Hostname: page-component-7bb8b95d7b-fmk2r Total loading time: 0 Render date: 2024-09-22T19:51:55.447Z Has data issue: false hasContentIssue false

Microstructure of Titanium-Aluminides after Thermomechanical Treatment

Published online by Cambridge University Press:  26 February 2011

J. Seeger
Affiliation:
Technische Universität Hamburg-Harburg, Werkstoffphysik und -technologie Eiβendorfer Str. 42, W-2100 Hamburg 90, Federal Republic of Germany
C. Hartig
Affiliation:
Technische Universität Hamburg-Harburg, Werkstoffphysik und -technologie Eiβendorfer Str. 42, W-2100 Hamburg 90, Federal Republic of Germany
A. Bartels
Affiliation:
Technische Universität Hamburg-Harburg, Werkstoffphysik und -technologie Eiβendorfer Str. 42, W-2100 Hamburg 90, Federal Republic of Germany
H. Mecking
Affiliation:
Technische Universität Hamburg-Harburg, Werkstoffphysik und -technologie Eiβendorfer Str. 42, W-2100 Hamburg 90, Federal Republic of Germany
Get access

Abstract

Forging in the α2+γ-phase field results in grain refined zones by dynamic recrystallization, but still coarse γ-grains and a residual amount of α2/γ-lamellae are observed. During subsequent heat treatment in the α+γ-phase field the recrystallization leads to inhomogeneous distributions of α2-Ti3Al and grain sizes of γ-TiAl. Due to these inhomogeneities a significant increase of the room temperature ductility is not found.

Type
Research Article
Copyright
Copyright © Materials Research Society 1991

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

[1] Hall, E.O. Proc. Phys. Soc., B64 (1951),747 Google Scholar
[1a] and Petch, N.J., J. Iron Steel Inst., 174 (1953), 25.Google Scholar
[2] Schulson, E.M., Barker, D.R.; Scripta Met., 17 (1983) 519.Google Scholar
[3] Fukutomi, H., Hartig, Ch., Mecking, H.; Zeitschrift für Metallkunde, 81 (1990)272.Google Scholar
[4] Vasudevan, V.K., Court, S.A., Kurath, P., Fraser, H.L.; Scripta Met. 23 (1989) 467.Google Scholar
[5] Kim, Y.W., J. Metals, 41 (1989) 24.Google Scholar
[6] Blackburn, M.J.; The Science, Technology and Application of Titanium (Oxford: Pergamon Press, 1970), Ed. Jaffee, R.I., Promisel, N.E., pp. 633643.Google Scholar
[7] McCullough, C., Valencia, J.J., Levi, C.G., Mehrabian, R., Acta Met. 37 (1989) 1321.Google Scholar
[8] Pfullmann, T., Diplomarbeit 1989, GKSS-Geesthacht, Universität Hamburg, Germany.Google Scholar