The intermetallic compound, B2 NiAl, is a promising material for high temperature structural applications such as in aviation jet engines or gas turbines, provided that its high temperature mechanical properties can be improved. Although extensive efforts over the last several decades have been devoted toward enhancing ductility through alloying design and reducing impurities, as well as improving high temperature creep strength through precipitation and dispersion strengthening, these efforts have relied on traditional approaches, a combination of large grain size to limit diffusional creep and precipitation/dispersion (50 ~ 100 nm size) strengthening to limit dislocation creep, for high temperature strengthening. While traditional approac...
Oxide dispersion strengthened (ODS) alloys are potential candidates to be used as high temperature s...
Existing oxide dispersion strengthened (ODS) alloys are, besides Ni-based superalloy single crystals...
There is considerable interest in developing new structural materials in which high use temperatures...
Nickel-base superalloys are the current choice for high-temperature jet engine applications such as ...
Polycrystalline NiAl has an ordered B2 crystal structure and is a material of considerable interest ...
High temperature alloys are essential to many industries that require a stable material to perform i...
The project task was to optimize the intermetallic phase NiAl which offers attractive properties suc...
Ferritic superalloys strengthened by coherent ordered NiAl B2-type precipitates are promising candid...
An attempt has been made to improve the high temperature mechanical strength of the B2 cubic crystal...
The objective of this research is to examine the possibility of using nickel aluminide for high temp...
Abstract—The synthesis, microstructural characterization and microhardness of nanocrystalline B2-pha...
In recent years, there has been an increased emphasis in developing NiAl-based alloys for high- temp...
Hierarchical NiAl [nickel-aluminium compound]/Ni2TiAl [nickel-titanium-aluminum compound] or single ...
NiAl containing 10 vol. % or 30 vol. % of molybdenum or tungsten was fabricated by hot isostatic pre...
The oxidation resistant light weight aluminides: NiAl and TiAl with ordered B2 and L1$_0$ super latt...
Oxide dispersion strengthened (ODS) alloys are potential candidates to be used as high temperature s...
Existing oxide dispersion strengthened (ODS) alloys are, besides Ni-based superalloy single crystals...
There is considerable interest in developing new structural materials in which high use temperatures...
Nickel-base superalloys are the current choice for high-temperature jet engine applications such as ...
Polycrystalline NiAl has an ordered B2 crystal structure and is a material of considerable interest ...
High temperature alloys are essential to many industries that require a stable material to perform i...
The project task was to optimize the intermetallic phase NiAl which offers attractive properties suc...
Ferritic superalloys strengthened by coherent ordered NiAl B2-type precipitates are promising candid...
An attempt has been made to improve the high temperature mechanical strength of the B2 cubic crystal...
The objective of this research is to examine the possibility of using nickel aluminide for high temp...
Abstract—The synthesis, microstructural characterization and microhardness of nanocrystalline B2-pha...
In recent years, there has been an increased emphasis in developing NiAl-based alloys for high- temp...
Hierarchical NiAl [nickel-aluminium compound]/Ni2TiAl [nickel-titanium-aluminum compound] or single ...
NiAl containing 10 vol. % or 30 vol. % of molybdenum or tungsten was fabricated by hot isostatic pre...
The oxidation resistant light weight aluminides: NiAl and TiAl with ordered B2 and L1$_0$ super latt...
Oxide dispersion strengthened (ODS) alloys are potential candidates to be used as high temperature s...
Existing oxide dispersion strengthened (ODS) alloys are, besides Ni-based superalloy single crystals...
There is considerable interest in developing new structural materials in which high use temperatures...