Dynamics characteristic of a class of single-degree-of-freedom collision system under nonlinear constraint
MA Cheng
ZHU Xifeng
ZHENG Dong
FU Wenbin
Abstract:A single-degree-of-freedom mechanical collision vibration system model with nonlinear terms and unilateral new nonlinear constraints was studied.The dynamics characteristics of the p/1 periodic motion of the system under low-frequency excitation were analyzed by using the variable-step fourth-order Runge-Kutta numerical algorithm and multi-parameter co-simulation.And the frequency hysteresis characteristics of the grazing bifurcation and saddle-node bifurcation in the p/1 periodic motion were analyzed.It was found that two different motions will exist at the same time,revealing the irreversibility of the transition between adjacent periodic motions.Finally,the influence of the change of the gap on the multi-state coexistence region of the system was studied.As the gap increases,the coexistence region of partial periodic motion decreases and transits to the low-frequency region.
Keywords:Nonlinear constraintBifurcationMulti-parameter coordinationAttractors coexistence
Publication Date:2025-03-28
Online Publishing Date:2026-09-12(First online date of this platform, not the publication date of the document)
Pages:8( 82-89 )
