Titanium aluminides are well-accepted elevated temperature materials. In conventional applications, their poor oxidation resistance limits the maximum operating temperature. Advanced reactors operate in nonoxidizing environments. This could enlarge the applicability of these materials to higher temperatures. The behavior of a cast gamma-alpha-2 TiAl was investigated under thermal and irradiation conditions. Irradiation creep was studied in beam using helium implantation. Dog-bone samples of dimensions 10×2×0.2mm3 were investigated in a temperature range of 300°C to 500°C under irradiation, and significant creep strains were detected. At temperatures above 500°C, thermal creep becomes the predominant mechanism. Thermal creep was investigated...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Titanium aluminide (TiAl) alloys were initially developed for moderate temperature (600–850 °C) appl...
Titanium aluminide (TiAl) alloys exhibit high specific strength, low density, good oxidation, corros...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
Microstructure plays an important role in strengthening of metallic materials. Various microstructur...
Microstructure plays an important role in strengthening of metallic materials. Various microstructur...
Microstructure plays an important role in strengthening of metallic materials. Various microstructur...
Titanium aluminides (TiAl) are considered as potential alternatives to replace nickel-based alloys o...
Titanium aluminides (TiAl) are considered as potential alternatives to replace nickel-based alloys o...
Titanium aluminides (TiAl) are considered as potential alternatives to replace nickel-based alloys o...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Titanium aluminide (TiAl) alloys were initially developed for moderate temperature (600–850 °C) appl...
Titanium aluminide (TiAl) alloys exhibit high specific strength, low density, good oxidation, corros...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
Microstructure plays an important role in strengthening of metallic materials. Various microstructur...
Microstructure plays an important role in strengthening of metallic materials. Various microstructur...
Microstructure plays an important role in strengthening of metallic materials. Various microstructur...
Titanium aluminides (TiAl) are considered as potential alternatives to replace nickel-based alloys o...
Titanium aluminides (TiAl) are considered as potential alternatives to replace nickel-based alloys o...
Titanium aluminides (TiAl) are considered as potential alternatives to replace nickel-based alloys o...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...
Gamma titanium aluminides (γ-TiAl) display significantly improved high temperature mechanical proper...