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Grain refining of a Ti-6Al-4V alloy by high-pressure torsion and low temperature superplasticity

Grain refining of a Ti-6Al-4V alloy by high-pressure torsion and low temperature superplasticity
Grain refining of a Ti-6Al-4V alloy by high-pressure torsion and low temperature superplasticity
A cold-rolled Ti-6Al-4V sheet was subjected to heat treatmentprior to processing by high-pressure torsion (HPT). Quantitative measurements revealed that the volume fractions were 25% equiaxed ? phase and 75% lamellar (?+?). The grain size of the ? phase was 9.5±1.5 ?m. The processing by HPT was performed at room temperature with a pressure of 6.0 GPa and a rotation speed of 1 rpm. Processing of the material was conducted through a total number of revolutions, N, of 1/4, 1, 5, 10 and 20. After 1 turn in HPT, the traces of shear deformation appeared. When the turns increased to 5, shear deformation was more severe. After 10 turns, the fibrous structure basically disappeared and ultrafine equiaxed grains were formed. When the deformation proceeded to 20 turns, a series ofhigh-angle boundaries were formed in the sample and the average size of equiaxed grains was 77±15 nm.After HPT processing, the microhardness increased as the numbers of HPT turns increased and the distribution of hardness tended to be relatively homogeneous when the HPT continued to 20 turns.Superplastic deformation tests were performed at 873K at different strain rates in the material processed by HPT and an elongation of 790% was achieved when deforming at 873K and 10-4 s-1
2218-5046
281-286
Fu, J.
76cdabe5-fdd1-49e0-ba72-1524bca50df9
Ding, H.
c96d226c-9a1c-40df-87f8-099c5e8d575f
Huang, Y.
9f4df815-51c1-4ee8-ad63-a92bf997103e
Pereira, P.H.R.
9ee129fd-0e06-482d-990c-971aaf83b1d0
Zhang, W.
1c80d4f2-4ba8-41f6-85a6-a76a4d65dc9b
Langdon, T.G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86
Fu, J.
76cdabe5-fdd1-49e0-ba72-1524bca50df9
Ding, H.
c96d226c-9a1c-40df-87f8-099c5e8d575f
Huang, Y.
9f4df815-51c1-4ee8-ad63-a92bf997103e
Pereira, P.H.R.
9ee129fd-0e06-482d-990c-971aaf83b1d0
Zhang, W.
1c80d4f2-4ba8-41f6-85a6-a76a4d65dc9b
Langdon, T.G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86

Fu, J., Ding, H., Huang, Y., Pereira, P.H.R., Zhang, W. and Langdon, T.G. (2015) Grain refining of a Ti-6Al-4V alloy by high-pressure torsion and low temperature superplasticity. Letters on Materials, 5 (3), 281-286.

Record type: Article

Abstract

A cold-rolled Ti-6Al-4V sheet was subjected to heat treatmentprior to processing by high-pressure torsion (HPT). Quantitative measurements revealed that the volume fractions were 25% equiaxed ? phase and 75% lamellar (?+?). The grain size of the ? phase was 9.5±1.5 ?m. The processing by HPT was performed at room temperature with a pressure of 6.0 GPa and a rotation speed of 1 rpm. Processing of the material was conducted through a total number of revolutions, N, of 1/4, 1, 5, 10 and 20. After 1 turn in HPT, the traces of shear deformation appeared. When the turns increased to 5, shear deformation was more severe. After 10 turns, the fibrous structure basically disappeared and ultrafine equiaxed grains were formed. When the deformation proceeded to 20 turns, a series ofhigh-angle boundaries were formed in the sample and the average size of equiaxed grains was 77±15 nm.After HPT processing, the microhardness increased as the numbers of HPT turns increased and the distribution of hardness tended to be relatively homogeneous when the HPT continued to 20 turns.Superplastic deformation tests were performed at 873K at different strain rates in the material processed by HPT and an elongation of 790% was achieved when deforming at 873K and 10-4 s-1

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More information

Published date: August 2015
Organisations: Engineering Mats & Surface Engineerg Gp

Identifiers

Local EPrints ID: 380477
URI: http://eprints.soton.ac.uk/id/eprint/380477
ISSN: 2218-5046
PURE UUID: 2ceb03ce-dd24-4dbb-a71d-3d32f97bdad6
ORCID for Y. Huang: ORCID iD orcid.org/0000-0001-9259-8123
ORCID for T.G. Langdon: ORCID iD orcid.org/0000-0003-3541-9250

Catalogue record

Date deposited: 11 Sep 2015 10:21
Last modified: 10 Jan 2022 02:58

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Contributors

Author: J. Fu
Author: H. Ding
Author: Y. Huang ORCID iD
Author: P.H.R. Pereira
Author: W. Zhang
Author: T.G. Langdon ORCID iD

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