AbstractNumerous indentation tests in the micrometer and nanometer scale have shown that the measured hardness decreases significantly with increasing indentation depth, and this is known as the indentation size effect (ISE). However, several other nanoindentation results for polycrystalline materials show that the indentation hardness increases with increasing indentation depth because of the grain boundary (GB) effect. In this work, we propose a new model for the indentation test using the modified strain gradient plasticity theory. The GB effect is considered by evaluating the density of GNDs on the GB. Using the proposed model, the indentation hardness of polycrystalline materials in micrometer-scale structures is investigated, and comp...
Abstract: We review some of the factors that influence the hardness of polycrystalline materials wit...
The hardness measured by the nanosize indenter under atomic indentation is examined for the cases of...
A continuum theory for elastic-plastic solids that accounts for the size-dependence of strain harden...
AbstractNumerous indentation tests in the micrometer and nanometer scale have shown that the measure...
DoctorRecent experiments with non-uniform plastic deformation have shown the size effects in micro/n...
Micro-indentation test at scales on the order of sub-micron has shown that the measured hardness inc...
AbstractA modified strain gradient theory is proposed based on the nonhomogeneity of polycrystalline...
AbstractGradient plasticity theory formulates a constitutive framework on the continuum level that b...
AbstractIn this work, a Finite Element implementation of a higher order strain gradient theory (due ...
The measured hardness of a metal crystal depends on a variety of length scales. Microstructural feat...
AbstractMaterial properties such as hardness can be dependent on the size of the indentation load wh...
AbstractThe hardness measured by the nanosize indenter under atomic indentation is examined for the ...
Planar discrete dislocation plasticity (DDP) calculations that simulate thin single crystal films bo...
A continuum theory for elastic–plastic solids that accounts for the size-dependence of strain harden...
A model describing nanoindentation as plastic deformation resulting from a strain gradient is invest...
Abstract: We review some of the factors that influence the hardness of polycrystalline materials wit...
The hardness measured by the nanosize indenter under atomic indentation is examined for the cases of...
A continuum theory for elastic-plastic solids that accounts for the size-dependence of strain harden...
AbstractNumerous indentation tests in the micrometer and nanometer scale have shown that the measure...
DoctorRecent experiments with non-uniform plastic deformation have shown the size effects in micro/n...
Micro-indentation test at scales on the order of sub-micron has shown that the measured hardness inc...
AbstractA modified strain gradient theory is proposed based on the nonhomogeneity of polycrystalline...
AbstractGradient plasticity theory formulates a constitutive framework on the continuum level that b...
AbstractIn this work, a Finite Element implementation of a higher order strain gradient theory (due ...
The measured hardness of a metal crystal depends on a variety of length scales. Microstructural feat...
AbstractMaterial properties such as hardness can be dependent on the size of the indentation load wh...
AbstractThe hardness measured by the nanosize indenter under atomic indentation is examined for the ...
Planar discrete dislocation plasticity (DDP) calculations that simulate thin single crystal films bo...
A continuum theory for elastic–plastic solids that accounts for the size-dependence of strain harden...
A model describing nanoindentation as plastic deformation resulting from a strain gradient is invest...
Abstract: We review some of the factors that influence the hardness of polycrystalline materials wit...
The hardness measured by the nanosize indenter under atomic indentation is examined for the cases of...
A continuum theory for elastic-plastic solids that accounts for the size-dependence of strain harden...