Title of article
Numerical analysis of stick-slip instability by a rate-dependent elastoplastic formulation for friction
Author/Authors
Ozaki، نويسنده , , S. and Hashiguchi، نويسنده , , K.، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2010
Pages
14
From page
2120
To page
2133
Abstract
In various fields of engineering, it is important to clarify friction-induced vibration, such as stick-slip motion, for a wide range of scales from microscopic elements to continental plates. In the present study, we apply a rate- and state-dependent friction model [30] (Hashiguchi and Ozaki, 2008), which can rationally describe the reciprocal transition between the static friction and the kinetic friction by a unified formulation, to the simulation of stick-slip instability for a one-degree-of-freedom spring–mass system under various conditions. It is verified that the various basic experimental findings on stick-slip motion can be pertinently described by the present approach. Moreover, the effect of the dynamic characteristics of the system, such as the mass, stiffness and driving velocity, is discussed, and parameters prescribing the rate of reciprocal transition of static–kinetic frictions and the preliminary microscopic sliding on the instability of the stick-slip motion are also discussed.
Keywords
Friction-induced vibration , CONSTITUTIVE EQUATION , Rate- and state-dependency , elastoplasticity
Journal title
Tribology International
Serial Year
2010
Journal title
Tribology International
Record number
1426293
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