AbstractThe cylindrical nano-indentation on metal film/elastic substrate is computationally studied using two-dimensional discrete dislocation plasticity combined with the commercial software ANSYS®, with a focus on the storage volume for geometrically necessary dislocations (GNDs) inside the films and the nano-indentation size effect (NISE). Our calculations show that almost all GNDs are stored in a rectangular area determined by the film thickness and the actual contact width. The variations of indentation contact width with indentation depth for various film thicknesses and indenter radii are fitted by an exponential relation, and then the GND density underneath the indenter is estimated. Based on the Taylor dislocation model and Tabor f...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
The phenomenon of 2D nanoindentation of circular "Brinell" indenter into a single crystal metal thin...
AbstractThe cylindrical nano-indentation on metal film/elastic substrate is computationally studied ...
AbstractThe mechanical properties of film–substrate systems have been investigated through nano-inde...
Planar discrete dislocation plasticity (DDP) calculations that simulate thin single crystal films bo...
A data analysis procedure has been developed to estimate the contact area in an elasto-plastic inden...
This paper presents a large-scale atomic resolution simulation of nanoindentation into a thin alumin...
AbstractThe mechanical properties of film–substrate systems have been investigated through nano-inde...
To examine effects of indentation size and substrate on the hardness determination of thin films, tw...
Nanoindentation is a widely recognized method for characterizing the mechanical properties of thin f...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
This study explores the difficulties encountered when using conventional nanoindentation techniques ...
AbstractMaterial properties such as hardness can be dependent on the size of the indentation load wh...
The mechanical properties of film-substrate systems have been investigated through nano-indentation ...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
The phenomenon of 2D nanoindentation of circular "Brinell" indenter into a single crystal metal thin...
AbstractThe cylindrical nano-indentation on metal film/elastic substrate is computationally studied ...
AbstractThe mechanical properties of film–substrate systems have been investigated through nano-inde...
Planar discrete dislocation plasticity (DDP) calculations that simulate thin single crystal films bo...
A data analysis procedure has been developed to estimate the contact area in an elasto-plastic inden...
This paper presents a large-scale atomic resolution simulation of nanoindentation into a thin alumin...
AbstractThe mechanical properties of film–substrate systems have been investigated through nano-inde...
To examine effects of indentation size and substrate on the hardness determination of thin films, tw...
Nanoindentation is a widely recognized method for characterizing the mechanical properties of thin f...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
This study explores the difficulties encountered when using conventional nanoindentation techniques ...
AbstractMaterial properties such as hardness can be dependent on the size of the indentation load wh...
The mechanical properties of film-substrate systems have been investigated through nano-indentation ...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
Nanoindentation of crystalline materials has been thought as a primarily surface-driven technique th...
The phenomenon of 2D nanoindentation of circular "Brinell" indenter into a single crystal metal thin...