Quantifying texture evolution during hot rolling of AZ31 Twin Roll Cast strip

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Date
2015
Volume
82
Issue
Journal
Series Titel
Book Title
Publisher
London [u.a.] : Institute of Physics
Abstract

Multi-pass rolling experiments with an AZ31 Twin Roll Cast (TRC) alloy were performed on an industrial scaled four-high rolling mill. Within the rolling with an intermediate annealing the evolution of texture was investigated. To quantify the extent of preferred crystallographic orientation experimental X-ray pole figures were measured after different process steps and analyzed using the free and open MatlabĀ® toolbox MTEX for texture analysis. The development of the fiber texture was observed and analyzed in dependence on rolling conditions. In the initial state the specimen exhibits a texture composed of a weak basal texture and a cast texture with {0001}-planes oriented across the rolling direction. During the following rolling process a fiber texture was developed. The expected strength increment of the fiber texture was quantitatively confirmed in terms of volume portions of the orientation density function around the fiber and in terms of the canonical parameters of fitted pseudo Bingham distributions. On the results of this work a model for prediction of the texture evolution during the strip rolling of magnesium in the examined parameter range was developed.

Description
Keywords
Fibers, Hot rolling, Crystallographic orientations, Intermediate annealings, Multi-pass rolling, Orientation density, Rolling conditions, Strength increments, Texture evolutions, Twin-roll cast alloys, Textures, Konferenzschrift
Citation
Gorelova, S., & Schaeben, H. (2015). Quantifying texture evolution during hot rolling of AZ31 Twin Roll Cast strip (W. Skrotzki & C.-G. Oertel, eds.). London [u.a.] : Institute of Physics. https://doi.org//10.1088/1757-899X/82/1/012003
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License
CC BY 3.0 Unported