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Micro-mechanical behavior of an exceptionally strong metal matrix nanocomposite processed by high-pressure torsion

Micro-mechanical behavior of an exceptionally strong metal matrix nanocomposite processed by high-pressure torsion
Micro-mechanical behavior of an exceptionally strong metal matrix nanocomposite processed by high-pressure torsion
1438-1656
1001-1008
Kawasaki, M.
d0ce18b9-8403-4db2-9cb2-3a6165f288a6
Ahn, B.
0b971678-64a2-4079-9cae-f8a6923eb9e2
Lee, H.J.
a0feb7f7-b8ca-4e74-946d-17bbdf39a186
Choi, I.C.
c53e67bf-ee34-4303-94ad-d9cddbaa28b4
Jang, J.I.
29452e17-f912-4bb7-a29c-6f41d8e02b97
Langdon, T.G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86
Kawasaki, M.
d0ce18b9-8403-4db2-9cb2-3a6165f288a6
Ahn, B.
0b971678-64a2-4079-9cae-f8a6923eb9e2
Lee, H.J.
a0feb7f7-b8ca-4e74-946d-17bbdf39a186
Choi, I.C.
c53e67bf-ee34-4303-94ad-d9cddbaa28b4
Jang, J.I.
29452e17-f912-4bb7-a29c-6f41d8e02b97
Langdon, T.G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86

Kawasaki, M., Ahn, B., Lee, H.J., Choi, I.C., Jang, J.I. and Langdon, T.G. (2016) Micro-mechanical behavior of an exceptionally strong metal matrix nanocomposite processed by high-pressure torsion. Advanced Engineering Materials, 18 (6), 1001-1008. (doi:10.1002/adem.201500520).

Record type: Article

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More information

Accepted/In Press date: March 2016
e-pub ahead of print date: 18 April 2016
Published date: June 2016
Organisations: Engineering Mats & Surface Engineerg Gp, Engineering Science Unit, Faculty of Engineering and the Environment

Identifiers

Local EPrints ID: 389727
URI: http://eprints.soton.ac.uk/id/eprint/389727
ISSN: 1438-1656
PURE UUID: b78f6642-25f6-49db-b644-6b29b05a363f
ORCID for T.G. Langdon: ORCID iD orcid.org/0000-0003-3541-9250

Catalogue record

Date deposited: 14 Mar 2016 11:51
Last modified: 17 Dec 2019 01:50

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