Lattice Rotation Definition and Predicted Textures of Tensile and Compression Deformation

Author:

Wroński M.,Wierzbanowski K.

Abstract

AbstractThe problem of ambiguity in the definition of lattice rotation, used in plastic deformation models, is examined in this work. The geometry of tensile and compression deformation is considered. Two approaches to lattice rotation are considered: the classical definition (called also ‘mathematical analysis’) and the definition based on orientation preservation of specified directions/planes in the sample coordinates system. Similar study was already done by the present authors for the geometry of rolling deformation. It was shown that application of two rotation definitions enables to explain the appearance of two types of f.c.c. rolling textures: brass type and copper type textures. In the case of axisymmetric deformation the application of both definitions of lattice rotation leads to similar textures, but with different spread of their principal components.

Publisher

Walter de Gruyter GmbH

Subject

Metals and Alloys

Reference30 articles.

1. The Rules for the Lattice Rotation Accompanying Slip as Derived From a Self-Consistent Model

2. An extension of the self-consistent scheme to plastically-flowing polycrystals

3. Polycrystalline plasticity and the evolution of crystallographic texture in fcc metals;Bronkhorst;Phil Trans Soc Lond,1992

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