The depth dependence of hardness in copper single crystals was studied using nanoindentation methods. Results show the depth effect on hardness of the crystals is related to the polishing methods. Mechanical polish results in higher hardness value than electropolish as the load increases.link_to_subscribed_fulltex
Instrumented nanoindentation was employed to study the depth dependence of nanohardness in a CuAlNi ...
The Meyer hardness H as load F over contact area AC: H=F/AC, has the physical meaning of the mean pr...
The objective of this study is to identify the mechanics of machining at nano scale on single crysta...
This paper studies surface effects on the depth-dependent hardness and proposes a novel method to es...
MasterThis thesis investigates deformation behaviors of Cu single crystals such as the indentation s...
Nanoindentation hardness measurements were performed on nanocrystalline (nc-) Cu alloys to test rece...
A model describing nanoindentation as plastic deformation resulting from a strain gradient is invest...
Micro-indentation tests at scales on the order of sub-micron have shown that measured hardness incre...
In the past, hardness measurements on nanocrystalline metals were limited to Vickers micro-hardness ...
There is expanded interest in the long-standing subject of the hardness properties of materials. A m...
Simple cubic (NiAl), body-centered cubic (Fe-3%Si) and face-centered cubic (copper) single crystals ...
Nano-scratch testing has been used throughout this thesis in order to deepen the understanding of th...
A statistical indentation method has been employed to study the hardness value of fire-refined high co...
Abstract Hardness standard of tungsten single crystal were utilized in order to check stability and ...
A crystal plasticity finite element method constitutive model was developed to investigate the aniso...
Instrumented nanoindentation was employed to study the depth dependence of nanohardness in a CuAlNi ...
The Meyer hardness H as load F over contact area AC: H=F/AC, has the physical meaning of the mean pr...
The objective of this study is to identify the mechanics of machining at nano scale on single crysta...
This paper studies surface effects on the depth-dependent hardness and proposes a novel method to es...
MasterThis thesis investigates deformation behaviors of Cu single crystals such as the indentation s...
Nanoindentation hardness measurements were performed on nanocrystalline (nc-) Cu alloys to test rece...
A model describing nanoindentation as plastic deformation resulting from a strain gradient is invest...
Micro-indentation tests at scales on the order of sub-micron have shown that measured hardness incre...
In the past, hardness measurements on nanocrystalline metals were limited to Vickers micro-hardness ...
There is expanded interest in the long-standing subject of the hardness properties of materials. A m...
Simple cubic (NiAl), body-centered cubic (Fe-3%Si) and face-centered cubic (copper) single crystals ...
Nano-scratch testing has been used throughout this thesis in order to deepen the understanding of th...
A statistical indentation method has been employed to study the hardness value of fire-refined high co...
Abstract Hardness standard of tungsten single crystal were utilized in order to check stability and ...
A crystal plasticity finite element method constitutive model was developed to investigate the aniso...
Instrumented nanoindentation was employed to study the depth dependence of nanohardness in a CuAlNi ...
The Meyer hardness H as load F over contact area AC: H=F/AC, has the physical meaning of the mean pr...
The objective of this study is to identify the mechanics of machining at nano scale on single crysta...