AbstractA series of nanoindentation experiments with maximum depths varying from 1200 to 2500nm were conducted to study indentation size effects on copper, aluminium alloy and nickel. As expected, results from classical plasticity simulation deviate significantly from experimental data for indentation at micron and submicron levels. C0 continuity finite element analysis incorporating the conventional theory of mechanism-based strain-gradient (CMSG) plasticity has been carried out to simulate spherical and Berkovich indentation tests at micron level where size effect is observed. The results from both numerical and actual spherical and Berkovich indentation tests demonstrate that materials are significantly strengthened for deformation at th...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
AbstractA series of nanoindentation experiments with maximum depths varying from 1200 to 2500nm were...
AbstractIn this work, a Finite Element implementation of a higher order strain gradient theory (due ...
Micro-indentation tests at scales on the order of sub-micron have shown that the measured hardness i...
AbstractNon-uniform plastic deformation of materials exhibits a strong size dependence when the mate...
The size effect in inelastic behavior of materials is currently studied by many researchers, and the...
AbstractMaterial properties such as hardness can be dependent on the size of the indentation load wh...
Material properties such as hardness can be dependent on the size of the indentation load when that ...
Material properties such as hardness can be dependent on the size of the indentation load when that ...
Since a long time, indentation testing is a commonly used technique to measure the properties of mat...
This thesis comprises studies of size effects in the plasticity of metals and ceramics at length sca...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
AbstractA series of nanoindentation experiments with maximum depths varying from 1200 to 2500nm were...
AbstractIn this work, a Finite Element implementation of a higher order strain gradient theory (due ...
Micro-indentation tests at scales on the order of sub-micron have shown that the measured hardness i...
AbstractNon-uniform plastic deformation of materials exhibits a strong size dependence when the mate...
The size effect in inelastic behavior of materials is currently studied by many researchers, and the...
AbstractMaterial properties such as hardness can be dependent on the size of the indentation load wh...
Material properties such as hardness can be dependent on the size of the indentation load when that ...
Material properties such as hardness can be dependent on the size of the indentation load when that ...
Since a long time, indentation testing is a commonly used technique to measure the properties of mat...
This thesis comprises studies of size effects in the plasticity of metals and ceramics at length sca...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...
The strength of materials is related to their intrinsic (microstructural) length scale. Small scale ...