Modeling the interaction between contact mechanisms in normal and tangential directions

Contact interface dynamics depends on contact surfaces characteristics and the interaction of these surfaces in normal and tangential directions. In fact the interaction in normal direction affects the behavior in tangential direction through changing the size of the contact area. The level of vibra...

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Veröffentlicht in:International journal of non-linear mechanics 2014-01, Vol.58, p.111-119
Hauptverfasser: Bazrafshan, M., Ahmadian, H., Jalali, H.
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Ahmadian, H.
Jalali, H.
description Contact interface dynamics depends on contact surfaces characteristics and the interaction of these surfaces in normal and tangential directions. In fact the interaction in normal direction affects the behavior in tangential direction through changing the size of the contact area. The level of vibration in normal direction is inversely proportional to the contact stiffness in tangential direction and the friction force. In this paper the effects of micro-vibro-impact developing at the boundary of a non-linear beam on the parameters of micro-slip mechanism are studied. Also the variation of the contact stiffness in tangential direction is modeled as a function of vibration amplitude level. •Dynamic interaction between normal and tangential contact mechanisms is investigated.•Stick stiffness coefficient is found to be dependent upon the response amplitude level.•Variation of the stick coefficient is formulated by employing Richard–Abbott model.•The proposed model is capable to regenerate the experimental results.
doi_str_mv 10.1016/j.ijnonlinmec.2013.09.002
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subjects Amplitudes
Boundaries
Contact
Contact tangential stiffness
Friction
Friction reduction
Mathematical models
Micro-vibro-impact
Nonlinearity
Slip
Stiffness
Vibration
title Modeling the interaction between contact mechanisms in normal and tangential directions
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