We use molecular simulations to study the nonadhesive and adhesive atomic-scale contact of rough spheres with radii ranging from nanometers to micrometers over more than ten orders of magnitude in applied normal load. At the lowest loads, the interfacial mechanics is governed by the contact mechanics of the first asperity that touches. The dependence of contact area on normal force becomes linear at intermediate loads and crosses over to Hertzian at the largest loads. By combining theories for the limiting cases of nominally flat rough surfaces and smooth spheres, we provide parameter-free analytical expressions for contact area over the whole range of loads. Our results establish a range of validity for common approximations that neglect c...
We present a molecular dynamics study of the contact between a rigid solid with a randomly rough sur...
In this thesis, two types of contact problems are studied by different methods. In the first, a mult...
Contact of rough surfaces at micro and macro scales is studied in this paper. The asperities at micr...
At the molecular scale, there are strong attractive interactions between surfaces, yet few macroscop...
Abstract The evolution of the contact area with normal load for rough surfaces has great fundamental...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Investigating rough surface contacts at the atomic level is instrumental to the overarching understa...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
We report a molecular dynamics study of the contact between a rigid solid with a randomly rough surf...
Abstract. The friction and adhesion between elastic bodies are strongly influenced by the roughness ...
Many naturally formed and processed surfaces are rough over a broad range of length scales. Surface...
We present a molecular dynamics study of the contact between a rigid solid with a randomly rough sur...
We present a molecular dynamics study of the contact between a rigid solid with a randomly rough sur...
In this thesis, two types of contact problems are studied by different methods. In the first, a mult...
Contact of rough surfaces at micro and macro scales is studied in this paper. The asperities at micr...
At the molecular scale, there are strong attractive interactions between surfaces, yet few macroscop...
Abstract The evolution of the contact area with normal load for rough surfaces has great fundamental...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Investigating rough surface contacts at the atomic level is instrumental to the overarching understa...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
Classical molecular dynamics (MD) simulations were performed to study non-adhesive contact at the at...
We report a molecular dynamics study of the contact between a rigid solid with a randomly rough surf...
Abstract. The friction and adhesion between elastic bodies are strongly influenced by the roughness ...
Many naturally formed and processed surfaces are rough over a broad range of length scales. Surface...
We present a molecular dynamics study of the contact between a rigid solid with a randomly rough sur...
We present a molecular dynamics study of the contact between a rigid solid with a randomly rough sur...
In this thesis, two types of contact problems are studied by different methods. In the first, a mult...
Contact of rough surfaces at micro and macro scales is studied in this paper. The asperities at micr...