We present an ab initio and atomistic study of the stress-strain response and elastic stability of the ordered Fe 3 Al compound with the D0 3 structure and a disordered Fe-Al solid solution with 18.75 at.% Al as well as of a nanocomposite consisting of an equal molar amount of both phases under uniaxial loading along the [001] direction. The tensile tests were performed under complex conditions including the effect of the lateral stress on the tensile strength and temperature effect. By comparing the behavior of individual phases with that of the nanocomposite we find that the disordered Fe-Al phase represents the weakest point of the studied nanocomposite in terms of tensile loading. The cleavage plane of the whole nanocompo...
The structural and mechanical properties of Fe-Al compounds (FeAl, Fe2Al, Fe3Al, FeAl2, FeAl3, Fe2Al...
The paper studies the stress-strain and fracture behaviour of nanocrystalline (NC) pure Al and NC bi...
The structural and mechanical properties of Fe-Al compounds (FeAl, FeAl, FeAl, FeAl, FeAl, FeAl) hav...
We present an ab initio and atomistic study of the stress-strain response and elastic stability of t...
We present an ab initio and atomistic study of the stress-strain response and elastic stability of t...
Fe-Al-based nanocomposites with a superalloy-type of microstructure constitute a very promising clas...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...
We combine theoretical and experimental tools to study elastic properties of Fe-Al-Ti superalloys. F...
The joining of aluminum and steel has been considered an efficient solution for building light-weigh...
First-principles virtual tensile and shear strength calculations have been performed on the Fe2Al5//...
We applied first-principles electronic structure calculations to study structural, thermodynamic and...
First-principles virtual tensile and shear test calculations have been performed to Al(0 0 )//-AlFeS...
The mechanisms of deformation and failure in Al-Si nanocomposites, formed by adding Si particles to ...
The structural and mechanical properties of Fe-Al compounds (FeAl, Fe2Al, Fe3Al, FeAl2, FeAl3, Fe2Al...
In the current research, a framework based on classical molecular dynamics (MD) is developed for com...
The structural and mechanical properties of Fe-Al compounds (FeAl, Fe2Al, Fe3Al, FeAl2, FeAl3, Fe2Al...
The paper studies the stress-strain and fracture behaviour of nanocrystalline (NC) pure Al and NC bi...
The structural and mechanical properties of Fe-Al compounds (FeAl, FeAl, FeAl, FeAl, FeAl, FeAl) hav...
We present an ab initio and atomistic study of the stress-strain response and elastic stability of t...
We present an ab initio and atomistic study of the stress-strain response and elastic stability of t...
Fe-Al-based nanocomposites with a superalloy-type of microstructure constitute a very promising clas...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...
We combine theoretical and experimental tools to study elastic properties of Fe-Al-Ti superalloys. F...
The joining of aluminum and steel has been considered an efficient solution for building light-weigh...
First-principles virtual tensile and shear strength calculations have been performed on the Fe2Al5//...
We applied first-principles electronic structure calculations to study structural, thermodynamic and...
First-principles virtual tensile and shear test calculations have been performed to Al(0 0 )//-AlFeS...
The mechanisms of deformation and failure in Al-Si nanocomposites, formed by adding Si particles to ...
The structural and mechanical properties of Fe-Al compounds (FeAl, Fe2Al, Fe3Al, FeAl2, FeAl3, Fe2Al...
In the current research, a framework based on classical molecular dynamics (MD) is developed for com...
The structural and mechanical properties of Fe-Al compounds (FeAl, Fe2Al, Fe3Al, FeAl2, FeAl3, Fe2Al...
The paper studies the stress-strain and fracture behaviour of nanocrystalline (NC) pure Al and NC bi...
The structural and mechanical properties of Fe-Al compounds (FeAl, FeAl, FeAl, FeAl, FeAl, FeAl) hav...