The ultimate objective of this work is to gain a better understanding of the plastic behavior of rough metal surfaces under contact loading. Attention in this thesis focuses on the study of single and multiple asperities with micrometer scale dimensions, a scale at which plasticity is known to be size dependent. The asperities have very simple geometries, either rectangular or sinusoidal and they are pressed into contact with a rigid platen. The analysis is performed using the discrete dislocation (DD) plasticity method, given its accuracy to describe microscale plasticity and its capability of predicting size effects. In DD, plasticity is modeled as the collective motions of discrete dislocations dislocations, which are modeled as line sin...
The roughness of natural surfaces emerges in the form of surface asperities at length scales of micr...
We investigate the plastic shear response during static friction of an asperity protruding from a la...
Plane strain indentation of single crystals by a periodic array of flat rigid contacts is analyzed. ...
The ultimate objective of this work is to gain a better understanding of the plastic behavior of rou...
It is well known that rough surfaces have asperities at a wide range of length scales; that contacti...
Discrete dislocation plasticity simulations are performed to investigate the static frictional behav...
Discrete dislocation plasticity simulations are performed to investigate the role of interaction bet...
Discrete dislocation plasticity simulations are performed to investigate the role of interaction bet...
The plastic flattening of a sinusoidal metal surface is studied by performing plane strain dislocati...
The work by Greenwood and Williamson (GW) has initiated a simple but effective method of contact mec...
Discrete dislocation plasticity simulations are performed to investigate the static frictional behav...
The plastic flattening of a sinusoidal metal surface is studied by performing plane strain dislocati...
The roughness of natural surfaces emerges in the form of surface asperities at length scales of micr...
We investigate the plastic shear response during static friction of an asperity protruding from a la...
Plane strain indentation of single crystals by a periodic array of flat rigid contacts is analyzed. ...
The ultimate objective of this work is to gain a better understanding of the plastic behavior of rou...
It is well known that rough surfaces have asperities at a wide range of length scales; that contacti...
Discrete dislocation plasticity simulations are performed to investigate the static frictional behav...
Discrete dislocation plasticity simulations are performed to investigate the role of interaction bet...
Discrete dislocation plasticity simulations are performed to investigate the role of interaction bet...
The plastic flattening of a sinusoidal metal surface is studied by performing plane strain dislocati...
The work by Greenwood and Williamson (GW) has initiated a simple but effective method of contact mec...
Discrete dislocation plasticity simulations are performed to investigate the static frictional behav...
The plastic flattening of a sinusoidal metal surface is studied by performing plane strain dislocati...
The roughness of natural surfaces emerges in the form of surface asperities at length scales of micr...
We investigate the plastic shear response during static friction of an asperity protruding from a la...
Plane strain indentation of single crystals by a periodic array of flat rigid contacts is analyzed. ...