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Published in: Journal of Materials Science 13/2013

01-07-2013 | Nanostructured Materials

Effect of severe plastic deformation on creep behaviour of a Ti–6Al–4V alloy

Authors: Petr Kral, Jiri Dvorak, Sergey Zherebtsov, Gennady Salishchev, Marie Kvapilova, Vaclav Sklenicka

Published in: Journal of Materials Science | Issue 13/2013

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Abstract

This paper examines the effect of severe plastic deformation on creep behaviour of a Ti–6Al–4V alloy. The processed material with an ultrafine-grained (UFG) structure (d ≈ 150 nm) was prepared by multiaxial forging. Uniaxial constant stress compression and constant load tensile creep tests were performed at 648–698 K and at stresses ranging between 300 and 600 MPa on the UFG processed alloy and, for comparison purposes, on its coarse-grained (CG) state. The values of the stress exponents of the minimum creep rate n and creep activation energy Q c were determined. Creep behaviour was also investigated by nanoindentation method at room temperature under constant load. The microstructure was examined by transmission electron microscopy and scanning electron microscope equipped with an electron back scatter diffraction unit. The results of the uniaxial creep tests showed that the minimum creep rates of the UFG specimens are significantly higher in comparison with those of the CG state. However, the differences in the minimum creep rates of both states of alloy strongly decrease with increasing values of applied stress. The CG alloy exhibits better creep resistance than the UFG one over the stress range used; the minimum creep rate for the UFG alloy is about one to two orders of magnitude higher than that of the CG alloy. The indentation creep tests showed that annealing had little effect on the creep behaviour in UFG Ti alloy at room temperature.

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Metadata
Title
Effect of severe plastic deformation on creep behaviour of a Ti–6Al–4V alloy
Authors
Petr Kral
Jiri Dvorak
Sergey Zherebtsov
Gennady Salishchev
Marie Kvapilova
Vaclav Sklenicka
Publication date
01-07-2013
Publisher
Springer US
Published in
Journal of Materials Science / Issue 13/2013
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-013-7160-9

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