The Cube Recrystallization-Texture Related Component in the β-Fiber Rolling-Texture FCC Metals

Author:

Lee Dong Nyung1,Han Heung Nam1

Affiliation:

1. Seoul National University

Abstract

The cold-rolling texture of fcc sheet metals with medium to high stacking fault energies is known to consist of the brass {011}<211>, Cu {112}<111>, Goss {011}<100>, S {123}<634>, and cube {100}<001> components. The recrystallization (Rex) texture of cold-rolled Al, Cu and their alloy sheets is well known to be the cube texture. The 40°<111> orientation relationship between the S and cube components, which has been taken as a proof of the oriented growth theory, has made one believe that the S orientation is responsible for the cube Rex texture. The oriented growth theory is claimed to be associated with grain boundary mobility anisotropy. However, some data indicate the Cu component is linked with the cube component. There is no 40°<111> orientation relationship between the Cu and cube components. The strain-energy-release-maximization model (SERM), in which the strain energy due to dislocations is importantly taken into account, suggests that the Cu and S components in the rolling texture are linked with the cube and ~{031}<100> components in the Rex texture, respectively.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference18 articles.

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3. D.N. Lee, Phil. Mag. 85 (2005) 297.

4. D.N. Lee, H.N. Han, Recrystallization textures of metals and alloys, in: Peter Wilson (Ed. ), Chapter 1, Recent Developments in The Study of Recrystallization, ISBN 978-953-51-0962-4, InTech – Open Access Publisher, pp.3-59.

5. M. Blicharski, J. Liu, H. Hu, Acta Mater. 43 (1995) 3125.

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