Microstructure and texture evolution in a Cu–Ni–Si alloy processed by equal-channel angular pressing
Microstructure and texture evolution in a Cu–Ni–Si alloy processed by equal-channel angular pressing
Experiments were conducted to evaluate the evolution of microstructure and texture in a commercial Cu–2.5Ni–0.6Si (wt.%) alloy processed by equal-channel angular pressing (ECAP) at 423 K for up to 12 passes. An electron backscatter diffraction (EBSD) analysis shows that ECAP processing leads to microstructural refinement with an average grain size of ?0.9 ?m. The refined grains are inclined to the direction of extrusion and the deformation structure evolves from elongated grains to a duplex microstructure of equiaxed and elongated grains. Detailed measurements demonstrate that the grain boundary misorientations gradually increase with increasing numbers of ECAP passes. The texture was investigated using both EBSD and neutron diffraction. The results show the texture after ECAP is characterized by typical shear components of face-centered cubic metals which deviate from their ideal positions.
Cu–Ni–Si alloy, equal-channel angular pressing, microstructure, texture, ultrafine-grained metals
88-94
Hadj Larbi, Fayçal
ef5ad2e4-3d81-41e2-aeb1-ddd686ca7479
Azzeddine, Hiba
a9bb5955-be91-4ce8-971c-60ab5573a1a9
Baudin, Thierry
448e215d-c156-4c0a-9a3a-04078a7174b8
Mathon, Marie-Hélène
a860b980-a286-4885-9b00-f160b1d97588
Brisset, François
c93ca177-5b75-400d-a9fb-85a567cebec6
Helbert, Anne-Laure
01ac4ac4-73d6-4649-9bf5-4be30f1e6df2
Kawasaki, Megumi
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Bradai, Djamel
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Langdon, Terence G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86
25 July 2015
Hadj Larbi, Fayçal
ef5ad2e4-3d81-41e2-aeb1-ddd686ca7479
Azzeddine, Hiba
a9bb5955-be91-4ce8-971c-60ab5573a1a9
Baudin, Thierry
448e215d-c156-4c0a-9a3a-04078a7174b8
Mathon, Marie-Hélène
a860b980-a286-4885-9b00-f160b1d97588
Brisset, François
c93ca177-5b75-400d-a9fb-85a567cebec6
Helbert, Anne-Laure
01ac4ac4-73d6-4649-9bf5-4be30f1e6df2
Kawasaki, Megumi
944ba471-eb78-46db-bfb7-3f0296d9ef6d
Bradai, Djamel
59c22bbc-952f-4ab9-8619-8d63d6ee8a19
Langdon, Terence G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86
Hadj Larbi, Fayçal, Azzeddine, Hiba, Baudin, Thierry, Mathon, Marie-Hélène, Brisset, François, Helbert, Anne-Laure, Kawasaki, Megumi, Bradai, Djamel and Langdon, Terence G.
(2015)
Microstructure and texture evolution in a Cu–Ni–Si alloy processed by equal-channel angular pressing.
Journal of Alloys and Compounds, 638, .
(doi:10.1016/j.jallcom.2015.03.062).
Abstract
Experiments were conducted to evaluate the evolution of microstructure and texture in a commercial Cu–2.5Ni–0.6Si (wt.%) alloy processed by equal-channel angular pressing (ECAP) at 423 K for up to 12 passes. An electron backscatter diffraction (EBSD) analysis shows that ECAP processing leads to microstructural refinement with an average grain size of ?0.9 ?m. The refined grains are inclined to the direction of extrusion and the deformation structure evolves from elongated grains to a duplex microstructure of equiaxed and elongated grains. Detailed measurements demonstrate that the grain boundary misorientations gradually increase with increasing numbers of ECAP passes. The texture was investigated using both EBSD and neutron diffraction. The results show the texture after ECAP is characterized by typical shear components of face-centered cubic metals which deviate from their ideal positions.
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More information
Accepted/In Press date: 8 March 2015
e-pub ahead of print date: 14 March 2015
Published date: 25 July 2015
Keywords:
Cu–Ni–Si alloy, equal-channel angular pressing, microstructure, texture, ultrafine-grained metals
Organisations:
Engineering Mats & Surface Engineerg Gp
Identifiers
Local EPrints ID: 377278
URI: http://eprints.soton.ac.uk/id/eprint/377278
ISSN: 0925-8388
PURE UUID: 82e0f943-7adb-481a-8496-72a4867b2fd8
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Date deposited: 20 May 2015 11:01
Last modified: 15 Mar 2024 03:14
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Contributors
Author:
Fayçal Hadj Larbi
Author:
Hiba Azzeddine
Author:
Thierry Baudin
Author:
Marie-Hélène Mathon
Author:
François Brisset
Author:
Anne-Laure Helbert
Author:
Megumi Kawasaki
Author:
Djamel Bradai
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