Microstructure and Texture Evolution of Cu-Ni-P Alloy after Cold Rolling and Annealing

Author:

Yang Wendi1,Zhang Chengzhi1,Zhang Nan1,Zhang Chucan1,Gao Weilin1,He Jilin12

Affiliation:

1. School of Material Science and Engineering, Zhengzhou University, Zhengzhou 450001, China

2. Zhongyuan Critical Metals Laboratory, Zhengzhou 450001, China

Abstract

The microstructure and texture evolution of Cu-Ni-P alloy after cold rolling and annealing at 500 °C was studied by electron backscattering diffraction (EBSD). The equiaxed grain is elongated and the dislocation density increases gradually after cold rolling. The grain boundaries become blurred and the structure becomes banded when the reduction in cold rolling reaches 95%. A typical rolling texture is formed with the increase in deformation amount in cold rolling. The deformation structure gradually disappeared and recrystallized new grains were formed after annealing at 500 °C. The recrystallization nucleation mechanism of Cu-Ni-P alloy at 60% reduction is mainly a bow nucleation mechanism. A shear band begins to form after annealing at 80% reduction. The shear band becomes the preferred nucleation location with the increase in reduction. Most adjacent recrystallized grains growing in the shear band have a twin relationship.

Funder

Strategic Consulting Research Project of Henan Institute of China Engineering Development Strategies

Publisher

MDPI AG

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