In this paper, a new model of the progression phase of a drifting oscillator is proposed. This is to account more accurately for the penetration of an impactor through elasto-plastic solids under a combination of a static and a harmonic excitation. First, the dynamic response of the semi-infinite elasto-plastic medium subjected to repeated impacts by a rigid impactor with conical or spherical contacting surfaces is considered in order to formulate the relevant force-penetration relationship during the loading and unloading phases of the contact. These relationships are then used to develop a physical and mathematical model of a new drifting oscillator, where the time histories of the progression through the medium include both the loading and unloading phases. A nonlinear dynamic analysis of the system was performed and it confirms that the maximum progressive motion of the oscillator occurs when the system exhibits period one motion. The dynamic response for both contact geometries (conical or spherical) show a topological similarity for a range of the static loads.
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e-mail: m.wiercigroch@abdn.ac.uk
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November 2012
Research Papers
Drifting Impact Oscillator With a New Model of the Progression Phase
Olusegun K. Ajibose,
Olusegun K. Ajibose
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
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Marian Wiercigroch,
Marian Wiercigroch
Center for Applied Dynamic Research,
e-mail: m.wiercigroch@abdn.ac.uk
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
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Ekaterina Pavlovskaia,
Ekaterina Pavlovskaia
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
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Alfred R. Akisanya,
Alfred R. Akisanya
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
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Györygy Károlyi
Györygy Károlyi
Department of Structural Mechanics, Budapest University of Technology and Economics, Müegyetem rkp. 3
, 1111, Budapest, Hungary
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Olusegun K. Ajibose
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
Marian Wiercigroch
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
e-mail: m.wiercigroch@abdn.ac.uk
Ekaterina Pavlovskaia
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
Alfred R. Akisanya
Center for Applied Dynamic Research,
School of Engineering, University of Aberdeen
, Aberdeen, AB24 UE, Scotland, UK
Györygy Károlyi
Department of Structural Mechanics, Budapest University of Technology and Economics, Müegyetem rkp. 3
, 1111, Budapest, Hungary
J. Appl. Mech. Nov 2012, 79(6): 061007 (9 pages)
Published Online: September 17, 2012
Article history
Received:
January 25, 2011
Revised:
March 9, 2012
Posted:
March 15, 2012
Published:
September 17, 2012
Online:
September 17, 2012
Citation
Ajibose, O. K., Wiercigroch, M., Pavlovskaia, E., Akisanya, A. R., and Károlyi, G. (September 17, 2012). "Drifting Impact Oscillator With a New Model of the Progression Phase." ASME. J. Appl. Mech. November 2012; 79(6): 061007. https://doi.org/10.1115/1.4006379
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