TEM observation of precipitates and their role to mechanical properties in Ti-5553 alloy heated to some temperatures up to 923 K

Author:

Sukedai E.,Aeby-Gautier E.,Dehmas M.

Abstract

A Ti-5553 specimen was continuously heated to 923 K and simultaneously in-situ HEXRD profiles were taken. In addition, specimens heated at the same rate to several temperatures up to 923 K and further quenched were observed by transmission electron microscopy. Based on both results obtained, transformation sequence was clarified, precipitations of ω-, α”iso- and α-phases were confirmed, and size and density of these precipitates were measured. Hardness values of those specimens were also measured. The hardening mechanism was considered as shearing-mechanism for specimens aged at lower temperatures and by-pass one for specimens aged at higher temperature. An attempt of distinction between α”iso - and α-precipitates was also tried. Both precipitates were in needle-like shape and a possibility was suggested by measuring angles between two needle-shape precipitates on {110} of the matrix and comparing with each other.

Publisher

EDP Sciences

Subject

General Medicine

Reference18 articles.

1. Pennock G.M., Flower H.M. and West D.R.F.: Titanium ‘80 Science and Technology, ed. by Kimura H. and Izumi O., (Japan Inst. Metals, 1980) pp. 1343-1351.

2. Okada M., Banerjee D. and Williams J.C.: Titanium Science and Technology, ed. by Lutjering G., Zwicker U. and Bunk W. (D. G. M., 1985) pp. 1835-1842.

3. Ouchi C., Suenaga H. and Kohsaka Y.: Sixth World Conference on Titanium, Proc., ed. by Lacombe P., Tricot R. and Beranger G. (Societe Francaise de Metallurgie, 1988) pp. 819-824.

4. Settefrati A., Dehmas M., Geandier G., Denand B., Aeby-Gautier E., Appolaire B., Khelifati G., Delfosse J. : Proceedings of Ti-2011, Beijing, China, 1, (2011) 468-472.

5. Barriobero-Vila P., Requena G., Schwarz S., Warchomicka F., Buslaps T.: Acta Mater. 95, (2015) 90-101.

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