Claims
- 1. A lamellar γTiAl alloy having a microstructure with a plurality of lamellar colonies having a nonplanar morphology.
- 2. A lamellar γTiAl alloy according to claim 1, wherein each of said lamellar colonies exhibit a nonplanar morphology comprised of stacked nonplanar γTiAl and α2Ti3Al lamella.
- 3. A lamellar γTiAl alloy according to claim 2, wherein said stacked nonplanar lamella comprise γTiAl platelets having a triangularly shaped unit cell and a stack with y twins and irregularly interspersed α2Ti3Al platelets.
- 4. A lamellar γTiAl alloy according to claim 1, wherein said plurality of nonplanar lamellar colonies having said nonplanar morphology comprise at least 10% of the grains within said matrix.
- 5. A lamellar γTiAl alloy according to claim 1, wherein said plurality of nonplanar lamellar colonies are located on outer edges of said matrix.
- 6. A lamellar γTiAl alloy according to claim 1, wherein each of said plurality of grains having said nonplanar morphology has a size in the range of 0.8 to 1.09 microns.
- 7. A method for manufacturing a lamellar alloy having a plurality of grains with a nonplanar morphology comprising the steps of:
casting said lamellar alloy; and extruding said cast alloy at an extrusion temperature in the range of 1290 to 1315 degrees Centigrade at an extrusion ratio in the range of 90:1 to 100:1 to form said grains with said non-planar morphology.
- 8. A method according to claim 7 wherein said casting step comprises casting a TiAl alloy.
STATEMENT OF GOVERNMENT INTEREST
[0001] The Government of the United States of America may have rights in the present invention pursuant to Contract No. F33615-94-C-2422 awarded by the Department of the Air Force.