitation amplitude and their chaos characteristics were examined by the time history, Poincare map, power spectra and Lyapunov Exponent of rocking responses. The complex behavior of chaos response, in the phase space, were illustrated by Poincare map. The bifurcation diagram and Poincare map were shown to be effective in order to understand chaos of rocking system.

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