Molecular dynamics (MD) simulations are carried out for cyclic nano-indentation on sintered metal (Al)-metallic glass (Cu66Zr34) reinforced composites termed as composite-I and on sintered alloy(Al-4%Cu)-metallic glass (Cu66Zr34)termed as composite-II to measure the hardness, stiffness and reduced young modulus.I ndenter radius, and indentation speed effects on the load-displacement behavior, hardness, stiffness, and young modulus has been studied. Depth-sensing cycling nano-indentation is studied to assess depth-dependent plastic deformation of the composite at room temperature. The results showed that the plastic deformation continued to take place and the continuous displa...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
Stiffness and elastic mechanical properties of the Zr44-Ti11-Cu10-Ni10-Be25 metal glass Alloy have b...
In this paper, we study nanoindentation in Cu64Zr36 metallic glass (MG) nanopillars with different a...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
In the present investigation molecular dynamics (MD) simulations of nano-indentation on Zr50Cu50, Zr...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
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...
Molecular dynamics with an embedded-atom method potential is used to simulate the nanoindentation of...
This thesis is concerned with the modeling and simulation deformation studies of crystalline Al-Cu (...
In this work, the deformation behavior of as-prepared (AP) and structurally relaxed (SR) Cu–Zr–based...
AbstractThe mechanical behavior of Cu-Zr-Al metallic-glass thin films under indentation was studied ...
Nano- and micro-indentation studies were carried out to characterise a plasticity mechanism through ...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 meta...
Bulk metallic glasses (BMGs) are amorphous metals with impressive mechanical properties, such as hig...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
Stiffness and elastic mechanical properties of the Zr44-Ti11-Cu10-Ni10-Be25 metal glass Alloy have b...
In this paper, we study nanoindentation in Cu64Zr36 metallic glass (MG) nanopillars with different a...
We presentmolecular dynamics simulations of nanoindentation in order to investigate the effects of s...
In the present investigation molecular dynamics (MD) simulations of nano-indentation on Zr50Cu50, Zr...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
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...
Molecular dynamics with an embedded-atom method potential is used to simulate the nanoindentation of...
This thesis is concerned with the modeling and simulation deformation studies of crystalline Al-Cu (...
In this work, the deformation behavior of as-prepared (AP) and structurally relaxed (SR) Cu–Zr–based...
AbstractThe mechanical behavior of Cu-Zr-Al metallic-glass thin films under indentation was studied ...
Nano- and micro-indentation studies were carried out to characterise a plasticity mechanism through ...
Using molecular dynamics simulations, we compare the creep properties of a homogeneous Cu64Zr36 meta...
Bulk metallic glasses (BMGs) are amorphous metals with impressive mechanical properties, such as hig...
Using molecular dynamics simulation, we study nanoindentation in large samples of Cu−Zr glass ...
Stiffness and elastic mechanical properties of the Zr44-Ti11-Cu10-Ni10-Be25 metal glass Alloy have b...
In this paper, we study nanoindentation in Cu64Zr36 metallic glass (MG) nanopillars with different a...