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contributor authorMohammadi, Neda Karami
contributor authorAdams, George G.
date accessioned2019-02-28T11:00:49Z
date available2019-02-28T11:00:49Z
date copyright12/12/2017 12:00:00 AM
date issued2018
identifier issn0021-8936
identifier otherjam_085_02_021005.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4251720
description abstractThis investigation considers the dynamic stability of the steady-state frictional sliding of a finite-thickness elastic layer pressed against a moving rigid and flat surface of infinite extent. The elastic layer is fixed on its bottom surface; on its entire top surface, the rigid surface slides with constant speed and with a constant friction coefficient. The plane-strain equations of motion for a linear isotropic elastic solid are solved analytically for small dynamic disturbances. The analysis shows that even with a constant (speed-independent) friction coefficient, the steady solution is dynamically unstable for any finite friction coefficient. Eigenvalues with positive real parts lead to self-excited vibrations which occur for any sliding speed and which increase with increasing coefficient of friction. This is in contrast to the behavior of an elastic half-space sliding against a rigid surface in which the instability only occurs if the coefficient of friction is greater than unity. This work and its extensions are expected to be relevant in the theoretical aspects of sliding friction as well as in a variety of areas such as earthquake motion and brake dynamics.
publisherThe American Society of Mechanical Engineers (ASME)
titleSelf-Excited Oscillations of a Finite-Thickness Elastic Layer Sliding Against a Rigid Surface With a Constant Coefficient of Friction
typeJournal Paper
journal volume85
journal issue2
journal titleJournal of Applied Mechanics
identifier doi10.1115/1.4038640
journal fristpage21005
journal lastpage021005-7
treeJournal of Applied Mechanics:;2018:;volume( 085 ):;issue: 002
contenttypeFulltext


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