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Stick-slip chaos in a non-ideal self-excited system

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In engineering practical systems the excitation source is generally dependent on the system dynamic structure. In this paper we analyze a self-excited oscillating system due to dry friction which interacts with an energy source of limited power supply (non ideal problem). The mechanical system consists of an oscillating system sliding on a moving belt driven by a limited power supply. In the oscillating system considered here, dry friction acts as an excitation mechanism for stick-slip oscillations. The stick-slip chaotic oscillations are investigated because the knowledge of their dynamic characteristics is an important step in system design and control. Many engineering systems present stick-slip chaotic oscillations such as machine tools, oil well drillstrings, car brakes and others.

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DC motors, Elastic moduli, Friction, Machine tools, Nonlinear systems, Oscillations, Systems analysis, Self-excited systems, Stick-slip chaos, Chaos theory

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Inglês

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Proceedings of the ASME Design Engineering Technical Conference, v. 5 C, p. 2663-2668.

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