Article ID Journal Published Year Pages File Type
755930 Communications in Nonlinear Science and Numerical Simulation 2011 11 Pages PDF
Abstract

Forced vibro-impact dynamics of the two heavy mass particle motions, in vertical plane, along rough circle with Coulomb’s type friction and one, one side impact limiter is considered in combinations of applied analytical and numerical methods. System of two differential double equations, each for one of two heavy mass particle motions along same rough circle are composed with corresponding initial conditions as well as impact conditions. By use software package tools differential double equations are numerically integrated for obtaining phase portrait of phase trajectory branches for different mass particles initial kinetic states. By series of the phase trajectory branches for each mass particle motion between two impacts or between impact and alternation of the Coulomb’s friction force direction, two phase trajectory graphs of the system vibro-impact non-linear dynamics are composed. Different software tools are used as helping tools for calculate time moments of the series of the impacts between mass particles, as well as positions of the impacts, necessary for calculations of the impact velocities of the mass particles before and after impacts. Some comparison between forced and free vibro-impact dynamics of the two heavy mass particles in vertical plane, along rough circle with Coulomb’s type friction and one, one side impact limiter is done. Trigger of coupled one side singularities in phase portraits are identified.

► Two differential double equations of two mass particle vibro-impact forced motions along rough circle are composed. ► Phase portrait of the phase trajectory branches for different mass particles initial and kinetic states is presented. ► The phase portraits for each mass particle motion between series of two impacts or friction force alternations are composed.

Related Topics
Physical Sciences and Engineering Engineering Mechanical Engineering
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