Applied Mathematics and Nonlinear Sciences
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Journal

Applied Mathematics and Nonlinear Sciences


Volume
& Issue

Volume 1, Issue 2


Published
on

December 8, 2016


Pages

603-616


DOI

Article

Vibrations attenuation of a system excited by unbalance and the ground movement by an impact element

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Authors

Marek Lampart Affiliation:
Department of Applied Mathematics & IT4Innovations. VŠB - Technical University of Ostrava, 17. listopadu 15/2172, 708 33 Ostrava, Czech Republic.
and Jaroslav Zapoměl Affiliation:
Department of Applied Mathematics, VŠB - Technical University of Ostrava, 17. listopadu 15/2172, 708 33 Ostrava, Czech Republic


Abstract

This paper concentrates on the vibrations attenuation of a rotor driven by a DC motor and its frame flexibly coupled with a baseplate by linear cylindrical helical springs and damped by an element that can work either in inertia or impact regime. The system oscillation is governed by three mutually coupled second-order ordinary differential equations. The nonlinear behaviour occurs if the impact regime is adjusted. The damping element operating in inertia mode reduces efficiently the oscillations amplitude only in a narrow frequency interval. In contrast, the damping device working in impact regime attenuates vibrations of the rotor frame in a wider range of the excitation frequencies and it can be easily extended if the clearances between the rotor casing and the damping element are controlled. The development of a computational procedure for investigation of vibration of a flexibly supported rotor and for its attenuation by the inertia and impact dampers; learning more on efficiency of the individual damping regimes; finding possibilities of extension of the frequency intervals of applicability of the damping device; and obtaining more information on the character of the vibration induced by impacts are the main contributions of this research work.


Keywords

Rotating system, Damping effect, Inertia damper, Impacts, Vibration attenuation, 34H20, 34H10, 37N30


Citation

Lampart, M. & Zapoměl, J. (2016). Vibrations attenuation of a system excited by unbalance and the ground movement by an impact element. Applied Mathematics and Nonlinear Sciences, 1(2), 603–616. https://doi.org/10.21042/AMNS.2016.2.00046
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