During indentation testing of the low defect density crystalline materials, higher hardness values are found at lower indentation depths, which is referred to as an indentation size effect. The depth-dependence of hardness can be described by the Nix-Gao model, which is based on the concept of Geometrically Necessary Dislocations (GNDs). The underlying dislocation mechanism remains, however, unclear and requires independent measurement of GND density below the indentation. In the present work, the depth-dependency of the GND density is quantified underneath the Berkovich indentations in tungsten via high-resolution electron backscatter diffraction. There a higher GND density is found for lower indentation depths, resulting in a higher Taylo...
Tungsten samples were heat-treated to achieve partial recrystallization and exposed to high ion flux...
Dislocation plays a crucial role in controlling the strength and plasticity of bulk materials. Howev...
Dislocation plays a crucial role in controlling the strength and plasticity of bulk materials. Howev...
In this study, we have investigated the indentation size effect (ISE) of single crystalline tungsten...
In this study, we have investigated the indentation size effect (ISE) of single crystalline tungsten...
In this study, we investigated the mechanism of the indentation size effect based on measurement of ...
Wedge indentation experiments were conducted to study the depth dependence of geometrically necessar...
Many crystalline materials exhibit an indentation size effect (ISE), i.e., an intrinsic increase in ...
Planar discrete dislocation plasticity (DDP) calculations that simulate thin single crystal films bo...
It is well known that plastic deformation is a highly nonlinear dissipative irreversible phenomenon ...
It is well known that plastic deformation is a highly nonlinear dissipative irreversible phenomenon ...
Dislocation density of plasma-exposed tungsten and corresponding force-depth relationships obtained ...
Dislocation density of plasma-exposed tungsten and corresponding force-depth relationships obtained ...
This work addresses the size effect encountered in nanoindentation experiments. It is generally refe...
This work addresses the size effect encountered in nanoindentation experiments. It is generally refe...
Tungsten samples were heat-treated to achieve partial recrystallization and exposed to high ion flux...
Dislocation plays a crucial role in controlling the strength and plasticity of bulk materials. Howev...
Dislocation plays a crucial role in controlling the strength and plasticity of bulk materials. Howev...
In this study, we have investigated the indentation size effect (ISE) of single crystalline tungsten...
In this study, we have investigated the indentation size effect (ISE) of single crystalline tungsten...
In this study, we investigated the mechanism of the indentation size effect based on measurement of ...
Wedge indentation experiments were conducted to study the depth dependence of geometrically necessar...
Many crystalline materials exhibit an indentation size effect (ISE), i.e., an intrinsic increase in ...
Planar discrete dislocation plasticity (DDP) calculations that simulate thin single crystal films bo...
It is well known that plastic deformation is a highly nonlinear dissipative irreversible phenomenon ...
It is well known that plastic deformation is a highly nonlinear dissipative irreversible phenomenon ...
Dislocation density of plasma-exposed tungsten and corresponding force-depth relationships obtained ...
Dislocation density of plasma-exposed tungsten and corresponding force-depth relationships obtained ...
This work addresses the size effect encountered in nanoindentation experiments. It is generally refe...
This work addresses the size effect encountered in nanoindentation experiments. It is generally refe...
Tungsten samples were heat-treated to achieve partial recrystallization and exposed to high ion flux...
Dislocation plays a crucial role in controlling the strength and plasticity of bulk materials. Howev...
Dislocation plays a crucial role in controlling the strength and plasticity of bulk materials. Howev...