The thermal stability of highly disordered mechanically alloyed nanocrystalline NiAl has been evaluated. The reordering of disordered NiAl(Cr) shows extremely fast kinetics on isothermal annealing at and above 673K, while the process is quite sluggish below this temperature. On the other hand, significant reordering in NiAl(Fe) takes place even at 573K. A unique dependence of reordering on the grain growth of the nanophase is evident during thermal treatment. Rapid grain coarsening begins only as the absolute temperature approaches approximately 0.4 T m, where T m is the melting point of the aluminide
Abstract\u2014Theelasticenergydissipationanddynamicmodulusofseveralintermetallic compounds with the ...
Nanocrystalline metals exhibit exceptional mechanical properties, such as high strength and wear res...
The stability of the martensitic transformation in Ni-35at% Al was investigated as a function of pro...
Ni3Al alloys of nanometer dimensions in the range 10-38 nm could be synthesized by reaction sinterin...
The mechanically activated self-propagating high-temperature synthesis (MASHS) technique and the mec...
The optimum milling parameters and energy domains for the synthesis of nanocrystalline NiAl by mecha...
Abstract—The synthesis, microstructural characterization and microhardness of nanocrystalline B2-pha...
Nanocrystalline solid solutions and intermetallic phases in Cu---Ni (enthalpy of formation, ΔHf...
The influence of a boron addition (0.1 wt%) on the structural stability of high-purity nanocrystalli...
In the present study high energy mechanical milling followed by cold temperature pressing consolidat...
The synthesis of nanocrystalline Fe3Al powder by mechanical alloying as well as the structural order...
Nanocrystalline NiAl was produced from pre-cast alloys using an electron beam inert gas condensation...
NiAl single crystals with small deviation from stoichiometry and low impurity content were grown by ...
Thermal stability of nanograined metals can be difficult to attain due to the large driving force fo...
NiAl intermetallic compound was synthesized by mechanical alloying technique in planetary and attrit...
Abstract\u2014Theelasticenergydissipationanddynamicmodulusofseveralintermetallic compounds with the ...
Nanocrystalline metals exhibit exceptional mechanical properties, such as high strength and wear res...
The stability of the martensitic transformation in Ni-35at% Al was investigated as a function of pro...
Ni3Al alloys of nanometer dimensions in the range 10-38 nm could be synthesized by reaction sinterin...
The mechanically activated self-propagating high-temperature synthesis (MASHS) technique and the mec...
The optimum milling parameters and energy domains for the synthesis of nanocrystalline NiAl by mecha...
Abstract—The synthesis, microstructural characterization and microhardness of nanocrystalline B2-pha...
Nanocrystalline solid solutions and intermetallic phases in Cu---Ni (enthalpy of formation, ΔHf...
The influence of a boron addition (0.1 wt%) on the structural stability of high-purity nanocrystalli...
In the present study high energy mechanical milling followed by cold temperature pressing consolidat...
The synthesis of nanocrystalline Fe3Al powder by mechanical alloying as well as the structural order...
Nanocrystalline NiAl was produced from pre-cast alloys using an electron beam inert gas condensation...
NiAl single crystals with small deviation from stoichiometry and low impurity content were grown by ...
Thermal stability of nanograined metals can be difficult to attain due to the large driving force fo...
NiAl intermetallic compound was synthesized by mechanical alloying technique in planetary and attrit...
Abstract\u2014Theelasticenergydissipationanddynamicmodulusofseveralintermetallic compounds with the ...
Nanocrystalline metals exhibit exceptional mechanical properties, such as high strength and wear res...
The stability of the martensitic transformation in Ni-35at% Al was investigated as a function of pro...