In this work we present a molecular dynamics simulation of a FFM experiment. The tip-sample interaction is studied by varying the normal force in the tip and the temperature of the surface. The friction force, cA, at zero load and the friction coefficient, m, were obtained. Our results strongly support the idea that the effective contact area, A, decreases with increasing temperature and the friction coefficient presents a clear signature of the premelting process of the surface
The influence of the scratching velocity on mechanical and thermal properties of a nanoscopic contac...
A model sliding potential, based on Prandtl–Tomlinson type models, is proposed for analyzing the tem...
Both atomic force microscopy (AFM) experiments and molecular dynamics (MD) simulation are carried ou...
In this work we present a molecular dynamics simulation of a FFM experiment. The tip-sample interact...
In this work we present a molecular dynamics simulation of a FFM experiment. The tip-sample interact...
This paper reviews recent progress in molecular dynamics simulation of atomic-scale friction measure...
In this thesis we study the thermal and inertia effects on atomic friction. The Friction Force Micro...
We model friction acting on the tip of an atomic force microscope as it is dragged across a surface ...
4siFriction is an omnipresent phenomenon in all mechanical systems, inducing uncertainties and actin...
Adhesion and dry sliding friction are modeled and simulated using molecular dynamics principles in t...
Using non-equilibrium molecular dynamic simulations, we investigate the effect of adsorbates on nano...
Wetted contacts play an important role in many fields. A prominent example in engineering is the lub...
A slider-slab sliding model for hard-to-soft and soft-to-soft sliding systems with abrasive and non-...
The atomic stick-slip behavior of a Pt tip sliding on a Au(111) surface is studied with atomic force...
We present a molecular dynamics simulation for the static friction under the effect of load. We chos...
The influence of the scratching velocity on mechanical and thermal properties of a nanoscopic contac...
A model sliding potential, based on Prandtl–Tomlinson type models, is proposed for analyzing the tem...
Both atomic force microscopy (AFM) experiments and molecular dynamics (MD) simulation are carried ou...
In this work we present a molecular dynamics simulation of a FFM experiment. The tip-sample interact...
In this work we present a molecular dynamics simulation of a FFM experiment. The tip-sample interact...
This paper reviews recent progress in molecular dynamics simulation of atomic-scale friction measure...
In this thesis we study the thermal and inertia effects on atomic friction. The Friction Force Micro...
We model friction acting on the tip of an atomic force microscope as it is dragged across a surface ...
4siFriction is an omnipresent phenomenon in all mechanical systems, inducing uncertainties and actin...
Adhesion and dry sliding friction are modeled and simulated using molecular dynamics principles in t...
Using non-equilibrium molecular dynamic simulations, we investigate the effect of adsorbates on nano...
Wetted contacts play an important role in many fields. A prominent example in engineering is the lub...
A slider-slab sliding model for hard-to-soft and soft-to-soft sliding systems with abrasive and non-...
The atomic stick-slip behavior of a Pt tip sliding on a Au(111) surface is studied with atomic force...
We present a molecular dynamics simulation for the static friction under the effect of load. We chos...
The influence of the scratching velocity on mechanical and thermal properties of a nanoscopic contac...
A model sliding potential, based on Prandtl–Tomlinson type models, is proposed for analyzing the tem...
Both atomic force microscopy (AFM) experiments and molecular dynamics (MD) simulation are carried ou...