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Published in: Metals and Materials International 11/2021

20-05-2020

Microstructure and Texture Evolution of Rolled Plate for Cu–15Cr In-Situ Composite

Authors: XuDong Wu, LvQi Zhu, RuiRui Liu, HaiTao Zhou

Published in: Metals and Materials International | Issue 11/2021

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Abstract

The microstructure and texture of different rolling processes in situ Cu–15Cr sheets are studied. The results show that the second phase Cr in the material gradually become broken, flattened, merged and homogenized from dendritic state to oriented thin lath. Meanwhile, the texture in distributed copper matrix grains finally forms Brass {110}<112>, Goss {001}<110> and Copper {112}<111> textures along with Cr phase texture of randomly distributed α-fiber (<110> fiber) and γ-fiber (<111> fiber) texture. Based on VPSC (visco-plastic self-consistent model), the texture of cold rolled Cu–15Cr composite is simulated, and the simulation result indicates that obvious twinning effect in the copper matrix appears with a feature of a special texture evolution law of Goss.

Graphic Abstract

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Literature
27.
go back to reference F. Heringhaus, D. Raabe, U. Hangen, et al., Textures of Rolled and Wire Drawn Cu20%Nb. Mat. Sci. Forum 157(6), 709–14 (1994)CrossRef F. Heringhaus, D. Raabe, U. Hangen, et al., Textures of Rolled and Wire Drawn Cu20%Nb. Mat. Sci. Forum 157(6), 709–14 (1994)CrossRef
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go back to reference Mao Weiming, Zhang Xinming, Quantitative texture analysis of crystal materials (Metallurgical Industry Press, Beijing, 1993), pp. 20–64 Mao Weiming, Zhang Xinming, Quantitative texture analysis of crystal materials (Metallurgical Industry Press, Beijing, 1993), pp. 20–64
Metadata
Title
Microstructure and Texture Evolution of Rolled Plate for Cu–15Cr In-Situ Composite
Authors
XuDong Wu
LvQi Zhu
RuiRui Liu
HaiTao Zhou
Publication date
20-05-2020
Publisher
The Korean Institute of Metals and Materials
Published in
Metals and Materials International / Issue 11/2021
Print ISSN: 1598-9623
Electronic ISSN: 2005-4149
DOI
https://doi.org/10.1007/s12540-020-00738-1

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