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Optimal Energy Dissipation in Sliding Friction Simulations

Academic Article
Publication Date:
2012
abstract:
Non-equilibrium molecular dynamics simulations, of crucial importance in sliding friction, are hampered by arbitrariness and uncertainties in the removal of the frictionally generated Joule heat. Building upon general pre-existing formulation, we implement a fully microscopic dissipation approach which, based on a parameter-free, non-Markovian, stochastic dynamics, absorbs Joule heat equivalently to a semi-infinite solid, and harmonic substrate. As a test case, we investigate the stick-slip friction of a slider over a two-dimensional Lennard-Jones solid, comparing our virtually exact frictional results with approximate ones from commonly adopted dissipation schemes. Remarkably, the exact results can be closely reproduced by a standard Langevin dissipation scheme, once its parameters are determined according to a general and self-standing variational procedure.
Iris type:
01.01 Articolo in rivista
Keywords:
Nanotribology; Dynamic modelling; Friction mechanisms; Stick-slip
List of contributors:
Benassi, Andrea; Tosatti, Erio; Santoro, GIUSEPPE ERNESTO; Vanossi, Andrea
Authors of the University:
VANOSSI ANDREA
Handle:
https://iris.cnr.it/handle/20.500.14243/251716
Published in:
TRIBOLOGY LETTER
Journal
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URL

http://link.springer.com/article/10.1007%2Fs11249-012-9936-5
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