We combine theoretical and experimental tools to study elastic properties of Fe-Al-Ti superalloys. Focusing on samples with chemical composition Fe71Al22Ti7, we use transmission electron microscopy (TEM) to detect their two-phase superalloy nano-structure (consisting of cuboids embedded into a matrix). The chemical composition of both phases, Fe66.2Al23.3Ti10.5 for cuboids and Fe81Al19 (with about 1 or less of Ti) for the matrix, was determined from an Energy-Dispersive X-ray Spectroscopy (EDS) analysis. The phase of cuboids is found to be a rather strongly off-stoichiometric (Fe-rich and Ti-poor) variant of Heusler Fe2TiAl intermetallic compound with the L21 structure. The phase of the matrix is a solid solution of Al atoms in a ferromagne...
In this study, transmission electron microscopy (TEM) and atom probe tomography (APT) were utilized ...
In this study, we performed a quantum mechanical examination of thermodynamic, structural, elastic, ...
In the present study high energy mechanical milling followed by cold temperature pressing consolidat...
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...
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...
Light-weight aluminum (Al) alloys have widespread applications. However, most Al alloys have inheren...
Light-weight aluminum (Al) alloys have widespread applications. However, most Al alloys have inheren...
In the current research, a framework based on classical molecular dynamics (MD) is developed for com...
The L21-structure Fe2AlTi intermetallic compound is one of the two phases identified in Fe-Al-Ti sup...
We performed a quantum-mechanical study of the effect of antiphase boundaries (APBs) on structural, ...
Understanding the structure-property relationships of materials plays a significant role in the deve...
Topologically close-packed (TCP) intermetallic phase precipitates in nickel-base superalloys are ass...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...
In this study, transmission electron microscopy (TEM) and atom probe tomography (APT) were utilized ...
In this study, we performed a quantum mechanical examination of thermodynamic, structural, elastic, ...
In the present study high energy mechanical milling followed by cold temperature pressing consolidat...
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...
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...
Light-weight aluminum (Al) alloys have widespread applications. However, most Al alloys have inheren...
Light-weight aluminum (Al) alloys have widespread applications. However, most Al alloys have inheren...
In the current research, a framework based on classical molecular dynamics (MD) is developed for com...
The L21-structure Fe2AlTi intermetallic compound is one of the two phases identified in Fe-Al-Ti sup...
We performed a quantum-mechanical study of the effect of antiphase boundaries (APBs) on structural, ...
Understanding the structure-property relationships of materials plays a significant role in the deve...
Topologically close-packed (TCP) intermetallic phase precipitates in nickel-base superalloys are ass...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...
In this study, transmission electron microscopy (TEM) and atom probe tomography (APT) were utilized ...
In this study, we performed a quantum mechanical examination of thermodynamic, structural, elastic, ...
In the present study high energy mechanical milling followed by cold temperature pressing consolidat...