Microstructures and textures of a Cu-Ni-Si alloy processed by high-pressure torsion
Microstructures and textures of a Cu-Ni-Si alloy processed by high-pressure torsion
Experiments were conducted to evaluate the evolution of microstructure and texture in a commercial Cu–2.5%Ni–0.6%Si (wt.%) alloy during processing by high-pressure torsion (HPT) at room temperature up to a maximum of 10 turns. It is shown that HPT leads to grain refinement to a mean equiaxed grain size of ?200 nm, the evolution occurs rapidly at the edges of the disks but progresses more slowly in the center of each disk and ultimately, after 10 turns, the grain structure is reasonably homogeneous. There is an evolution also in the grain boundary misorientations and after 5 or more revolutions the fraction of high-angle grain boundaries is about 68%. The texture after HPT is characterized by typical shear components of face-centered cubic metals and mainly by the reinforcement of the {1 1 1}?2 ? orientation of the A* texture component.
361-367
Khereddine, A.Y.
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Larbi, F.H.
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Azzeddine, H.
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Baudin, T.
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Brisset, F.
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Helbert, A.L.
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Mathon, M.H.
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Kawasaki, M.
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Bradai, D.
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Langdon, T.G.
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October 2013
Khereddine, A.Y.
efcb32e2-ee8d-44fd-b624-d13d61dfa63f
Larbi, F.H.
da8240a4-7530-40a7-af9d-0216185e4be8
Azzeddine, H.
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Baudin, T.
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Brisset, F.
713eea79-7b40-4fae-8e56-32072c344852
Helbert, A.L.
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Mathon, M.H.
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Kawasaki, M.
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Bradai, D.
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Langdon, T.G.
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Khereddine, A.Y., Larbi, F.H., Azzeddine, H., Baudin, T., Brisset, F., Helbert, A.L., Mathon, M.H., Kawasaki, M., Bradai, D. and Langdon, T.G.
(2013)
Microstructures and textures of a Cu-Ni-Si alloy processed by high-pressure torsion.
Journal of Alloys and Compounds, 574, .
(doi:10.1016/j.jallcom.2013.05.051).
Abstract
Experiments were conducted to evaluate the evolution of microstructure and texture in a commercial Cu–2.5%Ni–0.6%Si (wt.%) alloy during processing by high-pressure torsion (HPT) at room temperature up to a maximum of 10 turns. It is shown that HPT leads to grain refinement to a mean equiaxed grain size of ?200 nm, the evolution occurs rapidly at the edges of the disks but progresses more slowly in the center of each disk and ultimately, after 10 turns, the grain structure is reasonably homogeneous. There is an evolution also in the grain boundary misorientations and after 5 or more revolutions the fraction of high-angle grain boundaries is about 68%. The texture after HPT is characterized by typical shear components of face-centered cubic metals and mainly by the reinforcement of the {1 1 1}?2 ? orientation of the A* texture component.
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Published date: October 2013
Organisations:
Engineering Mats & Surface Engineerg Gp
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Local EPrints ID: 359472
URI: http://eprints.soton.ac.uk/id/eprint/359472
ISSN: 0925-8388
PURE UUID: 2615bd0f-04d9-45dd-827b-dfccec54f173
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Date deposited: 04 Nov 2013 14:12
Last modified: 15 Mar 2024 03:13
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Author:
A.Y. Khereddine
Author:
F.H. Larbi
Author:
H. Azzeddine
Author:
T. Baudin
Author:
F. Brisset
Author:
A.L. Helbert
Author:
M.H. Mathon
Author:
M. Kawasaki
Author:
D. Bradai
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