Molecular dynamics simulations indicate that the deformation behavior and mechanism of Cu64Zr36 composite structures reinforced with B2 CuZr nanowires are strongly influenced by the martensitic phase transformation and distribution of these crystalline precipitates. When nanowires are distributed in the glassy matrix along the deformation direction, a two-steps stress-induced martensitic phase transformation is observed. Since the martensitic transformation is driven by the elastic energy release, the strain localization behavior in the glassy matrix is strongly affected. Therefore, the composite materials reinforced with a crystalline phase, which shows stress-induced martensitic transformation, represent a route for controlling the proper...
Nanocrystalline metals contain a large fraction of high-energy grain boundaries, which may be consid...
In the present investigation molecular dynamics (MD) simulations of nano-indentation on Zr50Cu50, Zr...
A nanometer-scale second phase in metallic glass (MG) heterostructures is effective to improve mecha...
We model the deformation behavior of metallic amorphous Cu_64Zr_36/crystalline B2 CuZr nanolaminate ...
Metallic glasses with embedded crystalline phases have been experimentally reported to exhibit enhan...
We investigate the influence of various microstructural features on the deformation behavior of bina...
The variation of the transformation-mediated deformation behavior with microstructural changes in Cu...
Metallic glass composites with shape memory crystals show enhanced plasticity and work-hardening cap...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
The mechanical properties of metallic glasses cannot only be influenced by their chemical compositio...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 met...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
The influence of grain size and composition on the mechanical properties of Cu–Zr nanoglasses (NGs) ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
Nanocrystalline metals contain a large fraction of high-energy grain boundaries, which may be consid...
In the present investigation molecular dynamics (MD) simulations of nano-indentation on Zr50Cu50, Zr...
A nanometer-scale second phase in metallic glass (MG) heterostructures is effective to improve mecha...
We model the deformation behavior of metallic amorphous Cu_64Zr_36/crystalline B2 CuZr nanolaminate ...
Metallic glasses with embedded crystalline phases have been experimentally reported to exhibit enhan...
We investigate the influence of various microstructural features on the deformation behavior of bina...
The variation of the transformation-mediated deformation behavior with microstructural changes in Cu...
Metallic glass composites with shape memory crystals show enhanced plasticity and work-hardening cap...
In this study, we characterize the mechanical properties of Cu64Zr36 nanoglasses under tensile load ...
The mechanical properties of metallic glasses cannot only be influenced by their chemical compositio...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 met...
The scope of this thesis is to elucidate structure-property relationships in copper-zirconium amorph...
The influence of grain size and composition on the mechanical properties of Cu–Zr nanoglasses (NGs) ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
We investigate the influence of microstructural properties on the plastic deformation behavior of Cu...
Nanocrystalline metals contain a large fraction of high-energy grain boundaries, which may be consid...
In the present investigation molecular dynamics (MD) simulations of nano-indentation on Zr50Cu50, Zr...
A nanometer-scale second phase in metallic glass (MG) heterostructures is effective to improve mecha...