Molecular dynamics (MD) simulations of atomic-scale stick-slip have been per- formed for a diamond tip in contact with the (100) surface of fcc Ag, bcc Fe, Si and H-terminated Si, at a temperature of 300 K. Simulations were carried out at different support displacements between 5 and 15 °A. The simulations illustrate the important mechanisms that take place during stick-slip. In particular, for the case of the metals they show a direct link between tip slip events and the emission of dislocations from the point of contact of the tip with the substrate. This occurs both during indentation and scratching. For the case of silicon, no slip events were observed and no sub-surface dislocations were generated underneath the scratch groove. At the ...
We present results of parallel molecular dynamics simulations of nanoindentation and nanotribology e...
We investigate the atomic-scale details of atomic force microscopy through a quasistatic molecular d...
The atomic stick-slip behavior of a Pt tip sliding on a Au(111) surface is studied with atomic force...
Molecular dynamics (MD) simulations of atomic-scale stick-slip have been per- formed for a diamond t...
Molecular dynamics (MD) simulations of atomic-scale stick-slip have been per- formed for a diamond t...
Molecular dynamics simulations are performed to investigate the atomic-scale stick-slip phenomenon o...
Nanotechnology is leading to rapid development of mechanical components whose structure and function...
This thesis presents simulations of nanometre-scale ploughing friction and wear behaviour when a pyr...
This study aims to clarify the friction and wear phenomena, which are of great importance in abrasiv...
4siFriction is an omnipresent phenomenon in all mechanical systems, inducing uncertainties and actin...
This paper presents an atomic-scale study of contact, indentation, and subsequent pulling and dry sl...
We investigate the atomic-scale details of atomic force microscopy through a quasistatic molecular d...
Nanotribology is a research field to study friction, adhesion, wear and lubrication occurred between...
Molecular dynamics simulation is carried out to model the single-asperity friction in atomic force m...
Atomic force microscopy (AFM) and atomistic simulations of atomic friction with silicon oxide tips s...
We present results of parallel molecular dynamics simulations of nanoindentation and nanotribology e...
We investigate the atomic-scale details of atomic force microscopy through a quasistatic molecular d...
The atomic stick-slip behavior of a Pt tip sliding on a Au(111) surface is studied with atomic force...
Molecular dynamics (MD) simulations of atomic-scale stick-slip have been per- formed for a diamond t...
Molecular dynamics (MD) simulations of atomic-scale stick-slip have been per- formed for a diamond t...
Molecular dynamics simulations are performed to investigate the atomic-scale stick-slip phenomenon o...
Nanotechnology is leading to rapid development of mechanical components whose structure and function...
This thesis presents simulations of nanometre-scale ploughing friction and wear behaviour when a pyr...
This study aims to clarify the friction and wear phenomena, which are of great importance in abrasiv...
4siFriction is an omnipresent phenomenon in all mechanical systems, inducing uncertainties and actin...
This paper presents an atomic-scale study of contact, indentation, and subsequent pulling and dry sl...
We investigate the atomic-scale details of atomic force microscopy through a quasistatic molecular d...
Nanotribology is a research field to study friction, adhesion, wear and lubrication occurred between...
Molecular dynamics simulation is carried out to model the single-asperity friction in atomic force m...
Atomic force microscopy (AFM) and atomistic simulations of atomic friction with silicon oxide tips s...
We present results of parallel molecular dynamics simulations of nanoindentation and nanotribology e...
We investigate the atomic-scale details of atomic force microscopy through a quasistatic molecular d...
The atomic stick-slip behavior of a Pt tip sliding on a Au(111) surface is studied with atomic force...