The influence of grain size and composition on the mechanical properties of Cu–Zr nanoglasses (NGs) is investigated by molecular dynamics simulations using two model glasses of different alloy composition, namely Cu64Zr36 (Cu-rich) and Cu36Zr64 (Zr-rich). When the grain size is increased, or the fraction of interfaces in these NGs is decreased, we find a transition from a homogeneous to an inhomogeneous plastic deformation, because the softer interfaces are promoting the formation shear transformation zones. In case of the Cu-rich system, shear localization at the interfaces is most pronounced, since both the topological order and free volume content of the interfaces are very different from the bulk phase. After thermal treatment the redis...
The prospect of realizing new bulk metallic glasses with improved properties has driven a large amou...
Internal interfaces in a Cu64Zr36 glass were generated by joining two planar surfaces and studied wi...
Internal interfaces in a Cu64Zr36 glass were generated by joining two planar surfaces and studied wi...
The influence of grain size and composition on the mechanical properties of Cu–Zr nanoglasses (NGs) ...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
We investigate the influence of various microstructural features on the deformation behavior of bina...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
Nanocrystalline metals contain a large fraction of high-energy grain boundaries, which may be consid...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 meta...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 meta...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
The prospect of realizing new bulk metallic glasses with improved properties has driven a large amou...
Internal interfaces in a Cu64Zr36 glass were generated by joining two planar surfaces and studied wi...
Internal interfaces in a Cu64Zr36 glass were generated by joining two planar surfaces and studied wi...
The influence of grain size and composition on the mechanical properties of Cu–Zr nanoglasses (NGs) ...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
We investigate the influence of various microstructural features on the deformation behavior of bina...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
Nanocrystalline metals contain a large fraction of high-energy grain boundaries, which may be consid...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 meta...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 meta...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
The prospect of realizing new bulk metallic glasses with improved properties has driven a large amou...
Internal interfaces in a Cu64Zr36 glass were generated by joining two planar surfaces and studied wi...
Internal interfaces in a Cu64Zr36 glass were generated by joining two planar surfaces and studied wi...