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Modal interactions due to friction are also evidenced.
Modal interactions due to coupling have been studied which show the appearance of higher overtones as well as amplitude modulations in our theoretical model akin to the experimental observations.
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Moreover, modal interaction emerged due to the proximity of RES-based DG units and non-linear dynamic behaviour of the sensitive modes.
Finally, we consider non-planar vibrations with inclusion of several modes and observe more complicated non-planar motions due to modal interactions.
Overall coupled/uncoupled dynamic responses, bifurcations, stability and space time-varying dispace time-varying longitudisplacementsrsal (vs. transversal/transversal) modue intoractions at secondary (vs. primary) crossovers are analongitudinal/transversaly evsluated, along with the resonant longitudinal mode-induced dynamic forces.
Special attention is given to the phenomena arising due to the motion of the attached mass and modal interactions produced by the existence of multi-component, specifically two-component, parametric resonance under primary resonance.
The effects of modal interactions and nonlinear response characteristics can hamper implementation of high power ultrasonic technologies, due to the resulting modal coupling, increased stress, audible noise levels and poor control of the operating response.
An attention is given to the phenomena arising due to initial curvature, geometric imperfection, of a connecting rod and modal interactions produced by the existence of two-component parametric resonance.
For a representative finite element model, it is shown that the veerings due to crack length variation involve the switching of mode shapes and modal interactions.
Modal interactions in the chaotic responses are discussed.
An experimental investigation demonstrates that the measured response does not show evidence of modal interactions.
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