TY - JOUR
T1 - Effect of cold deformation on the recrystallization behavior of FePd alloy at the ordering temperature using electron backscatter diffraction
AU - Lin, Hung Pin
AU - Chen, Yen Chun
AU - Chen, Delphic
AU - Kuo, Jui Chao
N1 - Funding Information:
The authors would gratefully like to thank the National Science Council (NSC) for supporting the fund in the project ( NSC 100-2628-E-006-024-MY3 ).
PY - 2014/8
Y1 - 2014/8
N2 - In this study, the evolution of the recrystallization texture and microstructure was investigated after annealing of 50% and 90% cold-rolled FePd alloy at 530 °C. The FePd alloy was produced by vacuum arc melting in an atmosphere of 97% Ar and 3% H2. The specimens were cold rolled to achieve 50% and 90% reduction in thickness. Electron backscatter diffraction measurements were performed on the rolling direction-normal direction section. With increased deformation from 50% to 90%, recrystallized texture transition occurs. For the 50% cold-rolled alloy, the preferred orientation is (0 1 0) [11 0 1], which is close to the cubic orientation after 400 h of annealing. For the 90% cold-rolled alloy, the orientation changes to (0 5 4) [22-4 5] after 16 h of annealing.
AB - In this study, the evolution of the recrystallization texture and microstructure was investigated after annealing of 50% and 90% cold-rolled FePd alloy at 530 °C. The FePd alloy was produced by vacuum arc melting in an atmosphere of 97% Ar and 3% H2. The specimens were cold rolled to achieve 50% and 90% reduction in thickness. Electron backscatter diffraction measurements were performed on the rolling direction-normal direction section. With increased deformation from 50% to 90%, recrystallized texture transition occurs. For the 50% cold-rolled alloy, the preferred orientation is (0 1 0) [11 0 1], which is close to the cubic orientation after 400 h of annealing. For the 90% cold-rolled alloy, the orientation changes to (0 5 4) [22-4 5] after 16 h of annealing.
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U2 - 10.1016/j.matchar.2014.05.018
DO - 10.1016/j.matchar.2014.05.018
M3 - Article
AN - SCOPUS:84902192206
SN - 1044-5803
VL - 94
SP - 138
EP - 148
JO - Materials Characterization
JF - Materials Characterization
ER -