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Nonlinear shear wave interaction at a frictional interface: Energy dissipation and generation of harmonics
Accepted manuscript   Open access   Peer reviewed

Nonlinear shear wave interaction at a frictional interface: Energy dissipation and generation of harmonics

Andrew N. Norris, A. Meziane and A. L. Shuvalov
Journal of the Acoustical Society of America, Vol.130(4), pp.1820-1828
2011
DOI:
https://doi.org/10.7282/T32F7Q3W

Abstract

Friction Numerical modeling Surface dynamics Interface dynamics Second harmonic generation
Analytical and numerical modelling of the nonlinear interaction of shear wave with a frictional interface is presented. The system studied is composed of two homogeneous and isotropic elastic solids, brought into frictional contact by remote normal compression. A shear wave, either time harmonic or a narrow band pulse, is incident normal to the interface and propagates through the contact. Two friction laws are considered and their influence on interface behavior is investigated : Coulomb's law with a constant friction coefficient and a slip-weakening friction law which involves static and dynamic friction coefficients. The relationship between the nonlinear harmonics and the dissipated energy, and their dependence on the contact dynamics (friction law, sliding and tangential stress) and on the normal contact stress are examined in detail. The analytical and numerical results indicate universal type laws for the amplitude of the higher harmonics and for the dissipated energy, properly non-dimensionalized in terms of the pre-stress, the friction coefficient and the incident amplitude. The results suggest that measurements of higher harmonics can be used to quantify friction and dissipation effects of a sliding interface.
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http://dx.doi.org/10.1121/1.3628663View
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