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Achieving superplasticity in a Cu-40% Zn alloy through severe plastic deformation

Achieving superplasticity in a Cu-40% Zn alloy through severe plastic deformation
Achieving superplasticity in a Cu-40% Zn alloy through severe plastic deformation
The Cu–40%Zn alloy is a classic two-phase material exhibiting superplasticity at elevated temperatures. This report demonstrates that the application of severe plastic deformation at a temperature associated with a phase transformation leads to grain refinement in the alloy and the development of a superplastic ductility at a high strain rate and relatively low temperature.
Brass, Copper alloy, Equal-channel angular pressing, Microstructure, Superplasticity
1359-6462
965-970
Neishi, K.
329e3a20-a14f-44e7-aef8-825a47da065e
Horita, Z.
84a80017-cbaf-4713-8346-6f69ac7ea63e
Langdon, T.G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86
Neishi, K.
329e3a20-a14f-44e7-aef8-825a47da065e
Horita, Z.
84a80017-cbaf-4713-8346-6f69ac7ea63e
Langdon, T.G.
86e69b4f-e16d-4830-bf8a-5a9c11f0de86

Neishi, K., Horita, Z. and Langdon, T.G. (2001) Achieving superplasticity in a Cu-40% Zn alloy through severe plastic deformation. Scripta Materialia, 45 (8), 965-970. (doi:10.1016/S1359-6462(01)01119-8).

Record type: Article

Abstract

The Cu–40%Zn alloy is a classic two-phase material exhibiting superplasticity at elevated temperatures. This report demonstrates that the application of severe plastic deformation at a temperature associated with a phase transformation leads to grain refinement in the alloy and the development of a superplastic ductility at a high strain rate and relatively low temperature.

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More information

Published date: 2001
Keywords: Brass, Copper alloy, Equal-channel angular pressing, Microstructure, Superplasticity

Identifiers

Local EPrints ID: 23399
URI: http://eprints.soton.ac.uk/id/eprint/23399
ISSN: 1359-6462
PURE UUID: b4aec0bf-3088-4bfb-81b9-83175d2520e3
ORCID for T.G. Langdon: ORCID iD orcid.org/0000-0003-3541-9250

Catalogue record

Date deposited: 27 Mar 2006
Last modified: 16 Mar 2024 03:27

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Contributors

Author: K. Neishi
Author: Z. Horita
Author: T.G. Langdon ORCID iD

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