Microstructure plays an important role in strengthening of metallic materials. Various microstructures can be developed in titanium aluminide (TiAl) alloys, which can enable different combinations of properties for various extreme environments in advanced nuclear systems. In the present paper the mechanisms for microstructural strengthening and the effects of various microstructural features on thermal creep and radiation damage resistance of TiAl alloys are reviewed and compared. On the basis of the results, the evidence-based optimum microstructure for the best combination of thermal creep and radiation damage resistance of TiAl alloys is proposed. The heat treatment processes for manufacturing the optimal microstructure are also discusse...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
Increasing the efficiency of aero-engines by increasing the engines’ working temperatures requires, ...
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...
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...
TA15 titanium alloy is widely used in aerospace industry in terms of its high specific strength, goo...
Titanium aluminides are well-accepted elevated temperature materials. In conventional applications, ...
Gamma titanium aluminides are intermetallic alloys with great potential for aerospace applications i...
Gamma titanium aluminides are intermetallic alloys with great potential for aerospace applications i...
After almost three decades of intensive fundamental research and development activities intermetalli...
The need for more efficient gas turbines with lowered fuel consumption and thereby lowered emission ...
There the study objects are TiAl and Ti*003Al aluminides of titanium. The mechanical tests, the tran...
The irradiation microstructure of a titanium aluminide (TiAl) alloy subjected to in situ transmissio...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
Increasing the efficiency of aero-engines by increasing the engines’ working temperatures requires, ...
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...
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...
TA15 titanium alloy is widely used in aerospace industry in terms of its high specific strength, goo...
Titanium aluminides are well-accepted elevated temperature materials. In conventional applications, ...
Gamma titanium aluminides are intermetallic alloys with great potential for aerospace applications i...
Gamma titanium aluminides are intermetallic alloys with great potential for aerospace applications i...
After almost three decades of intensive fundamental research and development activities intermetalli...
The need for more efficient gas turbines with lowered fuel consumption and thereby lowered emission ...
There the study objects are TiAl and Ti*003Al aluminides of titanium. The mechanical tests, the tran...
The irradiation microstructure of a titanium aluminide (TiAl) alloy subjected to in situ transmissio...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...
Increasing the efficiency of aero-engines by increasing the engines’ working temperatures requires, ...
The fact that Gamma titanium aluminides (γ-TiAl) offer strong potential for replacing conventional t...