We present a theoretical study of dry sliding friction, which has a close bearing on the experiments done by using the atomic and friction force microscope. By performing atomic-scale calculations for the friction between a single atom and monoatomic infinite chain, we examined the effect of various material parameters on the stick-slip motion. We found that the perpendicular elastic deformation of the substrate that is induced by the sliding object is crucial for the energy damping in friction. In this case, the average friction force strongly depends on the perpendicular force constant of the substrate and the friction constant varies with the normal force. In particular, soft materials that continue to be elastic for a wide range of perp...
Friction between two objects can be understood by the making, stretching, and breaking of thousands ...
Using the quasistatic Tomlinson model as a simple representation of an atomic force microscope, cond...
Sliding friction at nanometer scale has become an important factor in the miniaturization of moving ...
Simulations of dry sliding friction between a metal asperity and an incommensurate metal surface rev...
Friction has long been the subject of research: the empirical da Vinci-Amontons friction laws have b...
Cataloged from PDF version of article.This paper presents an analysis of the interaction energy and ...
This paper presents an analysis of the interaction energy and various forces between two surfaces, a...
Sliding friction is a nonconservative force in which kinetic energy is dissipated via various phenom...
Although, a lot is known about the factors contributing to friction, a complete physical understandi...
This chapter reviews friction force microscopy experiments that reveal atomic-scale processes in sin...
Nanotribology is a research field to study friction, adhesion, wear and lubrication occurred between...
The occurrence of multiple jumps in 2D atomic-scale friction measurements is used to quantify the vi...
This chapter presents a comparative analysis of the dry sliding friction between the atomically flat...
This paper presents an atomic-scale study of contact, indentation, and subsequent pulling and dry sl...
Friction between two surfaces is due to nano- and micro-asperities at the interface that establish t...
Friction between two objects can be understood by the making, stretching, and breaking of thousands ...
Using the quasistatic Tomlinson model as a simple representation of an atomic force microscope, cond...
Sliding friction at nanometer scale has become an important factor in the miniaturization of moving ...
Simulations of dry sliding friction between a metal asperity and an incommensurate metal surface rev...
Friction has long been the subject of research: the empirical da Vinci-Amontons friction laws have b...
Cataloged from PDF version of article.This paper presents an analysis of the interaction energy and ...
This paper presents an analysis of the interaction energy and various forces between two surfaces, a...
Sliding friction is a nonconservative force in which kinetic energy is dissipated via various phenom...
Although, a lot is known about the factors contributing to friction, a complete physical understandi...
This chapter reviews friction force microscopy experiments that reveal atomic-scale processes in sin...
Nanotribology is a research field to study friction, adhesion, wear and lubrication occurred between...
The occurrence of multiple jumps in 2D atomic-scale friction measurements is used to quantify the vi...
This chapter presents a comparative analysis of the dry sliding friction between the atomically flat...
This paper presents an atomic-scale study of contact, indentation, and subsequent pulling and dry sl...
Friction between two surfaces is due to nano- and micro-asperities at the interface that establish t...
Friction between two objects can be understood by the making, stretching, and breaking of thousands ...
Using the quasistatic Tomlinson model as a simple representation of an atomic force microscope, cond...
Sliding friction at nanometer scale has become an important factor in the miniaturization of moving ...